WO2021229690A1 - Air-conditioning system - Google Patents

Air-conditioning system Download PDF

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Publication number
WO2021229690A1
WO2021229690A1 PCT/JP2020/018999 JP2020018999W WO2021229690A1 WO 2021229690 A1 WO2021229690 A1 WO 2021229690A1 JP 2020018999 W JP2020018999 W JP 2020018999W WO 2021229690 A1 WO2021229690 A1 WO 2021229690A1
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WO
WIPO (PCT)
Prior art keywords
air
air conditioning
unit
information
control
Prior art date
Application number
PCT/JP2020/018999
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French (fr)
Japanese (ja)
Inventor
紘輔 眞野
圭一朗 志津
Original Assignee
三菱電機株式会社
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Application filed by 三菱電機株式会社 filed Critical 三菱電機株式会社
Priority to PCT/JP2020/018999 priority Critical patent/WO2021229690A1/en
Publication of WO2021229690A1 publication Critical patent/WO2021229690A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2120/00Control inputs relating to users or occupants
    • F24F2120/10Occupancy

Definitions

  • This disclosure relates to an air conditioning system that provides a comfortable environment for users existing in an air conditioning target space.
  • Patent Document 1 describes the user's biological information such as blood pressure, pulse, and body temperature measured by the device carried by the user, and the temperature information of the user's current position. Based on the above, the one that determines the set temperature for the air conditioner of the user's destination and controls the air conditioner in the user's estimated destination room is disclosed.
  • the present disclosure has been made in view of the above, and an object thereof is to obtain an air conditioning system capable of providing a comfortable environment for the user.
  • the air conditioning system is a wearable device worn by a user existing in the air conditioning target space and an air conditioning capable of communicating with the wearable device. It is equipped with a device.
  • the wearable device has a biometric information measuring unit that measures the biometric information of the user.
  • the air conditioned device has an air conditioned unit that harmonizes the air in the air conditioned space, an air conditioned control unit that controls the operation of the air conditioned unit, and an air conditioned space that measures the environmental conditions of the air conditioned space.
  • An environmental information measurement unit that generates environmental information indicating the environmental status
  • an attribute information storage unit that stores attribute information that is information on individual attributes that affect human temperature sensitivity, and biological information, environmental information, and attribute information.
  • the air conditioning control unit includes a control condition determining unit that determines control conditions for controlling the operation of the air conditioning unit.
  • the air conditioning system according to this disclosure has the effect of being able to provide a comfortable environment for the user.
  • the figure which shows the functional structure of the air-conditioning apparatus of the air-conditioning system which concerns on Embodiment 1. A flowchart illustrating a procedure for operating the air conditioning system according to the first embodiment.
  • FIG. 1 shows the functional structure of the terminal of the air conditioning system which concerns on Embodiment 2.
  • FIG. 2 shows the functional structure of the terminal of the air conditioning system which concerns on Embodiment 2.
  • FIG. 2 shows an example of the hardware composition of the processing circuit in Embodiment 1 and Embodiment 2.
  • FIG. 1 is a diagram showing a configuration of an air conditioning system 100 according to the first embodiment.
  • FIG. 2 is a diagram showing a functional configuration of a wearable computer-mounted device 10 of the air conditioning system 100 according to the first embodiment.
  • FIG. 3 is a diagram showing a functional configuration of the smartphone 20 of the air conditioning system 100 according to the first embodiment.
  • FIG. 4 is a diagram showing a functional configuration of the air conditioning device 30 of the air conditioning system 100 according to the first embodiment.
  • the air conditioning system 100 according to the first embodiment includes a wearable computer-mounted device 10, a smartphone 20, and an air conditioning device 30.
  • the wearable computer-mounted device 10 is a wearable communication device that is attached to the user's body, measures the user's biological information 71, and transmits the measured biological information 71 to the smartphone 20 and the air conditioner 30.
  • the wearable computer-mounted device 10 can wirelessly communicate with the smartphone 20 and the air conditioner 30.
  • the wearable computer-mounted device 10 is a so-called wearable terminal, which is a wearable terminal having a built-in battery, and is the first device in the air conditioning system 100.
  • a watch-type wearable terminal can be used for the wearable computer-mounted device 10.
  • the wearable computer-mounted device 10 includes a wearable device operation unit 11, a wearable device display unit 12, a biological information measurement unit 13, a wearable device storage unit 14, a wearable device communication unit 15, and a wearable device.
  • a control unit 16 is provided.
  • Each of the above-mentioned components in the wearable computer-mounted device 10 can exchange information with each other.
  • the wearable device operation unit 11 is an input unit that accepts setting operations from the user.
  • the wearable device operation unit 11 receives input of various information from the user and transmits the input to the wearable device control unit 16 or each component unit.
  • the wearable device display unit 12 is a display unit that displays various information inside the wearable computer-mounted device 10.
  • the biometric information measuring unit 13 measures and collects the user's biometric information 71 at a predetermined cycle with the wearable computer-mounted device 10 mounted on the user's body.
  • the biological information 71 measured by the biological information measuring unit 13 is various physiological information generated by the living body, and examples thereof include heart rate, blood pressure, and body temperature.
  • the biometric information measuring unit 13 has various biosensors that collect the biometric information 71 of the user. Examples of the sensor included in the biological information measuring unit 13 include sensors such as a heart rate monitor, a sphygmomanometer, and a thermometer. By using these sensors, the biological information measuring unit 13 can measure and collect biological information 71 such as heart rate, blood pressure, and body temperature.
  • the biological information measuring unit 13 can simultaneously measure and collect a plurality of types of biological information 71 of the user while the wearable computer-mounted device 10 is attached to the user's body.
  • the biological information measuring unit 13 may measure and collect at least one biological information 71 among heart rate, blood pressure, and body temperature.
  • the heart rate, blood pressure, and body temperature are examples of the user's biological information 71.
  • the user's biometric information 71 measured by the biometric information measuring unit 13 is sent to the wearable device storage unit 14 in association with the date and time information, and is stored in the wearable device storage unit 14.
  • the date and time information is information on the date and time when the user's biometric information 71 was measured by the biometric information measuring unit 13.
  • the biometric information measuring unit 13 can record changes in the user's physical condition during the day and detect the user's abnormal state. It can be used as information at the time.
  • the biometric information measuring unit 13 may measure and collect the user's biometric information 71 at a timing designated by the user or a predetermined timing.
  • the wearable device storage unit 14 is a storage unit that stores various information inside the wearable computer-mounted device 10.
  • the wearable device storage unit 14 stores the biological information 71 measured by the biological information measuring unit 13.
  • the biological information 71 stored in the wearable device storage unit 14 is transmitted to the smartphone 20 and the air conditioner 30 via the wearable device communication unit 15 under the control of the wearable device control unit 16.
  • the wearable device storage unit 14 stores heart rate data, blood pressure data, and body temperature data as the user's biological information 71 transmitted from the biological information measurement unit 13.
  • the heart rate, blood pressure, and body temperature are examples of the user's biological information 71 stored in the wearable device storage unit 14.
  • the wearable device communication unit 15 communicates with the smartphone 20 and the air conditioner 30 by using wireless communication.
  • the wearable device control unit 16 receives various information and controls the entire wearable computer-mounted device 10 including the control of each component in the wearable computer-mounted device 10. Further, the wearable device control unit 16 controls to transmit the biometric information 71, which is the measurement result of the biometric information measurement unit 13, to the smartphone 20 and the air conditioner 30 via the wearable device communication unit 15.
  • the wearable computer-mounted device 10 may not have a component such as a wearable device operation unit 11 and a wearable device display unit 12, and has various forms having different functions according to the environment in which the wearable computer is used. Can be configured.
  • the smartphone 20 is a mobile terminal that can display information transmitted from the wearable computer-mounted device 10 and the air conditioner 30 and can transmit operation setting information to the air conditioner 30 by wireless communication.
  • the smartphone 20 is a second device in the air conditioning system 100.
  • the smartphone 20 has a function as an operation setting condition setting unit for the user to set an operation setting condition which is an air conditioning condition in the air conditioning device 30. That is, since the smartphone 20 sets the operation setting condition which is the condition of the air conditioning of the air conditioning device 30 instructed to the air conditioning device 30 and transmits it to the air conditioning device 30, it can be paraphrased as a remote control device.
  • the smartphone 20 can store the biometric information 71 acquired from the wearable computer-mounted device 10 and display the biometric information 71 and present it to the user.
  • a wireless communication terminal such as a tablet may be used instead of the smartphone 20.
  • the smartphone 20 includes a mobile terminal operation unit 21, a mobile terminal display unit 22, a setting function unit 23, a mobile terminal storage unit 24, a mobile terminal communication unit 25, and a mobile terminal control unit 26.
  • the mobile terminal operation unit 21 is an input unit that accepts setting operations from the user.
  • the mobile terminal operation unit 21 receives input of various information from the user and transmits the input to the mobile terminal control unit 26.
  • the mobile terminal display unit 22 is a display unit that displays various information inside the smartphone 20.
  • the setting function unit 23 is a function unit that sets the operation setting conditions for air conditioning input from the user.
  • the setting function unit 23 sets and stores the operation setting conditions for air conditioning in the setting function unit 23 based on the information transmitted from the mobile terminal operation unit 21. Further, the setting function unit 23 transmits the set air conditioning operation setting conditions to the air conditioning device 30 via the mobile terminal communication unit 25 under the control of the mobile terminal control unit 26.
  • the operation setting condition for air conditioning is an instruction condition for air conditioning in the air conditioning device 30 set by the user, and examples thereof include a set temperature 231, a set wind direction 232, and a set air volume 233.
  • the set temperature 231 is a room temperature set by the user and targeted by air conditioning in the air conditioning device 30.
  • the set wind direction 232 is the wind direction of the conditioned air blown from the air conditioned device 30 set by the user.
  • the set air volume 233 is the air volume of the conditioned air blown from the air conditioned device 30 set by the user. Therefore, the setting function unit 23 has an operation setting function of the operation setting condition of air conditioning such as the set temperature 231 and the set wind direction 232 and the set air volume 233.
  • the smartphone 20 has air conditioning setting software used for setting air conditioning operation setting conditions and transmitting the set air conditioning operation setting conditions to the air conditioning device 30.
  • the setting function unit 23 is configured by executing the air conditioning setting software.
  • the mobile terminal storage unit 24 is a storage unit that stores various information inside the smartphone 20.
  • the mobile terminal storage unit 24 stores the biological information 71 transmitted from the wearable device storage unit 14.
  • the mobile terminal communication unit 25 communicates with the wearable computer-mounted device 10 and the air conditioner 30 by using wireless communication.
  • the mobile terminal communication unit 25 transmits the biometric information 71 transmitted from the wearable computer-mounted device 10 to the mobile terminal control unit 26.
  • the mobile terminal communication unit 25 transmits the air conditioning operation setting conditions transmitted from the setting function unit 23 to the air conditioning device 30.
  • the mobile terminal control unit 26 is a control unit that controls the entire processing of the smartphone 20.
  • the mobile terminal control unit 26 stores the biometric information 71 transmitted from the mobile terminal communication unit 25 in the mobile terminal storage unit 24. Further, the mobile terminal control unit 26 causes the mobile terminal display unit 22 to display the biological information 71 transmitted from the mobile terminal communication unit 25.
  • the air conditioner 30 basically has the function of a general air conditioner, and performs air conditioning in a room which is an air conditioner target space of the air conditioner 30.
  • the air conditioned device 30 is a third device in the air conditioned system 100.
  • the air conditioning device 30 includes an air conditioning unit 31, a temperature / humidity sensor 32, a control condition determination unit 33, a database 34, an air conditioning storage unit 35, an air conditioning communication unit 36, and an air conditioning control unit 37. To prepare for.
  • the air conditioning unit 31 has an air conditioning function and configuration in a general air conditioning device.
  • the air harmonizing unit 31 includes a refrigerant circuit through which the refrigerant flows, a compressor that compresses the refrigerant in the refrigerant circuit, a heat exchanger that exchanges heat between the indoor air and the refrigerant flowing in the refrigerant circuit, and heat exchange harmonization by the heat exchanger. It is equipped with a blower fan that sends air into the room, a wind direction adjustment unit that adjusts the direction in which harmonized air is sent out, and an outdoor heat exchanger that exchanges heat between the outdoor air and the refrigerant flowing in the refrigerant circuit.
  • the temperature / humidity sensor 32 is an environmental information measuring unit that measures the state of the indoor environment, which is the air-conditioning target space of the air-conditioning device 30, and generates environmental information indicating the state of the environment of the air-conditioning target space.
  • the environmental information includes the indoor temperature, which is the temperature of the indoor air, which is the air conditioning target space of the air conditioning device 30, the indoor humidity, which is the humidity of the indoor air, the outdoor temperature, which is the temperature of the outdoor air, and the humidity of the outdoor air.
  • the outdoor humidity is exemplified.
  • the room temperature and the room humidity are environmental information of the room which is the space subject to air conditioning. Outdoor temperature and outdoor humidity are outdoor environmental information.
  • the temperature / humidity sensor 32 measures the indoor temperature, the indoor humidity, the outdoor temperature and the outdoor humidity at predetermined cycles, and transmits the temperature / humidity information which is the information of the temperature and the humidity which is the measurement result to the control condition determination unit 33. do.
  • the control condition determination unit 33 receives the attribute information 72 to be described later stored in the air conditioning storage unit 35 and the air transmitted from the wearable computer-mounted device 10 with respect to the air conditioning operation setting conditions transmitted from the smartphone 20. Based on the biological information 71 stored in the harmonized storage unit 35 and the temperature / humidity information which is the environmental information measured by the temperature / humidity sensor 32, the control conditions in the air conditioning operation of the air conditioning device 30 are determined. Further, the control condition determination unit 33 transmits the determined control condition to the air conditioning control unit 37.
  • Attribute information 72 is information on the attributes of an individual that affects the temperature sensitivity of a person, and exemplifies gender, age, and nationality.
  • the attribute information 72 is input to the air conditioning device 30 in advance using the smartphone 20 and stored in the air conditioning storage unit 35.
  • control condition determination unit 33 determines the control condition by correcting the air-conditioning operation setting condition transmitted from the smartphone 20 based on the attribute information 72, the biological information 71, and the temperature / humidity information.
  • the control condition determination unit 33 corrects the operation setting conditions for air conditioning based on the attribute information 72, the biological information 71, and the temperature / humidity information, thereby corresponding to the user's condition and being highly comfortable for the user. It is possible to determine the control conditions of the air-conditioning operation that enables the control of the air-conditioning.
  • the control conditions are control conditions that are actually targeted when the air conditioning control unit 37 controls the air conditioning operation of the air conditioning device 30, and examples thereof include a control temperature 331, a control wind direction 332, and a control air volume 333. .. Since the control conditions are set by correcting the air-conditioning operation setting conditions based on the attribute information 72, the biological information 71, and the temperature / humidity information, they are basically different from the air-conditioning operation setting conditions. It becomes a condition.
  • the database 34 stores information on changes in the biological information 71 of the day in the normal state of the user, that is, information on changes in physical condition. That is, the database 34 stores the user's daily biometric information 71. Further, the database 34 stores in advance statistical data of temperature sensitivity for the attributes included in the attribute information 72. Further, in the database 34, when the user sets the operation setting condition of the air conditioning, the set temperature 231 and the set wind direction 232 and the set air volume of the operation setting condition of the air conditioning at the time of setting the operation setting condition of the air conditioning The 233 and the biological information 71 are stored in association with each other.
  • the database 34 records the set temperature 231, the set wind direction 232, and the set air volume 233 of the air-conditioning operation setting condition when the user sets the air-conditioning operation setting condition using the smartphone 20. It has a function as an operation setting condition storage unit.
  • the air conditioning storage unit 35 is a storage unit that stores various information inside the air conditioning device 30.
  • the air-conditioning storage unit 35 stores the biometric information 71 transmitted from the wearable computer-mounted device 10 and the air-conditioning operation setting conditions transmitted from the smartphone 20. Further, the air conditioning storage unit 35 stores the attribute information 72 input from the user. That is, the air-conditioning storage unit 35 has a function as an attribute information storage unit for storing the attribute information 72.
  • the air-conditioning communication unit 36 communicates with the wearable computer-mounted device 10 and the smartphone 20 by using wireless communication.
  • the air conditioning control unit 37 controls the entire processing of the air conditioning device 30.
  • the air conditioning control unit 37 controls the operation of the air conditioning unit 31 to control the operation of the air conditioning device 30. Then, the air conditioning control unit 37 controls the operation of the air conditioning device 30 according to the control conditions transmitted from the control condition determining unit 33.
  • the air conditioner 30 may be a separate type air conditioner having an indoor unit arranged indoors and an outdoor unit arranged outdoors, or may be an integrated air conditioner.
  • FIG. 5 is a flowchart illustrating a procedure for operating the air conditioning system 100 according to the first embodiment.
  • the user who is the subject of the biological information 71 always wears, for example, a wristwatch-type wearable computer-mounted device 10 on his / her arm.
  • step S10 the air conditioner 30 acquires information on gender, age, and nationality as attribute information 72.
  • the user inputs the attribute information 72 to the smartphone 20 using the mobile terminal operation unit 21, and transmits the input attribute information 72 from the smartphone 20 to the air conditioner 30.
  • the air conditioner 30 can acquire the attribute information 72 from the smartphone 20.
  • step S20 the biometric information measuring unit 13 of the wearable computer-mounted device 10 measures the biometric information 71 at a predetermined cycle.
  • the biometric information measurement unit 13 transmits the biometric information 71, which is the measurement result, to the smartphone 20 and the air conditioner 30 via the wearable device communication unit 15 of the wearable computer-mounted device 10.
  • step S30 the temperature / humidity sensor 32 of the air conditioning device 30 measures the indoor temperature and the indoor humidity, which are the indoor environment of the air conditioning target space, and acquires the indoor temperature / humidity information, which is the environmental information. ..
  • the temperature / humidity sensor 32 transmits the indoor temperature / humidity information, which is the measurement result, to the control condition determination unit 33.
  • step S40 the setting function unit 23 of the smartphone 20 acquires the operation setting conditions for air conditioning such as the set temperature 231 and the set wind direction 232 and the set air volume 233.
  • the mobile terminal operation unit 21 transmits the air conditioning operation setting conditions input from the user to the setting function unit 23.
  • the setting function unit 23 acquires the operation setting conditions for air conditioning.
  • the setting function unit 23 sets the acquired operation setting conditions for air conditioning in the setting function unit 23, and transmits the acquired air conditioning operation setting conditions to the air conditioning device 30 via the mobile terminal communication unit 25.
  • step S50 the control condition determination unit 33 of the air conditioner 30 determines the air transmitted from the smartphone 20 based on the attribute information 72, the biological information 71, and the temperature / humidity information which is the indoor environmental information.
  • the control conditions are determined by correcting the harmonized operation setting conditions.
  • the control condition determination unit 33 determines the control condition using the attribute information 72, the biological information 71, and the temperature / humidity information when the operation setting condition for air conditioning transmitted from the setting function unit 23 is received.
  • the setting function unit 23 of the smartphone 20 acquires the operation setting condition of the air conditioning in step S40 when the operation setting condition of the air conditioning transmitted from the setting function unit 23 is received, that is, the operation of the air conditioning by the user. It can be rephrased as the setting time when the setting condition is set.
  • the control condition determination unit 33 transmits the determined control condition to the air conditioning control unit 37.
  • step S60 the air conditioning control unit 37 of the air conditioning device 30 controls the air conditioning unit 31 according to the control conditions determined by the control condition determining unit 33, and controls the operation of the air conditioning device 30.
  • the air conditioning system 100 enables fine control of air conditioning that is highly comfortable for the user and corresponds to the current state of the user.
  • the user sets the air conditioning operation setting conditions from the smartphone 20, so that the set temperature 231 and the set wind direction 232 of the air conditioning operation setting conditions at the time of setting the air conditioning operation setting conditions are set.
  • the set air volume 233 and the biological information 71 in the database 34 of the air conditioning device 30, it is possible to use these information as a control factor for controlling the air conditioning operation of the air conditioning device 30. ..
  • the air conditioning system 100 In the air conditioning system 100, environmental information in the room, which is an air conditioning target space such as indoor temperature and indoor humidity, is used as a control factor for controlling the air conditioning operation of the air conditioning device 30. That is, the air conditioning system 100 controls the air conditioning operation of the air conditioning device 30 based on the environmental information in the room.
  • the biological information 71 is used as a control factor for controlling the air conditioning operation of the air conditioning device 30. That is, in the air conditioning system 100, the biological information 71 is used to control the air conditioning operation of the air conditioning device 30.
  • the air conditioning system 100 can perform control according to the change in physical condition by storing and accumulating the information on the change in the biological information 71 in one day in the normal state, that is, the information on the change in physical condition in the database 34.
  • control condition determination unit 33 can determine that the user is in the sleeping state when the biometric information 71 of the user is in such a state.
  • the threshold value for determining that a person is in a sleeping state by comparing with the current biological information 71 is stored in advance in the control condition determination unit 33.
  • a body temperature threshold value to be compared with the body temperature of the current user and a heart rate threshold value to be compared with the heart rate of the current user are stored in advance in the control condition determination unit 33.
  • the control condition determination unit 33 determines that the user is in a sleeping state, for example, when the body temperature of the current user is equal to or lower than the body temperature threshold value and the heart rate of the current user is equal to or lower than the heart rate threshold value.
  • the air-conditioning device 30 determines that the user is in a sleeping state, the wind does not directly hit the user in the control wind direction 332. It controls in the direction and controls such as reducing the control air volume 333. Further, when the user is in a state such as after exercise and the user's heart rate, blood pressure, and body temperature are higher than in the normal state, the air conditioner 30 lowers the control temperature 331 and increases the control air volume 333. And so on.
  • the above control is an example of control of air-conditioning operation using the biological information 71, and in the air-conditioning system 100, control for improving comfort for the user is performed based on the biological information 71.
  • the control condition determination unit 33 determines the control conditions using the biological information 71.
  • the attribute information 72 is used as a control factor for controlling the air conditioning operation of the air conditioning device 30. That is, in the air conditioning system 100, the attribute information 72 is used to control the air conditioning operation of the air conditioning device 30. Attributes such as gender, age and nationality are user's constant information throughout the year. When the attribute information 72 is used to control the air-conditioning operation of the air-conditioning device 30, the air-conditioning system 100 of the air-conditioning device 30 is based on statistical data of temperature sensitivity for each attribute such as gender, age, and nationality. Controls air conditioning operation.
  • the temperature sensitivity statistical data for each attribute of the attribute information 72 is stored in the database 34 in advance.
  • temperature sensitivity tends to be subtly different between females and males.
  • elderly people tend to be less sensitive to temperature changes than young people.
  • nationality there is a tendency for subtle differences in sensitivity to temperature changes between those who have nationalities in countries with relatively low temperatures and those who have nationalities in countries with relatively high temperatures. be.
  • Temperature sensitivity statistical data is temperature sensitivity statistical data for such attributes.
  • the air-conditioning device 30 raises the control temperature 331 higher when the user is a female than when the user is a male. Further, the control wind direction 332 is controlled in a direction in which the wind does not directly hit the user. Further, when the user's age is in his twenties, the air conditioner 30 lowers the control temperature 331 and increases the control air volume 333 as compared with the case where the user's age is older than the twenties. And so on. It should be noted that these are examples of control of air-conditioning operation using the attribute information 72, and the air-conditioning system 100 provides comfort for the user based on the statistical data of temperature sensitivity corresponding to each attribute of the attribute information 72. Control is done to improve.
  • control condition determination unit 33 determines the control condition using the attribute information 72.
  • the temperature / humidity information in the room which is environmental information
  • the temperature / humidity information in the room which is the environmental information
  • the control condition determination unit 33 of the air conditioner 30 calculates how much the indoor temperature is changed in order to adjust the indoor temperature to the operation setting conditions transmitted from the smartphone 20 based on the indoor temperature / humidity information. Can be done.
  • the control condition determination unit 33 When a plurality of users equipped with the wearable computer-mounted device 10 are in the room, the control condition determination unit 33 performs air conditioning control for any one user among the plurality of users in the room. Determine the control conditions for. The control condition determination unit 33 determines the control conditions for performing air conditioning control for any one user with respect to the control temperature 331 and the control air volume 333 of the control conditions. That is, the control condition determination unit 33 determines the control temperature 331 and the control air volume 333 of the control conditions as described above when any one user is in the room. Here, information on which user the control condition determination unit 33 selects is stored in advance in the control condition determination unit 33.
  • the control condition determination unit 33 is based on the position information of a plurality of users in the room obtained by, for example, the detection result of the motion sensor provided in the air conditioner 30, and the person in the room. The control condition is determined so that the air is blown to a place where the motion is not detected.
  • control condition determination unit 33 registers identification information given to each of the plurality of wearable computer-mounted devices 10 worn by a plurality of users. Unique identification information is assigned to each of the plurality of wearable computer-mounted devices 10.
  • the user's biological information 71 transmitted from the wearable computer-mounted device 10 to the air conditioner 30 is associated with identification information unique to the wearable computer-mounted device 10 worn by the user. That is, the identification information unique to the wearable computer-mounted device 10 worn by the user is added to the user's biological information 71 transmitted from the wearable computer-mounted device 10 to the air conditioner 30.
  • each of the attribute information 72 of the plurality of users stored in the air conditioning storage unit 35 of the air conditioning device 30 is attached by the user, which is the same identification information as the identification information associated with the biometric information 71.
  • Identification information unique to the wearable computer-mounted device 10 is associated with the wearable computer-mounted device 10. That is, the user's attribute information 72 stored in the air-conditioning storage unit 35 of the air-conditioning device 30 is added with identification information unique to the wearable computer-mounted device 10 worn by the user.
  • the control condition determination unit 33 acquires the biological information 71 and the attribute information 72
  • the biological information 71 and the attribute information 72 are combined with the biological information 71 and the attribute information 72 based on the identification information unique to the wearable computer-mounted device 10 worn by the user. Can be associated with.
  • the air conditioning system 100 is stored in advance in the air conditioning device 30 and biological information 71 such as heart rate, blood pressure and body temperature obtained by measurement in the wearable computer-mounted device 10.
  • biological information 71 such as heart rate, blood pressure and body temperature obtained by measurement in the wearable computer-mounted device 10.
  • User attribute information 72 such as gender, age, and nationality, and indoor temperature / humidity information, which is environmental information obtained by measurement in the air conditioner 30, are used as control factors under the control conditions in the air conditioner operation of the air conditioner 30.
  • the control condition determination unit 33 determines a certain control temperature 331.
  • the control temperature 331 is an indoor temperature actually targeted in the control of air conditioning in the air conditioning device 30 determined by the control condition determination unit 33.
  • the air conditioning system 100 does not control the air conditioning operation of the air conditioning device 30 according to the set temperature 231 of the air conditioning operation setting condition set by the user, but corresponds to the user's state. It is possible to perform fine control of air conditioning, which is highly comfortable for the user.
  • control condition determination unit 33 determines the control wind direction 332 and the control air volume 333 as control conditions to be controlled in the air conditioning operation of the air conditioning device 30.
  • the control wind direction 332 is a wind direction of the conditioned air blown from the air conditioned device 30, which is actually targeted in the control of the air conditioned device in the air conditioned device 30, which is determined by the control condition determination unit 33.
  • the control air volume 333 is the air volume of the conditioned air blown from the air conditioned device 30, which is actually targeted in the control of the air conditioned device in the air conditioned device 30, which is determined by the control condition determination unit 33.
  • the air conditioning system 100 determines a plurality of operating conditions such as the temperature, wind direction, and air volume of the harmonized air blown into the room, so that the user can control the air conditioning more comfortably, finely and accurately. It is possible and can provide a comfortable environment corresponding to the user's condition.
  • the air conditioning system 100 includes biometric information 71 and operation settings when the user sets operating setting conditions for air conditioning such as temperature, wind direction, and air volume, which are instruction conditions for air conditioning in the air conditioning device 30, using the smartphone 20. Memorize and accumulate conditions. Then, the air conditioning system 100 can realize the air conditioning system 100 that provides a comfortable environment for the user by using the accumulated data as a control factor.
  • the air conditioning system 100 it is possible to provide the user with a comfortable environment corresponding to the user's condition.
  • Embodiment 2 in addition to the configuration according to the first embodiment, the air conditioner 30 is connected to the Internet 60, and the operation data 341 described later is shared between the air conditioner 30 and the server 40. do.
  • the same configuration as that of the first embodiment described above is designated by the same reference numerals as those of the first embodiment, and detailed description thereof will be omitted.
  • FIG. 6 is a diagram showing the configuration of the air conditioning system 200 according to the second embodiment.
  • the air conditioning system 200 according to the second embodiment includes a wearable computer-mounted device 10, a smartphone 20, an air conditioning device 30, a server 40, and a terminal 50. That is, the air conditioning system 200 has a configuration in which the server 40 and the terminal 50 are added to the air conditioning system 100 according to the first embodiment described above.
  • FIG. 7 is a diagram showing operation data 341 stored in the database 34 of the air conditioner 30 shown in FIG.
  • the operation data 341 is data indicating the operation status of the air conditioner 30.
  • the operation data 341 includes past operation status data which is data indicating the operation status of the past air conditioner 30, current operation status data which is data indicating the current operation status of the air conditioner 30, and air conditioner 30.
  • the failure status data indicating the failure status of the above is included.
  • the air conditioning control unit 37 of the air conditioning device 30 transmits the operation data 341 stored in the database 34 to the server 40 communicably connected to the air conditioning device 30 via the Internet 60.
  • the timing of transmitting the operation data 341 from the air conditioner 30 to the server 40 is not particularly limited.
  • FIG. 8 is a diagram showing a functional configuration of the server 40 of the air conditioning system 200 according to the second embodiment.
  • the server 40 is connected to the Internet 60, which is a global information and communication network.
  • the server 40 uploads the operation data 341 stored in the air conditioner 30 from the air conditioner 30 communicably connected to the server 40 via the Internet 60. That is, the server 40 can acquire the operation data 341 of the air conditioner 30 from the air conditioner 30 via the Internet 60. As a result, the server 40 shares the operation data 341 with the air conditioner 30.
  • a cloud server or a physical server can be used as the server 40.
  • the server 40 includes a server communication unit 41, a server storage unit 42, and a server control unit 43.
  • the server communication unit 41 connects to the Internet 60 and communicates with the air conditioner 30. Further, the server communication unit 41 connects to the Internet 60 and communicates with the terminal 50.
  • the server storage unit 42 stores the operation data 341 acquired from the air conditioner 30.
  • the server control unit 43 controls the entire processing of the server 40.
  • the server control unit 43 acquires operation data 341 from the air conditioner 30 and controls the server storage unit 42 to store the operation data 341.
  • the server control unit 43 controls the process of exchanging various information with and from the terminal 50.
  • FIG. 9 is a diagram showing a functional configuration of the terminal 50 of the air conditioning system 200 according to the second embodiment.
  • the terminal 50 is connected to the Internet 60.
  • the terminal 50 can acquire the operation data 341 from the server 40 which is communicably connected to the terminal 50 via the Internet 60.
  • the terminal 50 includes a terminal operation unit 51, a terminal display unit 52, a terminal storage unit 53, a terminal communication unit 54, and a terminal control unit 55.
  • the terminal operation unit 51 is an input unit that accepts setting operations from the user.
  • the terminal operation unit 51 receives input of various information from the user and transmits the input to the terminal control unit 55.
  • the terminal display unit 52 is a display unit that displays various information inside the terminal 50.
  • the terminal storage unit 53 is a storage unit that stores various information inside the terminal 50.
  • the terminal storage unit 53 stores the operation data 341 transmitted from the server 40.
  • the terminal communication unit 54 connects to the Internet 60 and communicates with the server 40.
  • the terminal control unit 55 is a control unit that controls the entire processing of the terminal 50.
  • the terminal control unit 55 stores the operation data 341 transmitted from the server 40 in the terminal storage unit 53. Further, the terminal control unit 55 causes the terminal display unit 52 to display the operation data 341.
  • FIG. 10 is a flowchart illustrating a procedure for operating the air conditioning system 200 according to the second embodiment.
  • the user who is the subject of the biological information 71 always wears, for example, a wristwatch-type wearable computer-mounted device 10 on his / her arm.
  • steps S60 are performed from step S10 described above.
  • step S110 the server 40 acquires the operation data 341 from the air conditioner 30.
  • the air conditioning control unit 37 of the air conditioning device 30 transmits the operation data 341 stored in the database 34 to the server 40 via the Internet 60.
  • the server 40 stores the operation data 341 transmitted from the air conditioner 30 in the server storage unit 42. As a result, the server 40 can acquire the operation data 341 from the air conditioner 30.
  • step S120 the terminal 50 acquires the operation data 341 from the server 40.
  • the server control unit 43 of the server 40 transmits the operation data 341 stored in the server storage unit 42 to the terminal 50 via the Internet 60.
  • the terminal 50 stores the operation data 341 transmitted from the server 40 in the terminal storage unit 53. As a result, the terminal 50 can acquire the operation data 341 from the server 40.
  • step S130 the terminal 50 displays the operation data 341 on the terminal display unit 52.
  • the terminal control unit 55 of the terminal 50 causes the terminal display unit 52 to display the operation data 341 stored in the terminal storage unit 53.
  • the above-mentioned air conditioning system 200 has the same effect as the air conditioning system 100 according to the first embodiment.
  • the air conditioning device 30, the server 40, and the terminal 50 are connected to the Internet 60, and the operation data 341 can be transmitted from the air conditioning device 30 to the server 40.
  • the operation data 341 can be shared between the air conditioner 30 and the server 40.
  • the terminal 50 can acquire the operation data 341 from the server 40. Then, in the air conditioning system 200, the operation data 341 can be displayed on the terminal display unit 52.
  • the person in charge of the equipment maker confirms the past operation status data, the current operation status data, and the failure status data included in the operation data 341 displayed on the terminal display unit 52, so that the operation status of the air conditioner 30 and the operation status of the air conditioner 30 can be confirmed. It becomes possible to monitor the failure status. Further, the terminal control unit 55 can determine whether the air conditioner 30 is in a normal operating state by comparing the current operating status data with the past operating status data. In addition, the person in charge of the equipment manufacturer can compare the current operation status data with the past operation status data. For example, in the past operation status data, by comparing the past operation status data when the air conditioner 30 is not operating normally with the current operation status data, the air conditioner 30 can be operated normally. It can be determined whether or not there is.
  • the terminal control unit 55 acquires operating years information, which is information on the number of years that the air conditioning device 30 has been operating, from the operating data 341, and based on the operating years information, recommends replacement of parts of the air conditioning device 30. It is possible to calculate the time. Further, the terminal control unit 55 acquires the actual operating time information which is the information of the operating time when the air conditioner 30 is operating from the operation data 341, and based on the actual operating time information, the component of the air conditioner 30. It is possible to calculate the recommended replacement time. The terminal control unit 55 causes the terminal display unit 52 to display information on the recommended replacement time of the parts of the air conditioner 30. This enables the person in charge of the equipment manufacturer to support the user directly or via the server 40 at the recommended replacement time of the parts of the air conditioner 30.
  • the failure status data of the operation data 341 includes information related to the failure such as information on the failure location and information on the cause of the failure. Therefore, the information related to the failure of the air conditioner 30 is shared between the air conditioner 30, the server 40, the terminal 50, and the person in charge of the equipment manufacturer who confirms the operation data 341 displayed on the terminal display unit 52. be able to. As a result, the person in charge of the equipment manufacturer can provide prompt support to the user in the event of a failure of the air conditioner 30.
  • the air conditioning system 200 it is possible to prevent a state in which the air conditioning operation according to the set temperature cannot be performed due to a failure or deterioration of the equipment or parts, or to eliminate the condition at an early stage, which is comfortable for the user. It has the effect of being able to provide an air-conditioned environment.
  • the wearable device control unit 16 of the wearable computer-mounted device 10 the setting function unit 23 of the smartphone 20, the mobile terminal control unit 26 of the smartphone 20, the control condition determination unit 33 of the air conditioning device 30, and the air conditioning control of the air conditioning device 30.
  • Each unit 37, the server control unit 43 of the server 40, and the terminal control unit 55 of the terminal 50 are realized as a processing circuit having a hardware configuration shown in FIG.
  • FIG. 11 is a diagram showing an example of the hardware configuration of the processing circuit according to the first embodiment and the second embodiment.
  • a plurality of processors and a plurality of memories may cooperate to realize the functions of the above-mentioned parts. Further, a part of the functions of the above parts may be implemented as an electronic circuit, and the other parts may be realized by using the processor 101 and the memory 102.
  • the configuration shown in the above embodiments is an example, and can be combined with another known technique, can be combined with each other, and does not deviate from the gist. It is also possible to omit or change a part of the configuration.

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Abstract

This air-conditioning system comprises a wearable device worn by a user in a space to be air-conditioned, and an air-conditioning device (30) capable of communicating with the wearable device. The wearable device has a biometric information measurement unit that measures the biometric information (71) of the user. The air-conditioning device (30) is equipped with: an air-conditioning unit (31) that provides air conditioning for the space to be air-conditioned; an air-conditioning control unit (37) that controls the operation of the air-conditioning unit (31); an environmental information measurement unit that measures the environmental situation of the space to be air-conditioned and generates environmental information indicating the environmental situation of the space to be air-conditioned; an attribute information storage unit that stores attribute information (72), which is information relating to personal attributes that affect the temperature sensitivity of a person; and a control condition determination unit (33) that determines control conditions for the air-conditioning control unit (37) to control the operation of the air-conditioning unit (31) on the basis of the biometric information (71), the environmental information, and the attribute information (72).

Description

空気調和システムAir conditioning system
 本開示は、空気調和対象空間に存在するユーザーに対して快適な環境を提供する空気調和システムに関する。 This disclosure relates to an air conditioning system that provides a comfortable environment for users existing in an air conditioning target space.
 従来、ユーザーの状態に対応して空気調和を行う装置として、特許文献1には、ユーザーが携帯する装置によって測定される、血圧、脈拍、体温といったユーザーの生体情報およびユーザーの現在位置の温度情報に基づいて、ユーザーの移動先の空気調和機に対する設定温度を決定し、ユーザーの推定移動先室内の空気調和装置を制御するものが開示されている。 Conventionally, as a device that performs air conditioning according to a user's condition, Patent Document 1 describes the user's biological information such as blood pressure, pulse, and body temperature measured by the device carried by the user, and the temperature information of the user's current position. Based on the above, the one that determines the set temperature for the air conditioner of the user's destination and controls the air conditioner in the user's estimated destination room is disclosed.
特開2015-114014号公報JP-A-2015-114014
 しかしながら、上記特許文献1の技術によれば、ユーザーの生体情報およびユーザーの現在位置の温度情報に基づいて空気調和装置の制御を行っているため、空気調和装置を制御するための制御因子が、測定により得られる情報のみとなる。しかしながら、空気調和対象空間に居るユーザーは、性別および年齢などによって温度感受性が異なる。このため、空気調和システムにおける空気調和においては、測定により得られる情報のみによる制御ではユーザーに対して快適な環境を提供するには不十分であり、改善の余地があった。 However, according to the technique of Patent Document 1, since the air conditioner is controlled based on the biometric information of the user and the temperature information of the user's current position, the control factor for controlling the air conditioner is. Only the information obtained by the measurement. However, users in the air-conditioned space have different temperature sensitivities depending on gender, age, and the like. Therefore, in the air conditioning in the air conditioning system, the control based only on the information obtained by the measurement is insufficient to provide a comfortable environment for the user, and there is room for improvement.
 本開示は、上記に鑑みてなされたものであって、ユーザーに対して快適な環境を提供することができる空気調和システムを得ることを目的とする。 The present disclosure has been made in view of the above, and an object thereof is to obtain an air conditioning system capable of providing a comfortable environment for the user.
 上述した課題を解決し、目的を達成するために、本開示にかかる空気調和システムは、空気調和対象空間に存在するユーザーが装着する装着型の機器と、装着型の機器と通信可能な空気調和装置と、を備える。装着型の機器は、ユーザーの生体情報を測定する生体情報測定部を有する。空気調和装置は、空気調和対象空間の空気調和を行う空気調和部と、空気調和部の動作を制御する空気調和制御部と、空気調和対象空間の環境の状況を測定して空気調和対象空間の環境の状況を示す環境情報を生成する環境情報測定部と、人の温度感受性に影響を与える個人の属性の情報である属性情報を記憶する属性情報記憶部と、生体情報と環境情報と属性情報とに基づいて、空気調和制御部が空気調和部の動作を制御するための制御条件を決定する制御条件決定部と、を備える。 In order to solve the above-mentioned problems and achieve the object, the air conditioning system according to the present disclosure is a wearable device worn by a user existing in the air conditioning target space and an air conditioning capable of communicating with the wearable device. It is equipped with a device. The wearable device has a biometric information measuring unit that measures the biometric information of the user. The air conditioned device has an air conditioned unit that harmonizes the air in the air conditioned space, an air conditioned control unit that controls the operation of the air conditioned unit, and an air conditioned space that measures the environmental conditions of the air conditioned space. An environmental information measurement unit that generates environmental information indicating the environmental status, an attribute information storage unit that stores attribute information that is information on individual attributes that affect human temperature sensitivity, and biological information, environmental information, and attribute information. Based on the above, the air conditioning control unit includes a control condition determining unit that determines control conditions for controlling the operation of the air conditioning unit.
 本開示にかかる空気調和システムは、ユーザーに対して快適な環境を提供することができる、という効果を奏する。 The air conditioning system according to this disclosure has the effect of being able to provide a comfortable environment for the user.
実施の形態1にかかる空気調和システムの構成を示す図The figure which shows the structure of the air conditioning system which concerns on Embodiment 1. 実施の形態1にかかる空気調和システムの装着型コンピュータ搭載機器の機能構成を示す図The figure which shows the functional structure of the wearable computer-mounted device of the air-conditioning system which concerns on Embodiment 1. 実施の形態1にかかる空気調和システムのスマートフォンの機能構成を示す図The figure which shows the functional structure of the smartphone of the air-conditioning system which concerns on Embodiment 1. 実施の形態1にかかる空気調和システムの空気調和装置の機能構成を示す図The figure which shows the functional structure of the air-conditioning apparatus of the air-conditioning system which concerns on Embodiment 1. 実施の形態1にかかる空気調和システムの動作の手順を説明するフローチャートA flowchart illustrating a procedure for operating the air conditioning system according to the first embodiment. 実施の形態2にかかる空気調和システムの構成を示す図The figure which shows the structure of the air conditioning system which concerns on Embodiment 2. 図4に示す空気調和装置のデータベースに記憶される稼働データを示す図The figure which shows the operation data stored in the database of the air conditioner shown in FIG. 実施の形態2にかかる空気調和システムのサーバの機能構成を示す図The figure which shows the functional structure of the server of the air conditioning system which concerns on Embodiment 2. 実施の形態2にかかる空気調和システムの端末の機能構成を示す図The figure which shows the functional structure of the terminal of the air conditioning system which concerns on Embodiment 2. 実施の形態2にかかる空気調和システムの動作の手順を説明するフローチャートA flowchart illustrating a procedure for operating the air conditioning system according to the second embodiment. 実施の形態1および実施の形態2における処理回路のハードウェア構成の一例を示す図The figure which shows an example of the hardware composition of the processing circuit in Embodiment 1 and Embodiment 2.
 以下に、実施の形態にかかる空気調和システムを図面に基づいて詳細に説明する。 The air conditioning system according to the embodiment will be described in detail below based on the drawings.
実施の形態1.
 図1は、実施の形態1にかかる空気調和システム100の構成を示す図である。図2は、実施の形態1にかかる空気調和システム100の装着型コンピュータ搭載機器10の機能構成を示す図である。図3は、実施の形態1にかかる空気調和システム100のスマートフォン20の機能構成を示す図である。図4は、実施の形態1にかかる空気調和システム100の空気調和装置30の機能構成を示す図である。本実施の形態1にかかる空気調和システム100は、装着型コンピュータ搭載機器10と、スマートフォン20と、空気調和装置30と、を備える。
Embodiment 1.
FIG. 1 is a diagram showing a configuration of an air conditioning system 100 according to the first embodiment. FIG. 2 is a diagram showing a functional configuration of a wearable computer-mounted device 10 of the air conditioning system 100 according to the first embodiment. FIG. 3 is a diagram showing a functional configuration of the smartphone 20 of the air conditioning system 100 according to the first embodiment. FIG. 4 is a diagram showing a functional configuration of the air conditioning device 30 of the air conditioning system 100 according to the first embodiment. The air conditioning system 100 according to the first embodiment includes a wearable computer-mounted device 10, a smartphone 20, and an air conditioning device 30.
 装着型コンピュータ搭載機器10は、ユーザーの身体に装着され、ユーザーの生体情報71を測定し、測定した生体情報71をスマートフォン20と空気調和装置30とに送信する装着型の通信機器である。装着型コンピュータ搭載機器10は、スマートフォン20および空気調和装置30と無線通信可能である。装着型コンピュータ搭載機器10は、バッテリー内蔵の装着型の端末である、いわゆるウェアラブル端末であり、空気調和システム100における第1の機器である。装着型コンピュータ搭載機器10には、例えば時計型のウェアラブル端末が使用可能である。 The wearable computer-mounted device 10 is a wearable communication device that is attached to the user's body, measures the user's biological information 71, and transmits the measured biological information 71 to the smartphone 20 and the air conditioner 30. The wearable computer-mounted device 10 can wirelessly communicate with the smartphone 20 and the air conditioner 30. The wearable computer-mounted device 10 is a so-called wearable terminal, which is a wearable terminal having a built-in battery, and is the first device in the air conditioning system 100. For the wearable computer-mounted device 10, for example, a watch-type wearable terminal can be used.
 装着型コンピュータ搭載機器10は、装着型機器操作部11と、装着型機器表示部12と、生体情報測定部13と、装着型機器記憶部14と、装着型機器通信部15と、装着型機器制御部16と、を備える。装着型コンピュータ搭載機器10における上記の各構成部は、相互に情報の授受が可能とされている。 The wearable computer-mounted device 10 includes a wearable device operation unit 11, a wearable device display unit 12, a biological information measurement unit 13, a wearable device storage unit 14, a wearable device communication unit 15, and a wearable device. A control unit 16 is provided. Each of the above-mentioned components in the wearable computer-mounted device 10 can exchange information with each other.
 装着型機器操作部11は、ユーザーからの設定操作を受け付ける入力部である。装着型機器操作部11は、ユーザーからの各種情報の入力を受け付けて装着型機器制御部16または各構成部に送信する。 The wearable device operation unit 11 is an input unit that accepts setting operations from the user. The wearable device operation unit 11 receives input of various information from the user and transmits the input to the wearable device control unit 16 or each component unit.
 装着型機器表示部12は、装着型コンピュータ搭載機器10の内部の各種情報を表示する表示部である。 The wearable device display unit 12 is a display unit that displays various information inside the wearable computer-mounted device 10.
 生体情報測定部13は、装着型コンピュータ搭載機器10がユーザーの身体に装着された状態で、予め決められた周期でユーザーの生体情報71を測定し、収集する。生体情報測定部13が測定する生体情報71は、生体が発する種々の生理学的情報であり、心拍数、血圧および体温が例示される。生体情報測定部13は、ユーザーの生体情報71を収集する各種の生体センサを有している。生体情報測定部13が備えるセンサとしては、心拍計、血圧計および体温計といったセンサが例示される。生体情報測定部13は、これらのセンサを用いることにより、心拍数、血圧および体温といった生体情報71を測定し、収集することができる。 The biometric information measuring unit 13 measures and collects the user's biometric information 71 at a predetermined cycle with the wearable computer-mounted device 10 mounted on the user's body. The biological information 71 measured by the biological information measuring unit 13 is various physiological information generated by the living body, and examples thereof include heart rate, blood pressure, and body temperature. The biometric information measuring unit 13 has various biosensors that collect the biometric information 71 of the user. Examples of the sensor included in the biological information measuring unit 13 include sensors such as a heart rate monitor, a sphygmomanometer, and a thermometer. By using these sensors, the biological information measuring unit 13 can measure and collect biological information 71 such as heart rate, blood pressure, and body temperature.
 すなわち、生体情報測定部13は、装着型コンピュータ搭載機器10がユーザーの身体に装着された状態で、ユーザーの複数の種類の生体情報71を同時に測定し、収集することができる。なお、生体情報測定部13は、心拍数、血圧および体温のうち少なくとも1つの生体情報71を測定し、収集してもよい。なお、心拍数と血圧と体温とは、ユーザーの生体情報71の一例である。 That is, the biological information measuring unit 13 can simultaneously measure and collect a plurality of types of biological information 71 of the user while the wearable computer-mounted device 10 is attached to the user's body. The biological information measuring unit 13 may measure and collect at least one biological information 71 among heart rate, blood pressure, and body temperature. The heart rate, blood pressure, and body temperature are examples of the user's biological information 71.
 生体情報測定部13において測定されたユーザーの生体情報71は、日時情報が関連付けられて装着型機器記憶部14に送られ、装着型機器記憶部14に記憶される。日時情報は、生体情報測定部13においてユーザーの生体情報71が測定された日時の情報である。 The user's biometric information 71 measured by the biometric information measuring unit 13 is sent to the wearable device storage unit 14 in association with the date and time information, and is stored in the wearable device storage unit 14. The date and time information is information on the date and time when the user's biometric information 71 was measured by the biometric information measuring unit 13.
 生体情報測定部13が、予め決められた周期でユーザーの生体情報71を収集することにより、ユーザーの一日の中での体調の変化を記録として残すことができ、ユーザーの異常状態を検出する際の情報として利用することができる。なお、生体情報測定部13は、ユーザーにより指定されるタイミング、または予め決められたタイミングでユーザーの生体情報71を測定し、収集してもよい。 By collecting the user's biometric information 71 at a predetermined cycle, the biometric information measuring unit 13 can record changes in the user's physical condition during the day and detect the user's abnormal state. It can be used as information at the time. The biometric information measuring unit 13 may measure and collect the user's biometric information 71 at a timing designated by the user or a predetermined timing.
 装着型機器記憶部14は、装着型コンピュータ搭載機器10の内部の各種情報を記憶する記憶部である。装着型機器記憶部14は、生体情報測定部13において測定された生体情報71を記憶する。装着型機器記憶部14に記憶された生体情報71は、装着型機器制御部16の制御により、装着型機器通信部15を介してスマートフォン20と空気調和装置30とに送信される。 The wearable device storage unit 14 is a storage unit that stores various information inside the wearable computer-mounted device 10. The wearable device storage unit 14 stores the biological information 71 measured by the biological information measuring unit 13. The biological information 71 stored in the wearable device storage unit 14 is transmitted to the smartphone 20 and the air conditioner 30 via the wearable device communication unit 15 under the control of the wearable device control unit 16.
 図2に示すように、装着型機器記憶部14は、生体情報測定部13から送信されたユーザーの生体情報71として、心拍数のデータと、血圧のデータと、体温のデータを記憶する。なお、心拍数と血圧と体温とは、装着型機器記憶部14が記憶するユーザーの生体情報71の一例である。 As shown in FIG. 2, the wearable device storage unit 14 stores heart rate data, blood pressure data, and body temperature data as the user's biological information 71 transmitted from the biological information measurement unit 13. The heart rate, blood pressure, and body temperature are examples of the user's biological information 71 stored in the wearable device storage unit 14.
 装着型機器通信部15は、スマートフォン20および空気調和装置30との間で、無線通信を用いて通信を行う。 The wearable device communication unit 15 communicates with the smartphone 20 and the air conditioner 30 by using wireless communication.
 装着型機器制御部16は、各種情報を受け付けて、装着型コンピュータ搭載機器10内の各構成部の制御を含む、装着型コンピュータ搭載機器10の全体の制御を行う。また、装着型機器制御部16は、生体情報測定部13における測定結果である生体情報71を、装着型機器通信部15を介してスマートフォン20および空気調和装置30に送信する制御を行う。 The wearable device control unit 16 receives various information and controls the entire wearable computer-mounted device 10 including the control of each component in the wearable computer-mounted device 10. Further, the wearable device control unit 16 controls to transmit the biometric information 71, which is the measurement result of the biometric information measurement unit 13, to the smartphone 20 and the air conditioner 30 via the wearable device communication unit 15.
 なお、装着型コンピュータ搭載機器10は、装着型機器操作部11および装着型機器表示部12といった構成部を有さないものであってもよく、使用される環境に合わせて機能が異なる各種の形態のものを構成可能である。 The wearable computer-mounted device 10 may not have a component such as a wearable device operation unit 11 and a wearable device display unit 12, and has various forms having different functions according to the environment in which the wearable computer is used. Can be configured.
 スマートフォン20は、装着型コンピュータ搭載機器10および空気調和装置30から送信される情報を表示し、また空気調和装置30に運転設定情報を無線通信を用いて送信可能な移動端末である。スマートフォン20は、空気調和システム100における第2の機器である。そして、スマートフォン20は、ユーザーが空気調和装置30における空気調和の条件である運転設定条件を設定するための運転設定条件設定部としての機能を有する。すなわち、スマートフォン20は、空気調和装置30に指示する空気調和装置30の空気調和の条件である運転設定条件を設定して空気調和装置30に送信するため、遠隔操作機器と換言できる。 The smartphone 20 is a mobile terminal that can display information transmitted from the wearable computer-mounted device 10 and the air conditioner 30 and can transmit operation setting information to the air conditioner 30 by wireless communication. The smartphone 20 is a second device in the air conditioning system 100. Then, the smartphone 20 has a function as an operation setting condition setting unit for the user to set an operation setting condition which is an air conditioning condition in the air conditioning device 30. That is, since the smartphone 20 sets the operation setting condition which is the condition of the air conditioning of the air conditioning device 30 instructed to the air conditioning device 30 and transmits it to the air conditioning device 30, it can be paraphrased as a remote control device.
 また、スマートフォン20は、装着型コンピュータ搭載機器10から取得した生体情報71を記憶し、また生体情報71を表示してユーザーに提示することができる。なお、空気調和システム100における第2の機器として、スマートフォン20の代わりにタブレットなどの無線通信端末を用いてもよい。 Further, the smartphone 20 can store the biometric information 71 acquired from the wearable computer-mounted device 10 and display the biometric information 71 and present it to the user. As the second device in the air conditioning system 100, a wireless communication terminal such as a tablet may be used instead of the smartphone 20.
 スマートフォン20は、移動端末操作部21と、移動端末表示部22と、設定機能部23と、移動端末記憶部24と、移動端末通信部25と、移動端末制御部26と、を備える。 The smartphone 20 includes a mobile terminal operation unit 21, a mobile terminal display unit 22, a setting function unit 23, a mobile terminal storage unit 24, a mobile terminal communication unit 25, and a mobile terminal control unit 26.
 移動端末操作部21は、ユーザーからの設定操作を受け付ける入力部である。移動端末操作部21は、ユーザーからの各種情報の入力を受け付けて、移動端末制御部26に送信する。 The mobile terminal operation unit 21 is an input unit that accepts setting operations from the user. The mobile terminal operation unit 21 receives input of various information from the user and transmits the input to the mobile terminal control unit 26.
 移動端末表示部22は、スマートフォン20の内部の各種情報を表示する表示部である。 The mobile terminal display unit 22 is a display unit that displays various information inside the smartphone 20.
 設定機能部23は、ユーザーから入力される空気調和の運転設定条件を設定する機能部である。設定機能部23は、移動端末操作部21から送信された情報に基づいて、空気調和の運転設定条件を設定機能部23に設定し、記憶する。また、設定機能部23は、設定された空気調和の運転設定条件を、移動端末制御部26の制御により、移動端末通信部25を介して空気調和装置30に送信する。 The setting function unit 23 is a function unit that sets the operation setting conditions for air conditioning input from the user. The setting function unit 23 sets and stores the operation setting conditions for air conditioning in the setting function unit 23 based on the information transmitted from the mobile terminal operation unit 21. Further, the setting function unit 23 transmits the set air conditioning operation setting conditions to the air conditioning device 30 via the mobile terminal communication unit 25 under the control of the mobile terminal control unit 26.
 空気調和の運転設定条件は、ユーザーによって設定される、空気調和装置30における空気調和の指示条件であり、設定温度231と、設定風向232と、設定風量233とが例示される。ここで、設定温度231は、ユーザーによって設定される、空気調和装置30における空気調和で目標とされる室内温度である。設定風向232は、ユーザーによって設定される、空気調和装置30から送風される調和空気の風向である。設定風量233は、ユーザーによって設定される、空気調和装置30から送風される調和空気の風量である。したがって、設定機能部23は、設定温度231、設定風向232、設定風量233といった、空気調和の運転設定条件の操作設定機能を有する。 The operation setting condition for air conditioning is an instruction condition for air conditioning in the air conditioning device 30 set by the user, and examples thereof include a set temperature 231, a set wind direction 232, and a set air volume 233. Here, the set temperature 231 is a room temperature set by the user and targeted by air conditioning in the air conditioning device 30. The set wind direction 232 is the wind direction of the conditioned air blown from the air conditioned device 30 set by the user. The set air volume 233 is the air volume of the conditioned air blown from the air conditioned device 30 set by the user. Therefore, the setting function unit 23 has an operation setting function of the operation setting condition of air conditioning such as the set temperature 231 and the set wind direction 232 and the set air volume 233.
 スマートフォン20は、空気調和の運転設定条件を設定し、設定した空気調和の運転設定条件を空気調和装置30に送信するために利用される空気調和設定ソフトウェアを有している。設定機能部23は、空気調和設定ソフトウェアを実行することによって構成される。 The smartphone 20 has air conditioning setting software used for setting air conditioning operation setting conditions and transmitting the set air conditioning operation setting conditions to the air conditioning device 30. The setting function unit 23 is configured by executing the air conditioning setting software.
 移動端末記憶部24は、スマートフォン20の内部の各種情報を記憶する記憶部である。移動端末記憶部24は、装着型機器記憶部14から送信された生体情報71を記憶する。 The mobile terminal storage unit 24 is a storage unit that stores various information inside the smartphone 20. The mobile terminal storage unit 24 stores the biological information 71 transmitted from the wearable device storage unit 14.
 移動端末通信部25は、装着型コンピュータ搭載機器10および空気調和装置30との間で、無線通信を用いて通信を行う。移動端末通信部25は、装着型コンピュータ搭載機器10から送信された生体情報71を移動端末制御部26に送信する。移動端末通信部25は、設定機能部23から送信された空気調和の運転設定条件を、空気調和装置30に送信する。 The mobile terminal communication unit 25 communicates with the wearable computer-mounted device 10 and the air conditioner 30 by using wireless communication. The mobile terminal communication unit 25 transmits the biometric information 71 transmitted from the wearable computer-mounted device 10 to the mobile terminal control unit 26. The mobile terminal communication unit 25 transmits the air conditioning operation setting conditions transmitted from the setting function unit 23 to the air conditioning device 30.
 移動端末制御部26は、スマートフォン20の全体の処理を制御する制御部である。移動端末制御部26は、移動端末通信部25から送信された生体情報71を、移動端末記憶部24に記憶させる。また、移動端末制御部26は、移動端末通信部25から送信された生体情報71を、移動端末表示部22に表示させる。 The mobile terminal control unit 26 is a control unit that controls the entire processing of the smartphone 20. The mobile terminal control unit 26 stores the biometric information 71 transmitted from the mobile terminal communication unit 25 in the mobile terminal storage unit 24. Further, the mobile terminal control unit 26 causes the mobile terminal display unit 22 to display the biological information 71 transmitted from the mobile terminal communication unit 25.
 空気調和装置30は、基本的に一般的な空気調和機の機能を有し、空気調和装置30の空気調和対象空間である室内の空気調和を行う。空気調和装置30は、空気調和システム100における第3の機器である。空気調和装置30は、空気調和部31と、温湿度センサ32と、制御条件決定部33と、データベース34と、空気調和記憶部35と、空気調和通信部36と、空気調和制御部37と、を備える。 The air conditioner 30 basically has the function of a general air conditioner, and performs air conditioning in a room which is an air conditioner target space of the air conditioner 30. The air conditioned device 30 is a third device in the air conditioned system 100. The air conditioning device 30 includes an air conditioning unit 31, a temperature / humidity sensor 32, a control condition determination unit 33, a database 34, an air conditioning storage unit 35, an air conditioning communication unit 36, and an air conditioning control unit 37. To prepare for.
 空気調和部31は、一般的な空気調和装置における空気調和機能および構成を有する。空気調和部31は、冷媒が流れる冷媒回路、冷媒回路において冷媒圧縮を行うコンプレッサ、室内の空気と冷媒回路中を流れる冷媒との熱交換を行う熱交換器、熱交換器で熱交換された調和空気を室内に送り出す送風ファン、調和空気を送り出す方向を調整する風向調整部、室外の空気と冷媒回路中を流れる冷媒との熱交換を行うための室外熱交換器、などを備えている。 The air conditioning unit 31 has an air conditioning function and configuration in a general air conditioning device. The air harmonizing unit 31 includes a refrigerant circuit through which the refrigerant flows, a compressor that compresses the refrigerant in the refrigerant circuit, a heat exchanger that exchanges heat between the indoor air and the refrigerant flowing in the refrigerant circuit, and heat exchange harmonization by the heat exchanger. It is equipped with a blower fan that sends air into the room, a wind direction adjustment unit that adjusts the direction in which harmonized air is sent out, and an outdoor heat exchanger that exchanges heat between the outdoor air and the refrigerant flowing in the refrigerant circuit.
 温湿度センサ32は、空気調和装置30の空気調和対象空間である室内の環境の状況を測定して空気調和対象空間の環境の状況を示す環境情報を生成する環境情報測定部である。環境情報は、空気調和装置30の空気調和対象空間である室内の空気の温度である室内温度、室内の空気の湿度である室内湿度、屋外の空気の温度である屋外温度、屋外の空気の湿度である屋外湿度が例示される。室内温度および室内湿度は、空気調和対象空間である室内の環境情報である。屋外温度および屋外湿度は、屋外の環境情報である。温湿度センサ32は、室内温度、室内湿度、屋外温度および屋外湿度を予め決められた周期で測定し、測定結果である温度と湿度との情報である温湿度情報を制御条件決定部33に送信する。 The temperature / humidity sensor 32 is an environmental information measuring unit that measures the state of the indoor environment, which is the air-conditioning target space of the air-conditioning device 30, and generates environmental information indicating the state of the environment of the air-conditioning target space. The environmental information includes the indoor temperature, which is the temperature of the indoor air, which is the air conditioning target space of the air conditioning device 30, the indoor humidity, which is the humidity of the indoor air, the outdoor temperature, which is the temperature of the outdoor air, and the humidity of the outdoor air. The outdoor humidity is exemplified. The room temperature and the room humidity are environmental information of the room which is the space subject to air conditioning. Outdoor temperature and outdoor humidity are outdoor environmental information. The temperature / humidity sensor 32 measures the indoor temperature, the indoor humidity, the outdoor temperature and the outdoor humidity at predetermined cycles, and transmits the temperature / humidity information which is the information of the temperature and the humidity which is the measurement result to the control condition determination unit 33. do.
 制御条件決定部33は、スマートフォン20から送信される空気調和の運転設定条件に対して、空気調和記憶部35に記憶された後述する属性情報72と、装着型コンピュータ搭載機器10から送信されて空気調和記憶部35に記憶された生体情報71と、温湿度センサ32において測定された環境情報である温湿度情報とに基づいて、空気調和装置30の空気調和運転における制御条件を決定する。また、制御条件決定部33は、決定した制御条件を空気調和制御部37に送信する。 The control condition determination unit 33 receives the attribute information 72 to be described later stored in the air conditioning storage unit 35 and the air transmitted from the wearable computer-mounted device 10 with respect to the air conditioning operation setting conditions transmitted from the smartphone 20. Based on the biological information 71 stored in the harmonized storage unit 35 and the temperature / humidity information which is the environmental information measured by the temperature / humidity sensor 32, the control conditions in the air conditioning operation of the air conditioning device 30 are determined. Further, the control condition determination unit 33 transmits the determined control condition to the air conditioning control unit 37.
 属性情報72は、人の温度感受性に影響を与える個人の属性の情報であり、性別、年齢および国籍が例示される。属性情報72は、スマートフォン20を用いて予め空気調和装置30に入力され、空気調和記憶部35に記憶される。 Attribute information 72 is information on the attributes of an individual that affects the temperature sensitivity of a person, and exemplifies gender, age, and nationality. The attribute information 72 is input to the air conditioning device 30 in advance using the smartphone 20 and stored in the air conditioning storage unit 35.
 すなわち、制御条件決定部33は、属性情報72と生体情報71と温湿度情報とに基づいて、スマートフォン20から送信される空気調和の運転設定条件を補正することにより、制御条件を決定する。制御条件決定部33は、属性情報72と生体情報71と温湿度情報とに基づいて空気調和の運転設定条件を補正することにより、ユーザーの状態に対応した、ユーザーにとって快適性が高い、細やかな空気調和の制御を可能とする空気調和運転の制御条件を決定することができる。 That is, the control condition determination unit 33 determines the control condition by correcting the air-conditioning operation setting condition transmitted from the smartphone 20 based on the attribute information 72, the biological information 71, and the temperature / humidity information. The control condition determination unit 33 corrects the operation setting conditions for air conditioning based on the attribute information 72, the biological information 71, and the temperature / humidity information, thereby corresponding to the user's condition and being highly comfortable for the user. It is possible to determine the control conditions of the air-conditioning operation that enables the control of the air-conditioning.
 制御条件は、空気調和制御部37が空気調和装置30の空気調和運転を制御する際に、実際に目標とする制御条件であり、制御温度331、制御風向332、制御風量333とが例示される。制御条件は、属性情報72と生体情報71と温湿度情報とに基づいて、空気調和の運転設定条件を補正することにより設定されるため、基本的には、空気調和の運転設定条件とは異なる条件となる。 The control conditions are control conditions that are actually targeted when the air conditioning control unit 37 controls the air conditioning operation of the air conditioning device 30, and examples thereof include a control temperature 331, a control wind direction 332, and a control air volume 333. .. Since the control conditions are set by correcting the air-conditioning operation setting conditions based on the attribute information 72, the biological information 71, and the temperature / humidity information, they are basically different from the air-conditioning operation setting conditions. It becomes a condition.
 データベース34は、ユーザーの平常状態における一日の生体情報71の変化の情報、すなわち体調の変化の情報を記憶する。すなわち、データベース34は、ユーザーの一日の生体情報71を記憶する。また、データベース34は、属性情報72に含まれる属性についての温度感受性の統計データを予め記憶している。また、データベース34は、ユーザーが空気調和の運転設定条件の設定を行った場合に、空気調和の運転設定条件の設定時の、空気調和の運転設定条件の設定温度231と設定風向232と設定風量233と、生体情報71とを関連付けて記憶する。すなわち、データベース34は、ユーザーがスマートフォン20を用いて空気調和の運転設定条件の設定を行った場合の、空気調和の運転設定条件の設定温度231と設定風向232と設定風量233と、を記録する運転設定条件記憶部としての機能を有する。 The database 34 stores information on changes in the biological information 71 of the day in the normal state of the user, that is, information on changes in physical condition. That is, the database 34 stores the user's daily biometric information 71. Further, the database 34 stores in advance statistical data of temperature sensitivity for the attributes included in the attribute information 72. Further, in the database 34, when the user sets the operation setting condition of the air conditioning, the set temperature 231 and the set wind direction 232 and the set air volume of the operation setting condition of the air conditioning at the time of setting the operation setting condition of the air conditioning The 233 and the biological information 71 are stored in association with each other. That is, the database 34 records the set temperature 231, the set wind direction 232, and the set air volume 233 of the air-conditioning operation setting condition when the user sets the air-conditioning operation setting condition using the smartphone 20. It has a function as an operation setting condition storage unit.
 空気調和記憶部35は、空気調和装置30の内部の各種情報を記憶する記憶部である。空気調和記憶部35は、装着型コンピュータ搭載機器10から送信された生体情報71、スマートフォン20から送信された空気調和の運転設定条件を記憶する。また、空気調和記憶部35は、ユーザーから入力される属性情報72を記憶する。すなわち、空気調和記憶部35は、属性情報72を記憶する属性情報記憶部としての機能を有する。 The air conditioning storage unit 35 is a storage unit that stores various information inside the air conditioning device 30. The air-conditioning storage unit 35 stores the biometric information 71 transmitted from the wearable computer-mounted device 10 and the air-conditioning operation setting conditions transmitted from the smartphone 20. Further, the air conditioning storage unit 35 stores the attribute information 72 input from the user. That is, the air-conditioning storage unit 35 has a function as an attribute information storage unit for storing the attribute information 72.
 空気調和通信部36は、装着型コンピュータ搭載機器10およびスマートフォン20との間で、無線通信を用いて通信を行う。 The air-conditioning communication unit 36 communicates with the wearable computer-mounted device 10 and the smartphone 20 by using wireless communication.
 空気調和制御部37は、空気調和装置30の全体の処理を制御する。空気調和制御部37は、空気調和部31の動作を制御して空気調和装置30の運転を制御する。そして、空気調和制御部37は、制御条件決定部33から送信される制御条件に従って、空気調和装置30の運転を制御する。 The air conditioning control unit 37 controls the entire processing of the air conditioning device 30. The air conditioning control unit 37 controls the operation of the air conditioning unit 31 to control the operation of the air conditioning device 30. Then, the air conditioning control unit 37 controls the operation of the air conditioning device 30 according to the control conditions transmitted from the control condition determining unit 33.
 空気調和装置30は、室内に配置される室内機と屋外に配置される室外機とを有するセパレート型の空気調和装置であってもよく、一体型の空気調和装置であってもよい。 The air conditioner 30 may be a separate type air conditioner having an indoor unit arranged indoors and an outdoor unit arranged outdoors, or may be an integrated air conditioner.
 つぎに、空気調和システム100の動作について説明する。図5は、実施の形態1にかかる空気調和システム100の動作の手順を説明するフローチャートである。ここでは、生体情報71の被測定者であるユーザーは、常時、例えば腕時計型の装着型コンピュータ搭載機器10を腕に身に付けることとする。 Next, the operation of the air conditioning system 100 will be described. FIG. 5 is a flowchart illustrating a procedure for operating the air conditioning system 100 according to the first embodiment. Here, the user who is the subject of the biological information 71 always wears, for example, a wristwatch-type wearable computer-mounted device 10 on his / her arm.
 まず、ステップS10において、空気調和装置30が、属性情報72として性別、年齢、国籍の情報を取得する。ユーザーは、移動端末操作部21を用いてスマートフォン20に属性情報72を入力し、入力した属性情報72をスマートフォン20から空気調和装置30に送信する。これにより、空気調和装置30が、属性情報72をスマートフォン20から取得することができる。 First, in step S10, the air conditioner 30 acquires information on gender, age, and nationality as attribute information 72. The user inputs the attribute information 72 to the smartphone 20 using the mobile terminal operation unit 21, and transmits the input attribute information 72 from the smartphone 20 to the air conditioner 30. As a result, the air conditioner 30 can acquire the attribute information 72 from the smartphone 20.
 つぎに、ステップS20において、装着型コンピュータ搭載機器10の生体情報測定部13が、生体情報71を予め決められた周期で測定する。生体情報測定部13は、測定結果である生体情報71を、スマートフォン20および空気調和装置30に、装着型コンピュータ搭載機器10の装着型機器通信部15を介して送信する。 Next, in step S20, the biometric information measuring unit 13 of the wearable computer-mounted device 10 measures the biometric information 71 at a predetermined cycle. The biometric information measurement unit 13 transmits the biometric information 71, which is the measurement result, to the smartphone 20 and the air conditioner 30 via the wearable device communication unit 15 of the wearable computer-mounted device 10.
 つぎに、ステップS30において、空気調和装置30の温湿度センサ32が、空気調和対象空間である室内の環境である室内温度および室内湿度を測定し、環境情報である室内の温湿度情報を取得する。温湿度センサ32は、測定結果である室内の温湿度情報を制御条件決定部33に送信する。 Next, in step S30, the temperature / humidity sensor 32 of the air conditioning device 30 measures the indoor temperature and the indoor humidity, which are the indoor environment of the air conditioning target space, and acquires the indoor temperature / humidity information, which is the environmental information. .. The temperature / humidity sensor 32 transmits the indoor temperature / humidity information, which is the measurement result, to the control condition determination unit 33.
 つぎに、ステップS40において、スマートフォン20の設定機能部23が、設定温度231、設定風向232、設定風量233といった、空気調和の運転設定条件を取得する。移動端末操作部21は、ユーザーから入力される空気調和の運転設定条件を設定機能部23に送信する。これにより、設定機能部23が、空気調和の運転設定条件を取得する。設定機能部23は、取得した空気調和の運転設定条件を、設定機能部23に設定するとともに、移動端末通信部25を介して空気調和装置30に送信する。 Next, in step S40, the setting function unit 23 of the smartphone 20 acquires the operation setting conditions for air conditioning such as the set temperature 231 and the set wind direction 232 and the set air volume 233. The mobile terminal operation unit 21 transmits the air conditioning operation setting conditions input from the user to the setting function unit 23. As a result, the setting function unit 23 acquires the operation setting conditions for air conditioning. The setting function unit 23 sets the acquired operation setting conditions for air conditioning in the setting function unit 23, and transmits the acquired air conditioning operation setting conditions to the air conditioning device 30 via the mobile terminal communication unit 25.
 つぎに、ステップS50において、空気調和装置30の制御条件決定部33が、属性情報72と、生体情報71と、室内の環境情報である温湿度情報とに基づいて、スマートフォン20から送信される空気調和の運転設定条件を補正することにより、制御条件を決定する。制御条件決定部33は、設定機能部23から送信された空気調和の運転設定条件を受け取った時の属性情報72と生体情報71と温湿度情報とを用いて制御条件を決定する。設定機能部23から送信された空気調和の運転設定条件を受け取った時は、ステップS40においてスマートフォン20の設定機能部23が空気調和の運転設定条件を取得した時、すなわち、ユーザーによって空気調和の運転設定条件が設定された設定時と換言できる。制御条件決定部33は、決定した制御条件を空気調和制御部37に送信する。 Next, in step S50, the control condition determination unit 33 of the air conditioner 30 determines the air transmitted from the smartphone 20 based on the attribute information 72, the biological information 71, and the temperature / humidity information which is the indoor environmental information. The control conditions are determined by correcting the harmonized operation setting conditions. The control condition determination unit 33 determines the control condition using the attribute information 72, the biological information 71, and the temperature / humidity information when the operation setting condition for air conditioning transmitted from the setting function unit 23 is received. When the setting function unit 23 of the smartphone 20 acquires the operation setting condition of the air conditioning in step S40 when the operation setting condition of the air conditioning transmitted from the setting function unit 23 is received, that is, the operation of the air conditioning by the user. It can be rephrased as the setting time when the setting condition is set. The control condition determination unit 33 transmits the determined control condition to the air conditioning control unit 37.
 つぎに、ステップS60において、空気調和装置30の空気調和制御部37が、制御条件決定部33において決定された制御条件に従って、空気調和部31を制御し、空気調和装置30の運転を制御する。 Next, in step S60, the air conditioning control unit 37 of the air conditioning device 30 controls the air conditioning unit 31 according to the control conditions determined by the control condition determining unit 33, and controls the operation of the air conditioning device 30.
 空気調和システム100は、上述した制御を行うことにより、現在のユーザーの状態に対応した、ユーザーにとって快適性が高い、細やかな空気調和の制御が可能となる。 By performing the above-mentioned control, the air conditioning system 100 enables fine control of air conditioning that is highly comfortable for the user and corresponds to the current state of the user.
 空気調和システム100では、スマートフォン20からユーザーが空気調和の運転設定条件の設定を行うことで、空気調和の運転設定条件の設定時の、空気調和の運転設定条件の設定温度231と設定風向232と設定風量233と、生体情報71とを、空気調和装置30のデータベース34に記憶させることで、これらの情報を空気調和装置30の空気調和運転を制御するための制御因子とすることが可能である。 In the air conditioning system 100, the user sets the air conditioning operation setting conditions from the smartphone 20, so that the set temperature 231 and the set wind direction 232 of the air conditioning operation setting conditions at the time of setting the air conditioning operation setting conditions are set. By storing the set air volume 233 and the biological information 71 in the database 34 of the air conditioning device 30, it is possible to use these information as a control factor for controlling the air conditioning operation of the air conditioning device 30. ..
 空気調和システム100では、室内温度および室内湿度といった空気調和対象空間である室内の環境情報を、空気調和装置30の空気調和運転を制御するための制御因子とする。すなわち、空気調和システム100では、室内の環境情報に基づいて、空気調和装置30の空気調和運転を制御する。 In the air conditioning system 100, environmental information in the room, which is an air conditioning target space such as indoor temperature and indoor humidity, is used as a control factor for controlling the air conditioning operation of the air conditioning device 30. That is, the air conditioning system 100 controls the air conditioning operation of the air conditioning device 30 based on the environmental information in the room.
 また、空気調和システム100では、生体情報71を、空気調和装置30の空気調和運転を制御するための制御因子とする。すなわち、空気調和システム100では、生体情報71を空気調和装置30の空気調和運転の制御に用いる。空気調和システム100は、平常状態における一日の生体情報71の変化の情報、すなわち体調の変化の情報をデータベース34に記憶し、蓄積することで体調の変化に応じた制御を行うことができる。 Further, in the air conditioning system 100, the biological information 71 is used as a control factor for controlling the air conditioning operation of the air conditioning device 30. That is, in the air conditioning system 100, the biological information 71 is used to control the air conditioning operation of the air conditioning device 30. The air conditioning system 100 can perform control according to the change in physical condition by storing and accumulating the information on the change in the biological information 71 in one day in the normal state, that is, the information on the change in physical condition in the database 34.
 人は、一日の中の睡眠時には、一般的に体の代謝が低下し、体内で生み出される熱の量が少なくなるため、体温が低下し、安静時の心拍数が低くなる。したがって、制御条件決定部33は、ユーザーの生体情報71がこのような状態にあるときは、ユーザーが睡眠状態であると判定できる。 When sleeping during the day, the body's metabolism generally decreases and the amount of heat generated in the body decreases, so the body temperature decreases and the resting heart rate decreases. Therefore, the control condition determination unit 33 can determine that the user is in the sleeping state when the biometric information 71 of the user is in such a state.
 現在の生体情報71と比較することにより人が睡眠状態であると判定するための閾値は、予め制御条件決定部33に記憶される。閾値は、現在のユーザーの体温と比較される体温閾値と、現在のユーザーの心拍数と比較される心拍数閾値と、が予め制御条件決定部33に記憶される。制御条件決定部33は、例えば、現在のユーザーの体温が体温閾値以下であり、且つ現在のユーザーの心拍数が心拍数閾値以下である場合に、ユーザーが睡眠状態であると判定する。 The threshold value for determining that a person is in a sleeping state by comparing with the current biological information 71 is stored in advance in the control condition determination unit 33. As the threshold value, a body temperature threshold value to be compared with the body temperature of the current user and a heart rate threshold value to be compared with the heart rate of the current user are stored in advance in the control condition determination unit 33. The control condition determination unit 33 determines that the user is in a sleeping state, for example, when the body temperature of the current user is equal to or lower than the body temperature threshold value and the heart rate of the current user is equal to or lower than the heart rate threshold value.
 生体情報71を用いた場合の空気調和装置30の空気調和運転の制御例として、空気調和装置30は、ユーザーが睡眠状態であると判定したときは、制御風向332を風がユーザーに直接当たらない方向に制御し、制御風量333を少なくするといった制御を行う。また、ユーザーが運動後などの状態であって、平常状態よりユーザーの心拍数、血圧および体温が高い状態のときは、空気調和装置30は、制御温度331を低くし、制御風量333を多くするといった制御を行う。 As a control example of the air-conditioning operation of the air-conditioning device 30 when the biological information 71 is used, when the air-conditioning device 30 determines that the user is in a sleeping state, the wind does not directly hit the user in the control wind direction 332. It controls in the direction and controls such as reducing the control air volume 333. Further, when the user is in a state such as after exercise and the user's heart rate, blood pressure, and body temperature are higher than in the normal state, the air conditioner 30 lowers the control temperature 331 and increases the control air volume 333. And so on.
 上記の制御は、生体情報71を用いた空気調和運転の制御の一例であり、空気調和システム100では、生体情報71に基づいて、ユーザーにとっての快適性を向上させる制御が行われる。 The above control is an example of control of air-conditioning operation using the biological information 71, and in the air-conditioning system 100, control for improving comfort for the user is performed based on the biological information 71.
 なお、上記の「生体情報71を空気調和装置30の空気調和運転の制御に用いる」とは、「制御条件決定部33が生体情報71を用いて制御条件を決定する」と換言できる。 The above-mentioned "using the biological information 71 for controlling the air-conditioning operation of the air-conditioning device 30" can be rephrased as "the control condition determination unit 33 determines the control conditions using the biological information 71".
 また、空気調和システム100では、属性情報72を、空気調和装置30の空気調和運転を制御するための制御因子とする。すなわち、空気調和システム100では、属性情報72を空気調和装置30の空気調和運転の制御に用いる。性別、年齢および国籍といった属性は、年間を通してユーザーの不変的な情報である。空気調和システム100は、属性情報72を空気調和装置30の空気調和運転の制御に用いる際は、性別、年齢および国籍といったそれぞれの属性についての温度感受性の統計データに基づいて、空気調和装置30の空気調和運転の制御を行う。 Further, in the air conditioning system 100, the attribute information 72 is used as a control factor for controlling the air conditioning operation of the air conditioning device 30. That is, in the air conditioning system 100, the attribute information 72 is used to control the air conditioning operation of the air conditioning device 30. Attributes such as gender, age and nationality are user's constant information throughout the year. When the attribute information 72 is used to control the air-conditioning operation of the air-conditioning device 30, the air-conditioning system 100 of the air-conditioning device 30 is based on statistical data of temperature sensitivity for each attribute such as gender, age, and nationality. Controls air conditioning operation.
 属性情報72の各属性についての温度感受性の統計データは、予めデータベース34に記憶されている。例えば温度感受性は、女性と男性とでは微妙に差が生じる傾向がある。また、例えば温度感受性は、高齢者は若年者に比べて気温変化に対する感受性が低下する傾向がある。また、国籍についても、相対的に気温が低い国の国籍を有する人と、相対的に気温が高い国の国籍を有する人と、の間では、気温変化に対する感受性に微妙に差が生じる傾向がある。温度感受性の統計データは、このような属性についての温度感受性の統計データである。 The temperature sensitivity statistical data for each attribute of the attribute information 72 is stored in the database 34 in advance. For example, temperature sensitivity tends to be subtly different between females and males. Further, for example, in terms of temperature sensitivity, elderly people tend to be less sensitive to temperature changes than young people. Also, regarding nationality, there is a tendency for subtle differences in sensitivity to temperature changes between those who have nationalities in countries with relatively low temperatures and those who have nationalities in countries with relatively high temperatures. be. Temperature sensitivity statistical data is temperature sensitivity statistical data for such attributes.
 属性情報72を用いた空気調和装置30の空気調和運転の制御例としては、空気調和装置30は、ユーザーが女性である場合には、ユーザーが男性である場合よりも制御温度331を高くし、また制御風向332を風がユーザーに直接当たらない方向に制御する。また、空気調和装置30は、ユーザーの年齢が20代である場合には、ユーザーの年齢が20代より上の年代である場合に比べて制御温度331を低くし、また制御風量333を強くするといった制御を行う。なお、これらは属性情報72を用いた空気調和運転の制御の一例であり、空気調和システム100では、属性情報72の各属性に対応する温度感受性の統計データに基づいて、ユーザーにとっての快適性を向上させる制御が行われる。 As an example of controlling the air-conditioning operation of the air-conditioning device 30 using the attribute information 72, the air-conditioning device 30 raises the control temperature 331 higher when the user is a female than when the user is a male. Further, the control wind direction 332 is controlled in a direction in which the wind does not directly hit the user. Further, when the user's age is in his twenties, the air conditioner 30 lowers the control temperature 331 and increases the control air volume 333 as compared with the case where the user's age is older than the twenties. And so on. It should be noted that these are examples of control of air-conditioning operation using the attribute information 72, and the air-conditioning system 100 provides comfort for the user based on the statistical data of temperature sensitivity corresponding to each attribute of the attribute information 72. Control is done to improve.
 なお、上記の「属性情報72を空気調和装置30の空気調和運転の制御に用いる」とは、「制御条件決定部33が属性情報72を用いて制御条件を決定する」、と換言できる。 The above-mentioned "use of the attribute information 72 for controlling the air-conditioning operation of the air-conditioning device 30" can be rephrased as "the control condition determination unit 33 determines the control condition using the attribute information 72".
 また、空気調和システム100では、環境情報である室内の温湿度情報を、空気調和装置30の空気調和運転を制御するための制御因子とする。すなわち、空気調和システム100では、環境情報である室内の温湿度情報を空気調和装置30の空気調和運転の制御に用いる。空気調和装置30の制御条件決定部33は、室内の温湿度情報を基準として、スマートフォン20から送信される運転設定条件に室内温度を調整するには室内温度を何℃変化させるのかを算出することができる。 Further, in the air conditioning system 100, the temperature / humidity information in the room, which is environmental information, is used as a control factor for controlling the air conditioning operation of the air conditioning device 30. That is, in the air conditioning system 100, the temperature / humidity information in the room, which is the environmental information, is used to control the air conditioning operation of the air conditioning device 30. The control condition determination unit 33 of the air conditioner 30 calculates how much the indoor temperature is changed in order to adjust the indoor temperature to the operation setting conditions transmitted from the smartphone 20 based on the indoor temperature / humidity information. Can be done.
 なお、上記においては、装着型コンピュータ搭載機器10を装着した1人のユーザーが室内に居る場合を想定して説明した。装着型コンピュータ搭載機器10を装着した複数人のユーザーが室内に居る場合における制御条件決定部33の処理について説明する。 In the above description, it is assumed that one user wearing the wearable computer-mounted device 10 is in the room. The processing of the control condition determination unit 33 when a plurality of users wearing the wearable computer-mounted device 10 are in the room will be described.
 装着型コンピュータ搭載機器10を装着した複数のユーザーが室内に居る場合には、制御条件決定部33は、室内に居る複数のユーザーのうち任意の1人のユーザーを対象とした空気調和制御を行うための制御条件を決定する。制御条件決定部33は、制御条件の制御温度331および制御風量333に関しては、任意の1人のユーザーを対象とした空気調和制御を行うための制御条件を決定する。すなわち、制御条件決定部33は、任意の1人のユーザーが室内に居る場合について、上述したように制御条件の制御温度331および制御風量333を決定する。ここで、制御条件決定部33がどのユーザーを選択するかの情報は、予め制御条件決定部33に記憶されている。 When a plurality of users equipped with the wearable computer-mounted device 10 are in the room, the control condition determination unit 33 performs air conditioning control for any one user among the plurality of users in the room. Determine the control conditions for. The control condition determination unit 33 determines the control conditions for performing air conditioning control for any one user with respect to the control temperature 331 and the control air volume 333 of the control conditions. That is, the control condition determination unit 33 determines the control temperature 331 and the control air volume 333 of the control conditions as described above when any one user is in the room. Here, information on which user the control condition determination unit 33 selects is stored in advance in the control condition determination unit 33.
 ただし、制御条件決定部33は、制御条件の制御風向332に関しては、例えば空気調和装置30が備える人感センサの検出結果により得られる、室内における複数のユーザーの位置情報に基づいて、室内において人を検知していない場所に送風するように制御条件を決定する。 However, regarding the control wind direction 332 of the control condition, the control condition determination unit 33 is based on the position information of a plurality of users in the room obtained by, for example, the detection result of the motion sensor provided in the air conditioner 30, and the person in the room. The control condition is determined so that the air is blown to a place where the motion is not detected.
 また、制御条件決定部33は、複数人のユーザーが装着している複数の装着型コンピュータ搭載機器10のそれぞれに付与された識別情報が登録されている。複数の装着型コンピュータ搭載機器10のそれぞれには、固有の識別情報が付与されている。そして、装着型コンピュータ搭載機器10から空気調和装置30に送信されてくるユーザーの生体情報71には、ユーザーが装着している装着型コンピュータ搭載機器10に固有の識別情報が関連付けられている。すなわち、装着型コンピュータ搭載機器10から空気調和装置30に送信されてくるユーザーの生体情報71には、ユーザーが装着している装着型コンピュータ搭載機器10に固有の識別情報が付加されている。 Further, the control condition determination unit 33 registers identification information given to each of the plurality of wearable computer-mounted devices 10 worn by a plurality of users. Unique identification information is assigned to each of the plurality of wearable computer-mounted devices 10. The user's biological information 71 transmitted from the wearable computer-mounted device 10 to the air conditioner 30 is associated with identification information unique to the wearable computer-mounted device 10 worn by the user. That is, the identification information unique to the wearable computer-mounted device 10 worn by the user is added to the user's biological information 71 transmitted from the wearable computer-mounted device 10 to the air conditioner 30.
 また、空気調和装置30の空気調和記憶部35に記憶されている複数人のユーザーの属性情報72のそれぞれには、生体情報71に関連付けられている識別情報と同じ識別情報である、ユーザーが装着している装着型コンピュータ搭載機器10に固有の識別情報が関連付けられている。すなわち、空気調和装置30の空気調和記憶部35に記憶されているユーザーの属性情報72には、ユーザーが装着している装着型コンピュータ搭載機器10に固有の識別情報が付加されている。 Further, each of the attribute information 72 of the plurality of users stored in the air conditioning storage unit 35 of the air conditioning device 30 is attached by the user, which is the same identification information as the identification information associated with the biometric information 71. Identification information unique to the wearable computer-mounted device 10 is associated with the wearable computer-mounted device 10. That is, the user's attribute information 72 stored in the air-conditioning storage unit 35 of the air-conditioning device 30 is added with identification information unique to the wearable computer-mounted device 10 worn by the user.
 制御条件決定部33は、生体情報71と属性情報72とを取得した場合に、ユーザーが装着している装着型コンピュータ搭載機器10に固有の識別情報に基づいて、生体情報71と属性情報72とを対応付けることができる。 When the control condition determination unit 33 acquires the biological information 71 and the attribute information 72, the biological information 71 and the attribute information 72 are combined with the biological information 71 and the attribute information 72 based on the identification information unique to the wearable computer-mounted device 10 worn by the user. Can be associated with.
 上述したように、本実施の形態1にかかる空気調和システム100は、装着型コンピュータ搭載機器10における測定により得られる心拍数、血圧および体温といった生体情報71と、空気調和装置30に予め記憶される性別、年齢および国籍といったユーザーの属性情報72と、空気調和装置30における測定により得られる環境情報である室内の温湿度情報と、を制御因子として、空気調和装置30の空気調和運転における制御条件である制御温度331を制御条件決定部33が決定する。ここで、制御温度331は、制御条件決定部33によって決定される、空気調和装置30における空気調和の制御において実際に目標とされる室内温度である。 As described above, the air conditioning system 100 according to the first embodiment is stored in advance in the air conditioning device 30 and biological information 71 such as heart rate, blood pressure and body temperature obtained by measurement in the wearable computer-mounted device 10. User attribute information 72 such as gender, age, and nationality, and indoor temperature / humidity information, which is environmental information obtained by measurement in the air conditioner 30, are used as control factors under the control conditions in the air conditioner operation of the air conditioner 30. The control condition determination unit 33 determines a certain control temperature 331. Here, the control temperature 331 is an indoor temperature actually targeted in the control of air conditioning in the air conditioning device 30 determined by the control condition determination unit 33.
 これにより、空気調和システム100は、ユーザーにより設定される空気調和の運転設定条件の設定温度231のとおりに空気調和装置30の空気調和運転を制御するのではなく、ユーザーの状態に対応した、ユーザーにとって快適性が高い、細やかな空気調和の制御を行うことができる。 As a result, the air conditioning system 100 does not control the air conditioning operation of the air conditioning device 30 according to the set temperature 231 of the air conditioning operation setting condition set by the user, but corresponds to the user's state. It is possible to perform fine control of air conditioning, which is highly comfortable for the user.
 また、制御条件決定部33は、制御温度331の他に、空気調和装置30の空気調和運転における制御対象の制御条件として制御風向332および制御風量333を決定する。制御風向332は、制御条件決定部33によって決定される、空気調和装置30における空気調和の制御において実際に目標とされる、空気調和装置30から送風される調和空気の風向である。制御風量333は、制御条件決定部33によって決定される、空気調和装置30における空気調和の制御において実際に目標とされる、空気調和装置30から送風される調和空気の風量である。 In addition to the control temperature 331, the control condition determination unit 33 determines the control wind direction 332 and the control air volume 333 as control conditions to be controlled in the air conditioning operation of the air conditioning device 30. The control wind direction 332 is a wind direction of the conditioned air blown from the air conditioned device 30, which is actually targeted in the control of the air conditioned device in the air conditioned device 30, which is determined by the control condition determination unit 33. The control air volume 333 is the air volume of the conditioned air blown from the air conditioned device 30, which is actually targeted in the control of the air conditioned device in the air conditioned device 30, which is determined by the control condition determination unit 33.
 これにより、空気調和システム100は、室内に送風する調和空気の温度、風向および風量といった複数の運転条件を決定することにより、ユーザーにとってより快適性が高い、細やかで精度の高い空気調和の制御が可能であり、ユーザーの状態に対応した快適な環境を提供することができる。 As a result, the air conditioning system 100 determines a plurality of operating conditions such as the temperature, wind direction, and air volume of the harmonized air blown into the room, so that the user can control the air conditioning more comfortably, finely and accurately. It is possible and can provide a comfortable environment corresponding to the user's condition.
 また、空気調和システム100は、ユーザーがスマートフォン20を用いて空気調和装置30における空気調和の指示条件である温度、風向および風量といった空気調和の運転設定条件を設定した時の生体情報71と運転設定条件とを記憶して蓄積する。そして、空気調和システム100は、蓄積されたデータを制御因子とすることでユーザーにとって快適な環境を提供する空気調和システム100を実現できる。 Further, the air conditioning system 100 includes biometric information 71 and operation settings when the user sets operating setting conditions for air conditioning such as temperature, wind direction, and air volume, which are instruction conditions for air conditioning in the air conditioning device 30, using the smartphone 20. Memorize and accumulate conditions. Then, the air conditioning system 100 can realize the air conditioning system 100 that provides a comfortable environment for the user by using the accumulated data as a control factor.
 したがって、空気調和システム100によれば、ユーザーに対して、ユーザーの状態に対応した快適な環境を提供することができる、という効果を奏する。 Therefore, according to the air conditioning system 100, it is possible to provide the user with a comfortable environment corresponding to the user's condition.
実施の形態2.
 本実施の形態2では、実施の形態1にかかる構成に加え、空気調和装置30がインターネット60に接続されており、後述する稼働データ341を空気調和装置30とサーバ40とにおいて共有する形態について説明する。なお、上述した実施の形態1と同じ構成については実施の形態1と同じ符号を付すことで、詳細な説明は省略する。
Embodiment 2.
In the second embodiment, in addition to the configuration according to the first embodiment, the air conditioner 30 is connected to the Internet 60, and the operation data 341 described later is shared between the air conditioner 30 and the server 40. do. The same configuration as that of the first embodiment described above is designated by the same reference numerals as those of the first embodiment, and detailed description thereof will be omitted.
 図6は、実施の形態2にかかる空気調和システム200の構成を示す図である。本実施の形態2にかかる空気調和システム200は、装着型コンピュータ搭載機器10と、スマートフォン20と、空気調和装置30と、サーバ40と、端末50と、を備える。すなわち、空気調和システム200は、上述した実施の形態1にかかる空気調和システム100にサーバ40と端末50とが追加された構成を有する。 FIG. 6 is a diagram showing the configuration of the air conditioning system 200 according to the second embodiment. The air conditioning system 200 according to the second embodiment includes a wearable computer-mounted device 10, a smartphone 20, an air conditioning device 30, a server 40, and a terminal 50. That is, the air conditioning system 200 has a configuration in which the server 40 and the terminal 50 are added to the air conditioning system 100 according to the first embodiment described above.
 図7は、図4に示す空気調和装置30のデータベース34に記憶される稼働データ341を示す図である。稼働データ341は、空気調和装置30の稼働状況を示すデータである。稼働データ341には、過去の空気調和装置30の稼働状況を示すデータである過去稼働状況データと、現在の空気調和装置30の稼働状況を示すデータである現在稼働状況データと、空気調和装置30の故障状況を示す故障状況データと、が含まれる。 FIG. 7 is a diagram showing operation data 341 stored in the database 34 of the air conditioner 30 shown in FIG. The operation data 341 is data indicating the operation status of the air conditioner 30. The operation data 341 includes past operation status data which is data indicating the operation status of the past air conditioner 30, current operation status data which is data indicating the current operation status of the air conditioner 30, and air conditioner 30. The failure status data indicating the failure status of the above is included.
 空気調和装置30の空気調和制御部37は、データベース34に記憶された稼働データ341を、インターネット60を介して空気調和装置30と通信可能に接続されたサーバ40に送信する。空気調和装置30からサーバ40に稼働データ341を送信するタイミングは、特に限定されない。 The air conditioning control unit 37 of the air conditioning device 30 transmits the operation data 341 stored in the database 34 to the server 40 communicably connected to the air conditioning device 30 via the Internet 60. The timing of transmitting the operation data 341 from the air conditioner 30 to the server 40 is not particularly limited.
 図8は、実施の形態2にかかる空気調和システム200のサーバ40の機能構成を示す図である。サーバ40は、グローバルな情報通信網であるインターネット60に接続している。サーバ40は、インターネット60を介してサーバ40と通信可能に接続された空気調和装置30から、空気調和装置30に蓄積されている稼働データ341がアップロードされる。すなわち、サーバ40は、空気調和装置30の稼働データ341を、インターネット60を介して空気調和装置30から取得することができる。これにより、サーバ40は、稼働データ341を空気調和装置30と共有している。サーバ40には、クラウドサーバまたは物理サーバを用いることができる。 FIG. 8 is a diagram showing a functional configuration of the server 40 of the air conditioning system 200 according to the second embodiment. The server 40 is connected to the Internet 60, which is a global information and communication network. The server 40 uploads the operation data 341 stored in the air conditioner 30 from the air conditioner 30 communicably connected to the server 40 via the Internet 60. That is, the server 40 can acquire the operation data 341 of the air conditioner 30 from the air conditioner 30 via the Internet 60. As a result, the server 40 shares the operation data 341 with the air conditioner 30. A cloud server or a physical server can be used as the server 40.
 サーバ40は、サーバ通信部41と、サーバ記憶部42と、サーバ制御部43と、を備える。 The server 40 includes a server communication unit 41, a server storage unit 42, and a server control unit 43.
 サーバ通信部41は、インターネット60に接続し、空気調和装置30との間で通信を行う。また、サーバ通信部41は、インターネット60に接続し、端末50との間で通信を行う。 The server communication unit 41 connects to the Internet 60 and communicates with the air conditioner 30. Further, the server communication unit 41 connects to the Internet 60 and communicates with the terminal 50.
 サーバ記憶部42は、空気調和装置30から取得した稼働データ341を記憶する。 The server storage unit 42 stores the operation data 341 acquired from the air conditioner 30.
 サーバ制御部43は、サーバ40の全体の処理を制御する。サーバ制御部43は、空気調和装置30から稼働データ341を取得して、サーバ記憶部42に記憶させる制御を行う。サーバ制御部43は、端末50との間で各種情報の授受を行う処理を制御する。 The server control unit 43 controls the entire processing of the server 40. The server control unit 43 acquires operation data 341 from the air conditioner 30 and controls the server storage unit 42 to store the operation data 341. The server control unit 43 controls the process of exchanging various information with and from the terminal 50.
 図9は、実施の形態2にかかる空気調和システム200の端末50の機能構成を示す図である。端末50は、インターネット60に接続している。端末50は、インターネット60を介して端末50と通信可能に接続されたサーバ40から、稼働データ341を取得することができる。 FIG. 9 is a diagram showing a functional configuration of the terminal 50 of the air conditioning system 200 according to the second embodiment. The terminal 50 is connected to the Internet 60. The terminal 50 can acquire the operation data 341 from the server 40 which is communicably connected to the terminal 50 via the Internet 60.
 端末50は、端末操作部51と、端末表示部52と、端末記憶部53と、端末通信部54と、端末制御部55と、を備える。 The terminal 50 includes a terminal operation unit 51, a terminal display unit 52, a terminal storage unit 53, a terminal communication unit 54, and a terminal control unit 55.
 端末操作部51は、ユーザーからの設定操作を受け付ける入力部である。端末操作部51は、ユーザーからの各種情報の入力を受け付けて、端末制御部55に送信する。 The terminal operation unit 51 is an input unit that accepts setting operations from the user. The terminal operation unit 51 receives input of various information from the user and transmits the input to the terminal control unit 55.
 端末表示部52は、端末50の内部の各種情報を表示する表示部である。 The terminal display unit 52 is a display unit that displays various information inside the terminal 50.
 端末記憶部53は、端末50の内部の各種情報を記憶する記憶部である。端末記憶部53は、サーバ40から送信された稼働データ341を記憶する。 The terminal storage unit 53 is a storage unit that stores various information inside the terminal 50. The terminal storage unit 53 stores the operation data 341 transmitted from the server 40.
 端末通信部54は、インターネット60に接続し、サーバ40との間で通信を行う。 The terminal communication unit 54 connects to the Internet 60 and communicates with the server 40.
 端末制御部55は、端末50の全体の処理を制御する制御部である。端末制御部55は、サーバ40から送信された稼働データ341を、端末記憶部53に記憶させる。また、端末制御部55は、稼働データ341を端末表示部52に表示させる。 The terminal control unit 55 is a control unit that controls the entire processing of the terminal 50. The terminal control unit 55 stores the operation data 341 transmitted from the server 40 in the terminal storage unit 53. Further, the terminal control unit 55 causes the terminal display unit 52 to display the operation data 341.
 つぎに、空気調和システム200の動作について説明する。図10は、実施の形態2にかかる空気調和システム200の動作の手順を説明するフローチャートである。以下では、図5に示したフローチャートと異なる部分について説明する。なお、空気調和システム100の場合と同様に、生体情報71の被測定者であるユーザーは、常時、例えば腕時計型の装着型コンピュータ搭載機器10を腕に身に付けることとする。 Next, the operation of the air conditioning system 200 will be described. FIG. 10 is a flowchart illustrating a procedure for operating the air conditioning system 200 according to the second embodiment. Hereinafter, a part different from the flowchart shown in FIG. 5 will be described. As in the case of the air conditioning system 100, the user who is the subject of the biological information 71 always wears, for example, a wristwatch-type wearable computer-mounted device 10 on his / her arm.
 まず、上述したステップS10からステップS60が行われる。 First, steps S60 are performed from step S10 described above.
 つぎに、ステップS110において、サーバ40が、空気調和装置30から稼働データ341を取得する。具体的に、空気調和装置30の空気調和制御部37が、データベース34に記憶された稼働データ341を、インターネット60を介してサーバ40に送信する。サーバ40は、空気調和装置30から送信された稼働データ341をサーバ記憶部42に記憶させる。これにより、サーバ40は、空気調和装置30から稼働データ341を取得することができる。 Next, in step S110, the server 40 acquires the operation data 341 from the air conditioner 30. Specifically, the air conditioning control unit 37 of the air conditioning device 30 transmits the operation data 341 stored in the database 34 to the server 40 via the Internet 60. The server 40 stores the operation data 341 transmitted from the air conditioner 30 in the server storage unit 42. As a result, the server 40 can acquire the operation data 341 from the air conditioner 30.
 つぎに、ステップS120において、端末50が、サーバ40から稼働データ341を取得する。具体的に、サーバ40のサーバ制御部43が、サーバ記憶部42に記憶された稼働データ341を、インターネット60を介して端末50に送信する。端末50は、サーバ40から送信された稼働データ341を端末記憶部53に記憶させる。これにより、端末50は、サーバ40から稼働データ341を取得することができる。 Next, in step S120, the terminal 50 acquires the operation data 341 from the server 40. Specifically, the server control unit 43 of the server 40 transmits the operation data 341 stored in the server storage unit 42 to the terminal 50 via the Internet 60. The terminal 50 stores the operation data 341 transmitted from the server 40 in the terminal storage unit 53. As a result, the terminal 50 can acquire the operation data 341 from the server 40.
 つぎに、ステップS130において、端末50が、稼働データ341を端末表示部52に表示する。具体的に、端末50の端末制御部55が、端末記憶部53に記憶された稼働データ341を端末表示部52に表示させる。 Next, in step S130, the terminal 50 displays the operation data 341 on the terminal display unit 52. Specifically, the terminal control unit 55 of the terminal 50 causes the terminal display unit 52 to display the operation data 341 stored in the terminal storage unit 53.
 上述した空気調和システム200は、実施の形態1にかかる空気調和システム100と同様の効果を有する。 The above-mentioned air conditioning system 200 has the same effect as the air conditioning system 100 according to the first embodiment.
 また、空気調和システム200では、空気調和装置30とサーバ40と端末50とがインターネット60に接続しており、稼働データ341を空気調和装置30からサーバ40に送信可能とされている。これにより、稼働データ341を空気調和装置30とサーバ40とにおいて共有することができる。また、端末50は、稼働データ341をサーバ40から取得可能とされている。そして、空気調和システム200では、稼働データ341を端末表示部52に表示することができる。 Further, in the air conditioning system 200, the air conditioning device 30, the server 40, and the terminal 50 are connected to the Internet 60, and the operation data 341 can be transmitted from the air conditioning device 30 to the server 40. As a result, the operation data 341 can be shared between the air conditioner 30 and the server 40. Further, the terminal 50 can acquire the operation data 341 from the server 40. Then, in the air conditioning system 200, the operation data 341 can be displayed on the terminal display unit 52.
 機器メーカーの担当者は、端末表示部52に表示された、稼働データ341に含まれる過去稼働状況データと現在稼働状況データと故障状況データとを確認することにより、空気調和装置30の稼働状況および故障状況をモニタリングすることが可能になる。また、端末制御部55が、現在稼働状況データと過去稼働状況データとを比較することで、空気調和装置30が正常に稼働できている状態であるか判定することができる。また、機器メーカーの担当者が、現在稼働状況データと過去稼働状況データとを比較することもできる。例えば、過去稼働状況データにおいて、空気調和装置30が正常に稼働できていないときの過去稼働状況データと現在稼働状況データとを比較することで、空気調和装置30が正常に稼働できている状態であるか判定することができる。 The person in charge of the equipment maker confirms the past operation status data, the current operation status data, and the failure status data included in the operation data 341 displayed on the terminal display unit 52, so that the operation status of the air conditioner 30 and the operation status of the air conditioner 30 can be confirmed. It becomes possible to monitor the failure status. Further, the terminal control unit 55 can determine whether the air conditioner 30 is in a normal operating state by comparing the current operating status data with the past operating status data. In addition, the person in charge of the equipment manufacturer can compare the current operation status data with the past operation status data. For example, in the past operation status data, by comparing the past operation status data when the air conditioner 30 is not operating normally with the current operation status data, the air conditioner 30 can be operated normally. It can be determined whether or not there is.
 また、端末制御部55は、稼働データ341から、空気調和装置30が稼働している年数の情報である稼働年数情報を取得し、稼働年数情報に基づいて、空気調和装置30の部品の推奨交換時期の算出を行うことが可能である。また、端末制御部55は、稼働データ341から、空気調和装置30が稼働している稼働時間の情報である実稼働時間情報を取得し、実稼働時間情報に基づいて、空気調和装置30の部品の推奨交換時期の算出を行うことが可能である。端末制御部55は、空気調和装置30の部品の推奨交換時期の情報を、端末表示部52に表示させる。これにより、機器メーカーの担当者は、ユーザーに対して、直接、またはサーバ40を介して、空気調和装置30の部品の推奨交換時期のサポートを行うことが可能となる。 Further, the terminal control unit 55 acquires operating years information, which is information on the number of years that the air conditioning device 30 has been operating, from the operating data 341, and based on the operating years information, recommends replacement of parts of the air conditioning device 30. It is possible to calculate the time. Further, the terminal control unit 55 acquires the actual operating time information which is the information of the operating time when the air conditioner 30 is operating from the operation data 341, and based on the actual operating time information, the component of the air conditioner 30. It is possible to calculate the recommended replacement time. The terminal control unit 55 causes the terminal display unit 52 to display information on the recommended replacement time of the parts of the air conditioner 30. This enables the person in charge of the equipment manufacturer to support the user directly or via the server 40 at the recommended replacement time of the parts of the air conditioner 30.
 また、稼働データ341の故障状況データには、故障箇所の情報および故障原因の情報といった故障に関わる情報が含まれる。したがって、空気調和装置30と、サーバ40と、端末50と、端末表示部52に表示された稼働データ341を確認する機器メーカーの担当者とにおいて、空気調和装置30の故障に関わる情報を共有することができる。これにより、機器メーカーの担当者は、空気調和装置30の故障時には、ユーザーに対して迅速なサポートを行うことが可能となる。 Further, the failure status data of the operation data 341 includes information related to the failure such as information on the failure location and information on the cause of the failure. Therefore, the information related to the failure of the air conditioner 30 is shared between the air conditioner 30, the server 40, the terminal 50, and the person in charge of the equipment manufacturer who confirms the operation data 341 displayed on the terminal display unit 52. be able to. As a result, the person in charge of the equipment manufacturer can provide prompt support to the user in the event of a failure of the air conditioner 30.
 これにより、空気調和システム200では、機器または部品の、故障または劣化により、設定温度どおりの空気調和運転ができないと行った状態を防止でき、または早期に解消することができ、ユーザーに対して快適な環境を提供することができる、という効果を奏する。 As a result, in the air conditioning system 200, it is possible to prevent a state in which the air conditioning operation according to the set temperature cannot be performed due to a failure or deterioration of the equipment or parts, or to eliminate the condition at an early stage, which is comfortable for the user. It has the effect of being able to provide an air-conditioned environment.
 装着型コンピュータ搭載機器10の装着型機器制御部16、スマートフォン20の設定機能部23、スマートフォン20の移動端末制御部26、空気調和装置30の制御条件決定部33、空気調和装置30の空気調和制御部37、サーバ40のサーバ制御部43および端末50の端末制御部55の各部は、図11に示したハードウェア構成の処理回路として実現される。図11は、実施の形態1および実施の形態2における処理回路のハードウェア構成の一例を示す図である。上記の各部が図11に示す処理回路により実現される場合、上記の各部は、プロセッサ101がメモリ102に記憶されたプログラムを実行することにより、実現される。また、複数のプロセッサおよび複数のメモリが連携して上記の各部の機能を実現してもよい。また、上記の各部の機能のうちの一部を電子回路として実装し、他の部分をプロセッサ101およびメモリ102を用いて実現するようにしてもよい。 The wearable device control unit 16 of the wearable computer-mounted device 10, the setting function unit 23 of the smartphone 20, the mobile terminal control unit 26 of the smartphone 20, the control condition determination unit 33 of the air conditioning device 30, and the air conditioning control of the air conditioning device 30. Each unit 37, the server control unit 43 of the server 40, and the terminal control unit 55 of the terminal 50 are realized as a processing circuit having a hardware configuration shown in FIG. FIG. 11 is a diagram showing an example of the hardware configuration of the processing circuit according to the first embodiment and the second embodiment. When each of the above parts is realized by the processing circuit shown in FIG. 11, each of the above parts is realized by executing the program stored in the memory 102 by the processor 101. Further, a plurality of processors and a plurality of memories may cooperate to realize the functions of the above-mentioned parts. Further, a part of the functions of the above parts may be implemented as an electronic circuit, and the other parts may be realized by using the processor 101 and the memory 102.
 以上の実施の形態に示した構成は、一例を示すものであり、別の公知の技術と組み合わせることも可能であるし、実施の形態同士を組み合わせることも可能であるし、要旨を逸脱しない範囲で、構成の一部を省略、変更することも可能である。 The configuration shown in the above embodiments is an example, and can be combined with another known technique, can be combined with each other, and does not deviate from the gist. It is also possible to omit or change a part of the configuration.
 10 装着型コンピュータ搭載機器、11 装着型機器操作部、12 装着型機器表示部、13 生体情報測定部、14 装着型機器記憶部、15 装着型機器通信部、16 装着型機器制御部、20 スマートフォン、21 移動端末操作部、22 移動端末表示部、23 設定機能部、24 移動端末記憶部、25 移動端末通信部、26 移動端末制御部、30 空気調和装置、31 空気調和部、32 温湿度センサ、33 制御条件決定部、34 データベース、35 空気調和記憶部、36 空気調和通信部、37 空気調和制御部、40 サーバ、41 サーバ通信部、42 サーバ記憶部、43 サーバ制御部、50 端末、51 端末操作部、52 端末表示部、53 端末記憶部、54 端末通信部、55 端末制御部、60 インターネット、71 生体情報、72 属性情報、100,200 空気調和システム、101 プロセッサ、102 メモリ、231 設定温度、232 設定風向、233 設定風量、331 制御温度、332 制御風向、333 制御風量、341 稼働データ。 10 Wearable computer-mounted device, 11 Wearable device operation unit, 12 Wearable device display unit, 13 Biometric information measurement unit, 14 Wearable device storage unit, 15 Wearable device communication unit, 16 Wearable device control unit, 20 Smartphone , 21 mobile terminal operation unit, 22 mobile terminal display unit, 23 setting function unit, 24 mobile terminal storage unit, 25 mobile terminal communication unit, 26 mobile terminal control unit, 30 air conditioner, 31 air conditioner, 32 temperature and humidity sensor , 33 Control condition determination unit, 34 database, 35 air conditioning storage unit, 36 air conditioning communication unit, 37 air conditioning control unit, 40 server, 41 server communication unit, 42 server storage unit, 43 server control unit, 50 terminal, 51 Terminal operation unit, 52 terminal display unit, 53 terminal storage unit, 54 terminal communication unit, 55 terminal control unit, 60 Internet, 71 biometric information, 72 attribute information, 100, 200 air conditioning system, 101 processor, 102 memory, 231 settings Temperature, 232 set wind direction, 233 set air volume, 331 control temperature, 332 control wind direction, 333 control air volume, 341 operation data.

Claims (8)

  1.  空気調和対象空間に存在するユーザーが装着する装着型の機器と、前記装着型の機器と通信可能な空気調和装置と、を備え、
     前記装着型の機器は、前記ユーザーの生体情報を測定する生体情報測定部を有し、
     前記空気調和装置は、
     前記空気調和対象空間の空気調和を行う空気調和部と、
     前記空気調和部の動作を制御する空気調和制御部と、
     前記空気調和対象空間の環境の状況を測定して前記空気調和対象空間の環境の状況を示す環境情報を生成する環境情報測定部と、
     人の温度感受性に影響を与える個人の属性の情報である属性情報を記憶する属性情報記憶部と、
     前記生体情報と前記環境情報と前記属性情報とに基づいて、前記空気調和制御部が前記空気調和部の動作を制御するための制御条件を決定する制御条件決定部と、
     を備える空気調和システム。
    It is equipped with a wearable device worn by a user existing in the air-conditioning target space and an air-conditioning device capable of communicating with the wearable device.
    The wearable device has a biometric information measuring unit that measures the biometric information of the user.
    The air conditioner is
    An air-conditioning unit that performs air-conditioning in the air-conditioning target space,
    An air conditioning control unit that controls the operation of the air conditioning unit,
    An environmental information measurement unit that measures the environmental condition of the air conditioning target space and generates environmental information indicating the environmental condition of the air conditioning target space.
    An attribute information storage unit that stores attribute information, which is information on individual attributes that affect a person's temperature sensitivity,
    A control condition determination unit that determines control conditions for the air conditioning control unit to control the operation of the air conditioning unit based on the biological information, the environmental information, and the attribute information.
    Air conditioning system with.
  2.  前記制御条件が、前記空気調和装置から前記空気調和対象空間に送風する調和空気の温度である、
     請求項1に記載の空気調和システム。
    The control condition is the temperature of the conditioned air blown from the air conditioned device to the air conditioned space.
    The air conditioning system according to claim 1.
  3.  前記制御条件が、前記空気調和装置から前記空気調和対象空間に送風する調和空気の風向である、
     請求項1または2に記載の空気調和システム。
    The control condition is the wind direction of the conditioned air blown from the air conditioned device to the air conditioned space.
    The air conditioning system according to claim 1 or 2.
  4.  前記制御条件が、前記空気調和装置から前記空気調和対象空間に送風する調和空気の風量である、
     請求項1から3のいずれか1つに記載の空気調和システム。
    The control condition is the air volume of the conditioned air blown from the air conditioned device to the air conditioned space.
    The air conditioning system according to any one of claims 1 to 3.
  5.  前記環境情報が、前記空気調和対象空間の温度の情報および前記空気調和対象空間の湿度の情報である、
     請求項1から4のいずれか1つに記載の空気調和システム。
    The environmental information is information on the temperature of the space subject to air conditioning and information on the humidity of the space subject to air conditioning.
    The air conditioning system according to any one of claims 1 to 4.
  6.  前記空気調和装置と通信可能であり、前記空気調和装置における空気調和の条件である
    運転設定条件を設定して前記空気調和装置に送信する移動端末を備える、
     請求項1から5のいずれか1つに記載の空気調和システム。
    A mobile terminal capable of communicating with the air conditioner, setting an operation setting condition which is an air conditioner condition in the air conditioner, and transmitting the operation setting condition to the air conditioner.
    The air conditioning system according to any one of claims 1 to 5.
  7.  前記空気調和装置が、前記空気調和装置の稼働状況および故障状況を示すデータである稼働データを記憶するデータベースを備え、
     インターネットを介して前記空気調和装置と通信可能であり、前記稼働データを前記空気調和装置から取得して記憶するサーバを備える、
     請求項1から6のいずれか1つに記載の空気調和システム。
    The air conditioner includes a database for storing operation data, which is data indicating an operation status and a failure status of the air conditioner.
    A server capable of communicating with the air conditioner via the Internet and acquiring and storing the operation data from the air conditioner is provided.
    The air conditioning system according to any one of claims 1 to 6.
  8.  インターネットを介して前記サーバと通信可能であり、前記稼働データを前記サーバから取得して表示する端末を備える、
     請求項7に記載の空気調和システム。
    A terminal capable of communicating with the server via the Internet and acquiring and displaying the operation data from the server is provided.
    The air conditioning system according to claim 7.
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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005180870A (en) * 2003-12-22 2005-07-07 Shin Nippon Air Technol Co Ltd Air conditioning management system
JP2016013512A (en) * 2014-07-01 2016-01-28 株式会社岡村製作所 Working state output device of exhaust device
JP2016099050A (en) * 2014-11-21 2016-05-30 三菱電機株式会社 Air cleaner and operation management system for the same
WO2017029722A1 (en) * 2015-08-19 2017-02-23 三菱電機株式会社 Controller, appliance control method, and program
JP2017532517A (en) * 2014-09-02 2017-11-02 サムスン エレクトロニクス カンパニー リミテッド Indoor temperature and humidity control method and apparatus
WO2019009045A1 (en) * 2017-07-07 2019-01-10 三菱重工サーマルシステムズ株式会社 Air conditioning control device, environment setting terminal, air conditioning control method, and program
WO2019049363A1 (en) * 2017-09-11 2019-03-14 三菱電機株式会社 Air conditioner and air conditioner control method
WO2019087537A1 (en) * 2017-10-30 2019-05-09 ダイキン工業株式会社 Air-conditioning control device

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005180870A (en) * 2003-12-22 2005-07-07 Shin Nippon Air Technol Co Ltd Air conditioning management system
JP2016013512A (en) * 2014-07-01 2016-01-28 株式会社岡村製作所 Working state output device of exhaust device
JP2017532517A (en) * 2014-09-02 2017-11-02 サムスン エレクトロニクス カンパニー リミテッド Indoor temperature and humidity control method and apparatus
JP2016099050A (en) * 2014-11-21 2016-05-30 三菱電機株式会社 Air cleaner and operation management system for the same
WO2017029722A1 (en) * 2015-08-19 2017-02-23 三菱電機株式会社 Controller, appliance control method, and program
WO2019009045A1 (en) * 2017-07-07 2019-01-10 三菱重工サーマルシステムズ株式会社 Air conditioning control device, environment setting terminal, air conditioning control method, and program
WO2019049363A1 (en) * 2017-09-11 2019-03-14 三菱電機株式会社 Air conditioner and air conditioner control method
WO2019087537A1 (en) * 2017-10-30 2019-05-09 ダイキン工業株式会社 Air-conditioning control device

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