WO2018039885A1 - 一种灯具控制方法及***、照明控制装置、服务器 - Google Patents

一种灯具控制方法及***、照明控制装置、服务器 Download PDF

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Publication number
WO2018039885A1
WO2018039885A1 PCT/CN2016/097219 CN2016097219W WO2018039885A1 WO 2018039885 A1 WO2018039885 A1 WO 2018039885A1 CN 2016097219 W CN2016097219 W CN 2016097219W WO 2018039885 A1 WO2018039885 A1 WO 2018039885A1
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WO
WIPO (PCT)
Prior art keywords
luminaire
information
environment
database
identity identification
Prior art date
Application number
PCT/CN2016/097219
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English (en)
French (fr)
Inventor
杜增庆
Original Assignee
深圳市一窗科技有限责任公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市一窗科技有限责任公司 filed Critical 深圳市一窗科技有限责任公司
Priority to CN201680000801.5A priority Critical patent/CN106465521B/zh
Priority to PCT/CN2016/097219 priority patent/WO2018039885A1/zh
Publication of WO2018039885A1 publication Critical patent/WO2018039885A1/zh

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/105Controlling the light source in response to determined parameters
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/105Controlling the light source in response to determined parameters
    • H05B47/11Controlling the light source in response to determined parameters by determining the brightness or colour temperature of ambient light
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Definitions

  • the present invention belongs to the technical field of smart lamps, and in particular, to a lamp control method and system, a lighting control device, and a server.
  • the control mode of the existing luminaire is mainly controlled by the user through software installed in the control terminal (such as mobile phone, computer).
  • the user controls the luminaire through the software installed in the control terminal, and adjusts the brightness.
  • a series of control operations such as color temperature adjustment, that is to say, the control terminal only acts as the remote controller of the lamp itself, and the lamp itself cannot adaptively realize the control of the gate and the brightness according to the change of the external environmental parameters (such as the intensity of the light).
  • lighting control operations such as color temperature adjustment.
  • the existing luminaire has a problem that the lighting control operation cannot be adaptively implemented according to external environmental parameters.
  • the present invention is implemented in this way, a luminaire control method, the luminaire control method includes the following steps: [0006] acquiring identity identification information of the luminaire from the illumination control end built in the luminaire;
  • Another object of the present invention is to provide a lamp control method, and the lamp control method includes the following steps:
  • Still another object of the present invention is to provide a lamp control method, the lamp control method comprising the following steps:
  • the lighting control end built in the luminaire sends the identity identification information of the luminaire to the server according to a user operation;
  • the server obtains identity identification information of the luminaire from the lighting control terminal;
  • the server searches for a database corresponding to the identity identification information according to the identity identification information, and retrieves environment parameter information corresponding to an environment in which the luminaire is located from the database;
  • the server sends the environment parameter information to the lighting control end
  • the lighting control terminal receives the environmental parameter information
  • the lighting control end performs parameter adjustment on the luminaire according to the environmental parameter information.
  • Another object of the present invention is to provide a server, where the server includes:
  • an identity information acquiring module configured to acquire identity identification information of the luminaire from the lighting control device built in the luminaire;
  • the environment parameter information retrieval module is configured to search a database corresponding to the identity identification information according to the identity identification information, and retrieve environment parameter information corresponding to an environment in which the luminaire is located from the database;
  • the environmental parameter information sending module is configured to send the environmental parameter information to the lighting control device, so that the lighting control device performs parameter adjustment on the luminaire according to the environmental parameter information.
  • Another object of the present invention is to provide a lighting control device built in a luminaire, the lighting control device comprising:
  • an identity information sending module configured to send identity information of the luminaire to the server according to a user operation
  • an environment parameter information receiving module configured to receive, by the server, a database corresponding to the identity identification information according to the identity identification information, and retrieve an environment corresponding to an environment in which the light fixture is located from the database Parameter information;
  • an adjustment module configured to perform parameter adjustment on the luminaire according to the environmental parameter information.
  • the lighting control end built in the luminaire sends the identification information of the luminaire to the server according to the user operation, so that the server searches the database corresponding to the identity identification information according to the identity identification information, and from the database.
  • the middle adjusts the environmental parameter information corresponding to the environment in which the luminaire is located, the server sends the environmental parameter information to the lighting control end, and the lighting control end adjusts the parameters of the luminaire according to the environmental parameter information
  • the illumination control end in the luminaire can adaptively realize the illumination control operation according to the external environmental parameter, and solves the problem that the existing luminaire cannot adaptively realize the illumination control operation according to the external environmental parameter.
  • FIG. 1 is a schematic flow chart of a method for controlling a luminaire according to a first embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a server according to a first embodiment of the present invention.
  • FIG. 3 is a first schematic structural diagram of an environment parameter information acquisition module 101 in the server shown in FIG. 2;
  • FIG. 4 is a second schematic structural diagram of an environment parameter information acquisition module 101 in the server shown in FIG. 2;
  • FIG. 5 is a third schematic structural diagram of the environment parameter information acquisition module 101 in the server shown in FIG. 2;
  • FIG. 6 is a schematic structural diagram of a server according to a second embodiment of the present invention.
  • FIG. 7 is a schematic flow chart of a lamp control method according to a third embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a lighting control device according to a third embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a lighting control apparatus according to a fourth embodiment of the present invention.
  • FIG. 10 is a schematic flow chart of a method for controlling a luminaire according to a fifth embodiment of the present invention.
  • FIG. 11 is a schematic structural diagram of a lamp control system according to a sixth embodiment of the present invention.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • FIG. 1 shows an implementation flow of a luminaire control method according to a first embodiment of the present invention. For convenience of explanation, only parts related to the embodiment are shown, which are described in detail as follows:
  • step S10 the identity information of the luminaire is obtained from a lighting control terminal built in the luminaire.
  • Step S10 is specifically: the server communicates with the lighting control end, and sends an identity identification information request instruction to the lighting control end, and the lighting control end responds to the identity identification information request instruction, and pushes the setting to the server
  • the identification information of the luminaire or the server communicates with the lighting control end, and the lighting control end autonomously transmits the identity information of the luminaire to the server;
  • the identity information may be a QR code information and a letter indicating the identity of the luminaire And/or a data string composed of numbers, a network control information that the lighting control end in the luminaire communicates with the server, such as information such as WiFi hotspot information used by the lighting control end to communicate with the server.
  • step S11 searching for a database corresponding to the identity identification information according to the identity identification information
  • step S11 includes the following steps:
  • the identity identification information is information such as two-dimensional code information indicating a luminaire identity, a data string composed of letters and/or numbers, information such as a data string composed of the two-dimensional code information, letters, and/or numbers
  • the identity identification information is network identification information for communicating between the lighting control end and the server in the luminaire, for example, the communication control terminal communicates with the server
  • the WiFi hotspot information is used by the server to analyze the WiFi hotspot information to obtain the location information of the WiFi hotspot information, and the location information of the WiFi hotspot is also the location information of the light fixture.
  • the step of searching for the database corresponding to the location information according to the location information, and retrieving the environment parameter information corresponding to the environment in which the luminaire is located specifically includes:
  • the server can search for a weather database corresponding to the XX province and the XX county; or when the server acquires the luminaire
  • the location information is location information ⁇ composed of latitude and longitude information, and the server can find a weather database corresponding thereto according to the latitude and longitude information.
  • the server searches for the weather database corresponding to the location information according to the location information, and searches for the corresponding weather database by searching the weather database information corresponding to the location information.
  • the database information may be number information, name information, and the like of the weather database.
  • the weather database corresponding to the number information or the name information of the weather database may be found according to the number information, the name information, and the like, and from the weather database.
  • Retrieving environmental parameter information of the environment in which the luminaire is located for example, when the server obtains the meteorological database information for the XX province and XX county meteorological database, the server can retrieve XX from the meteorological database of XX province and XX county.
  • the weather data of the province and the XX county may be cloudy, sunny, rainy, and the weather data may include environmental parameter information such as humidity and temperature, and the weather data is the environmental parameter information of the environment in which the luminaire is located.
  • step S11 specifically includes the following steps:
  • the smart home database information Searching for the smart home database corresponding to the identity information in the mapping table; or when the identity information is the network identification information that the lighting control end of the luminaire communicates with the server, for example, the WiFi hotspot used by the lighting control end to communicate with the server.
  • the server finds the smart home system information that is the same as the WiFi hotspot information and performs the smart home communication with the server, and obtains the smart home database corresponding to the smart home system information according to the WiFi hotspot information.
  • the server searches for the smart home system information that is also used to communicate with the WiFi hotspot A according to the WiFi hotspot A, and the server obtains the same communication mode with the WiFi hotspot A to communicate with the WiFi hotspot A.
  • Smart home system information further access to the smart home database corresponding to the smart home system information ⁇
  • the environmental parameter information corresponding to the environment in which the luminaire is located refers to the data of the smart home control system, so that the luminaire and the system are synchronously controlled, such as whether the current environment in which the luminaire is located has air conditioning.
  • Household appliances such as refrigerators, washing machines, etc., and when there is an electric appliance, obtain the working status of the electric appliance, for example, when the air conditioner is snoring, obtain information such as temperature, humidity, wind power, etc.
  • the setting of the lighting environment scene adjusts the luminaire, the automatic slamming light is returned from the following class, the light is automatically turned off at night, and the temperature of the air conditioner is automatically adjusted to the corresponding color temperature of the light. If the air is cool, the luminaire is adjusted to cool cold light. The embarrassing thing is that the heating is adjusted to a warm yellow light.
  • step S11 specifically includes the following steps:
  • the identity identification information is information such as two-dimensional code information indicating the identity of the luminaire, a data string composed of letters and/or digits, and the like
  • the preset identity information according to the identity identification information-security network database information mapping Looking up the security network database corresponding to the identity information in the table; or when the identity identification information is the network identification information that the lighting control terminal in the luminaire communicates with the server, for example, the WiFi hotspot information used by the lighting control terminal to communicate with the server ⁇ , the server finds the security network system information that is the same as the WiFi hotspot information and communicates with the server according to the WiFi hotspot information, and obtains a security network database corresponding thereto according to the security network system information.
  • the server searches for the security network system information that is also used to communicate with the WiFi hotspot A according to the WiFi hotspot A, and the server obtains the same communication mode with the WiFi hotspot A to communicate with the WiFi hotspot A.
  • the security network system information is further obtained, and the security network database C corresponding to the security network system information is further obtained.
  • the environmental parameter information corresponding to the environment in which the luminaire is located refers to the actual situation of the current environment in which the luminaire is located, such as whether the current environment in which the luminaire is located is present.
  • step S12 the environmental parameter information is sent to the lighting control end, so that the lighting control The terminal performs parameter adjustment on the luminaire according to the environmental parameter information.
  • the embodiment further provides a server 10, which includes an identity identification information acquiring module 100, an environment parameter information acquiring module 101, and an environment parameter information transmitting module 102.
  • the identity information obtaining module 100 is configured to obtain identity identification information of the light fixture from a lighting control device built in the light fixture.
  • the environment parameter information retrieval module 101 is configured to search a database corresponding to the identity identification information according to the identity identification information, and retrieve, from the database, environment parameter information corresponding to an environment in which the luminaire is located .
  • the environment parameter information sending module 102 is configured to send the environment parameter information to the lighting control device, so that the lighting control device performs parameter adjustment on the luminaire according to the environmental parameter information.
  • the environment parameter information retrieval module 101 includes a location information acquisition unit 101a and a first environment parameter information acquisition unit 101b.
  • the location information obtaining unit 101a is configured to locate the luminaire according to the identity identification information, to obtain location information of the luminaire.
  • the first environment parameter information acquiring unit 101b is configured to search a database corresponding to the location information according to the location information, and retrieve environment parameter information corresponding to an environment in which the luminaire is located from the database.
  • the first environment parameter information obtaining unit 101b includes a weather database acquisition subunit and an environment parameter information retrieval subunit.
  • the weather database information acquisition subunit is configured to search for a weather database corresponding to the location information according to the location information.
  • the environmental parameter information retrieval subunit is configured to retrieve, from the weather database, environmental parameter information corresponding to an environment in which the luminaire is located.
  • the environment parameter information acquisition module 101 includes a smart home database acquisition unit 101c and a second environment parameter information retrieval unit 101d.
  • the smart home database information obtaining unit 101c is configured to acquire a smart home database corresponding to the identity identification information according to the identity identification information.
  • the second environment parameter information retrieval unit 101d is configured to retrieve, from the smart home database, environment parameter information corresponding to an environment in which the luminaire is located.
  • the environment parameter information acquisition module 101 includes a security network database acquisition unit 101e and a third environment parameter information retrieval unit 101f.
  • the security network database information obtaining unit 101e is configured to acquire a security network database corresponding to the identity identification information according to the identity identification information.
  • the environment parameter information retrieval unit 101f is configured to retrieve environmental parameter information corresponding to the environment in which the luminaire is located from the security network database.
  • the server 10 provided by the embodiment of the present invention can be applied to the embodiment of the luminaire control method corresponding to FIG. 1.
  • the server 10 provided by the embodiment of the present invention can be applied to the embodiment of the luminaire control method corresponding to FIG. 1.
  • details refer to the description of the illuminant control method embodiment, and details are not described herein again.
  • the identification information of the luminaire is obtained from the illumination control end built in the luminaire, and the database corresponding to the identification information is searched according to the identity identification information, and the luminaire is retrieved from the database.
  • the environment parameter information corresponding to the environment, and the environment parameter information is sent to the lighting control end, so that the lighting control end adjusts the parameters of the luminaire according to the environmental parameter information, so that the lighting control end in the luminaire can be adaptively adapted according to external environmental parameters.
  • the realization of the lighting control operation solves the problem that the existing luminaire cannot adaptively realize the lighting control operation according to the external environmental parameters.
  • FIG. 6 shows the structure of a server according to a second embodiment of the present invention. For the convenience of description, only parts related to the present embodiment are shown, which are described in detail as follows:
  • the server 10 provided by the embodiment of the present invention includes a processor 103 (processor), a communication interface 104 (memory), a memory 105 (memory), and a bus 106.
  • processor 103 processor
  • communication interface 104 memory
  • memory 105 memory
  • bus 106 bus
  • the processor 103, the communication interface 104, and the memory 105 complete communication with each other via the bus 106.
  • the communication interface 104 is configured to communicate with an external device, such as a personal computer, a server, or the like.
  • the processor 103 is configured to execute the program 107.
  • the program 107 may include program code, the program code including computer operation instructions.
  • the processor 103 may be a central processing unit CPU, or an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement embodiments of the present invention.
  • the memory 105 is configured to store the program 107.
  • the memory 105 may include a high speed RAM memory and may also include a non-volatile memory such as at least one disk memory.
  • the program 107 may specifically include:
  • the identity information acquiring module 100 is configured to obtain identity identification information of the light fixture from a lighting control device built in the light fixture.
  • the environment parameter information retrieval module 101 is configured to search a database corresponding to the identity identification information according to the identity identification information, and retrieve, from the database, environment parameter information corresponding to an environment in which the luminaire is located .
  • the environment parameter information sending module 102 is configured to send the environment parameter information to the lighting control end, so that the lighting control end performs parameter adjustment on the luminaire according to the environmental parameter information.
  • the server 10 provided by the embodiment of the present invention can be applied to the embodiment of the luminaire control method corresponding to FIG. 1 .
  • the server 10 provided by the embodiment of the present invention can be applied to the embodiment of the luminaire control method corresponding to FIG. 1 .
  • FIG. 7 shows an implementation flow of a luminaire control method according to a third embodiment of the present invention. For convenience of explanation, only parts related to the embodiment are shown, which are described in detail as follows:
  • step S20 the identity information of the luminaire is sent to the server according to the user operation.
  • Step S20 is specifically: the lighting control end built in the luminaire communicates with the server according to the user operation, and responds to the identity information request instruction sent by the server, and then the identity information of the luminaire is sent to the server; Or the lighting control end built in the luminaire communicates with the server according to the user operation, and sends the identity information of the luminaire to the server autonomously; the identity information may be two-dimensional code information, letters and/or numbers indicating the identity of the luminaire.
  • the data string, the lighting control end of the luminaire, and the network identification information for communicating with the server for example, information such as WiF i hotspot information used by the lighting control end to communicate with the server;
  • the user operation includes but is not limited to a touch operation, a button operating.
  • step S21 the server is configured to search a database corresponding to the identity identification information according to the identity identification information, and retrieve an environment parameter f corresponding to an environment in which the luminaire is located from the database. ⁇ interest.
  • the environmental parameter information of the luminaire includes, but is not limited to, weather data information of the environment in which the luminaire is located, and whether there is an air conditioner, a refrigerator, a washing machine, etc. in the smart home database corresponding to the environment in which the luminaire is located
  • the electric appliance is turned on, and when there is an electric appliance, the working state of the electric appliance, for example, when the air conditioner is snoring, the temperature, humidity, wind power, etc. of the current working condition of the air conditioner, and the actual situation information of the environment in which the luminaire is located, such as a luminaire Is there anybody in the current environment?
  • step S22 parameter adjustment is performed on the luminaire according to the environmental parameter information.
  • the parameter adjustment of the luminaire according to the environmental parameter information mainly includes operations such as dimming, color grading, xenon lamp, and off lamp.
  • the lighting control end adjusts the lighting color of the lamp to a warm white light of 2700 to 3000K color temperature according to the environmental parameter information, if the environmental parameter information is a hot summer day; the lighting control end According to the environmental parameter information, the illuminating color of the luminaire is adjusted to a cool color temperature of 5700-6 500K; if the environmental parameter information continues to be cloudy and rainy, the lighting control end will enhance the illuminating intensity of the ultraviolet light of the luminaire to suppress mold growth in the environment.
  • the embodiment further provides a lighting control device 20, which includes an identity information transmitting module 200, an environment parameter information receiving module 201, and an adjustment module 202.
  • the identity information sending module 200 is configured to send identity information of the luminaire to the server according to a user operation.
  • the environment parameter information receiving module 201 is configured to receive, by the server, a database corresponding to the identity identification information according to the identity identification information, and retrieve, from the database, a corresponding to an environment in which the light fixture is located.
  • Environmental parameter information is configured to receive, by the server, a database corresponding to the identity identification information according to the identity identification information, and retrieve, from the database, a corresponding to an environment in which the light fixture is located.
  • the adjustment module 202 is configured to perform parameter adjustment on the luminaire according to the environmental parameter information.
  • the illumination control device 20 is built in the luminaire, and the luminaire includes, but is not limited to, a triangle, a quadrangle, a polygon, a circle, an ellipse, and other irregular shapes;
  • the identity information transmitting module 2 00 is a communication module built in the luminaire, the communication module includes, but is not limited to, wired communication, wireless communication;
  • the adjustment module 202 includes a control unit and a driving unit, and the control unit controls the driving unit to the luminaire according to the environmental parameter information.
  • the driving module is driven by any mode, including but not limited to mechanical driving, electronic driving, digital driving, analog driving, etc.
  • the control unit is a Microcontroller Unit (MCU). , including but not limited to microcontrollers, ARM processors, and other processors with data logic processing capabilities.
  • MCU Microcontroller Unit
  • the illumination control device 20 provided by the embodiment of the present invention can be applied to the lamp control method corresponding to FIG. 7 .
  • the description of the embodiment of the luminaire control method and details are not described herein again.
  • the identity information of the luminaire is sent to the server according to the user operation, and the database corresponding to the identity identification information that is searched by the server according to the identity identification information is received, and is adjusted from the database.
  • the database corresponding to the identity identification information that is searched by the server according to the identity identification information is received, and is adjusted from the database.
  • FIG 9 shows the structure of a lighting control device 20 according to a fourth embodiment of the present invention, for convenience of explanation.
  • the lighting control apparatus 20 provided by the embodiment of the present invention includes a processor 203 (processor)
  • the processor 203, the communication interface 204, and the memory 205 complete communication with each other through the bus 206.
  • the communication interface 204 is configured to communicate with an external device, such as a personal computer, a server, or the like.
  • the processor 203 is configured to execute the program 207.
  • the program 207 can include program code, the program code including computer operating instructions.
  • the processor 203 may be a central processing unit CPU, or an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement the embodiments of the present invention.
  • CPU central processing unit
  • ASIC application specific integrated circuit
  • the memory 205 is configured to store the program 207.
  • the memory 205 may include a high speed RAM memory and may also include a non-volatile memory such as at least one disk memory.
  • the program 207 may specifically include:
  • the identity information sending module 200 is configured to send identity information of the luminaire to the server according to a user operation.
  • the environment parameter information receiving module 201 is configured to receive, by the server, a database corresponding to the identity identification information according to the identity identification information, and retrieve, from the database, a corresponding to an environment in which the light fixture is located.
  • the adjustment module 202 is configured to perform parameter adjustment on the luminaire according to the environmental parameter information.
  • the illumination control device 20 provided by the embodiment of the present invention can be applied to the embodiment of the luminaire control method corresponding to FIG. 7.
  • the illumination control device 20 provided by the embodiment of the present invention can be applied to the embodiment of the luminaire control method corresponding to FIG. 7.
  • details refer to the description of the illuminant control method embodiment, and details are not described herein again.
  • FIG. 10 shows an implementation flow of a luminaire control method according to a fifth embodiment of the present invention. For convenience of explanation, only parts related to the embodiment are shown, which are described in detail as follows:
  • step S30 the lighting control end built in the luminaire transmits the identity identification information of the luminaire to the server according to a user operation.
  • Step S30 is specifically: the lighting control end built in the luminaire communicates with the server according to the user operation, and responds to the identity identification information request instruction sent by the server, and then the identity information of the luminaire is sent to the server; Or the lighting control end built in the luminaire communicates with the server according to the user operation, and sends the identity information of the luminaire to the server autonomously; the identity information may be two-dimensional code information, letters and/or numbers indicating the identity of the luminaire.
  • the data string, the lighting control end of the luminaire, and the network identification information for communicating with the server for example, information such as WiF i hotspot information used by the lighting control end to communicate with the server;
  • the user operation includes but is not limited to a touch operation, a button operating.
  • step S31 the server obtains the identity identification information of the luminaire from the lighting control terminal.
  • Step S31 is specifically: the server communicates with the lighting control end, and sends an identity information request instruction to the lighting control end, and the lighting control end responds to the identity information request instruction, and pushes the setting to the server.
  • the identity information may be a QR code information and a letter indicating the identity of the luminaire And/or a data string composed of numbers, a network control information that the lighting control end in the luminaire communicates with the server, such as information such as WiFi hotspot information used by the lighting control end to communicate with the server.
  • step S32 the server searches for a database corresponding to the identity identification information according to the identity identification information, and retrieves environment parameter information corresponding to the environment in which the luminaire is located from the database.
  • step S32 includes the following steps.
  • the identity identification information is information such as two-dimensional code information indicating the identity of the luminaire, a data string composed of letters and/or numbers, and the data string formed by the server according to the two-dimensional code information, letters and/or numbers
  • the information obtains the location information of the luminaire in the preset identity information and the geographical location mapping table; when the identity identification information is the network identification information that the lighting control terminal in the luminaire communicates with the server, for example, the lighting control end communicates with the server After the WiFi hotspot information is used, the server analyzes the WiFi hotspot information to obtain the location information of the WiFi hotspot information, and the location information of the WiFi hotspot is the location information of the light fixture.
  • the step of searching for the database corresponding to the location information according to the location information, and retrieving the environment parameter information corresponding to the environment in which the luminaire is located specifically includes:
  • the server can search for a weather database corresponding to the XX province and the XX county; or the location of the luminaire acquired by the server.
  • the information is position information composed of latitude and longitude information, and the server can find a weather database corresponding thereto according to the latitude and longitude information.
  • the server searches for the weather database corresponding to the location information according to the location information, and searches for the corresponding weather database by searching the weather database information corresponding to the location information.
  • the database information may be number information, name information, and the like of the weather database.
  • the server may find a weather database corresponding to the number information or the name information of the weather database according to the number information, the name information, and the like, and obtain the weather database from the weather database.
  • the environment parameter information of the environment in which the luminaire is located is retrieved. For example, when the server picks up the weather database information for the XX province and XX county meteorological database, the server can adjust the weather database of XX province and XX county. Take weather data of XX province and XX county, the weather data may be cloudy, sunny, rainy, and the weather data may include environmental parameter information such as humidity and temperature, and the weather data is environmental parameter information of the environment where the luminaire is located .
  • step S32 specifically includes the following steps: [0146] acquiring a smart home database corresponding to the identity identification information according to the identity identification information;
  • the server identifies the identity identification information according to the identity identification information-the smart home Searching for the smart home database corresponding to the identity information in the database information mapping table; or when the identity information is the network identification information that the lighting control terminal in the luminaire communicates with the server, for example, the lighting control terminal communicates with the server According to the WiFi hotspot information, the server finds the smart home system information that is the same as the WiFi hotspot information and performs smart home communication with the server, and obtains the corresponding smart information according to the smart home system information. Home database.
  • the server searches for the smart home system information that is also used to communicate with the WiFi hotspot A according to the WiFi hotspot A, and the server obtains the same communication mode with the WiFi hotspot A.
  • the smart home system information of communication and further acquire the smart home database corresponding to the information of the smart home system ⁇
  • the environment parameter information corresponding to the environment in which the luminaire is located refers to the data of the smart home control system, so that the luminaire and the system are synchronously controlled, such as whether the current environment in which the luminaire is located is
  • household appliances such as air conditioners, refrigerators, washing machines, etc.
  • the working status of the electric appliance is obtained, for example, when the air conditioner is snoring, information such as the temperature, humidity, and wind power of the current working of the air conditioner is obtained, according to the smart home system.
  • Corresponding lighting environment settings adjust the luminaires, return to the automatic slamming lights in the following classes, automatically turn off the lights at night, and the temperature of the air conditioner is automatically adjusted to the corresponding color temperature of the light. If the air is cool, the lamps are cooled to cool. Cold light, the heating is adjusted to warm yellow light.
  • step S32 specifically includes the following steps:
  • the server identifies the identity identification information according to the identity identification information-security network Searching for the security network database corresponding to the identity information in the database information mapping table; or when the identity information is the network identification information that the lighting control terminal in the luminaire communicates with the server, for example, the lighting control terminal communicates with the server WiFi hotspot information, the server is based on the WiFi hotspot
  • the information search communication method is the same as the WiFi hotspot information, and the security network system information is communicated with the server, and the security network database corresponding thereto is obtained according to the security network system information.
  • the server searches for the security network system information that is also used to communicate with the WiFi hotspot A according to the WiFi hotspot A, and the server obtains the same communication mode with the WiFi hotspot A to communicate with the WiFi hotspot A.
  • the security network system information is further obtained, and the security network database C corresponding to the security network system information is further obtained.
  • the environment parameter information corresponding to the environment in which the luminaire is located which is retrieved by the server from the security network database, refers to the actual situation of the current environment in which the luminaire is located, such as whether the current environment in which the luminaire is located is human.
  • step S33 the server sends the environment parameter information to the lighting control end.
  • step S34 the lighting control terminal receives the environment parameter information.
  • the environmental parameter information of the luminaire includes, but is not limited to, weather data information of the environment in which the luminaire is located, and whether there is an air conditioner, a refrigerator, a washing machine, and the like in the smart home database corresponding to the environment where the luminaire is located, And when there is an electric appliance, the working state of the electric appliance, for example, when the air conditioner is snoring, the temperature, humidity, wind power, etc. of the current working condition of the air conditioner, and the actual situation information of the environment in which the luminaire is located, for example, the current environment in which the luminaire is located Is there anyone?
  • step S35 the lighting control terminal performs parameter adjustment on the luminaire according to the environmental parameter information.
  • the lighting control terminal adjusts the parameters of the luminaire according to the environmental parameter information, and mainly has operations such as dimming, color grading, illuminating, turning off the lights, and the like.
  • the environmental parameter information is a cold rain and snow day
  • the lighting control end adjusts the lighting color of the lamp to a warm white light of 2700 to 3000K color temperature according to the environmental parameter information, if the environmental parameter information is a hot summer day; the lighting control end According to the environmental parameter information, the lighting color of the lamp is adjusted to a cool color temperature of 5700-6500K; if the environmental parameter information continues to be rainy weather, the lighting control end will enhance the luminous intensity of the ultraviolet light of the lamp to suppress mold growth in the environment.
  • the lighting control end built in the luminaire sends the identity identification information of the luminaire to the server according to the user operation, so that the server searches the database corresponding to the identity identification information according to the identity identification information, and The database retrieves environmental parameter information corresponding to the environment in which the luminaire is located, and the server sends the environmental parameter information to the lighting control end, and the lighting control end adjusts the parameters of the luminaire according to the environmental parameter information, so that the lighting control end in the luminaire can be based on External environment parameters adaptively implement lighting control operations
  • External environment parameters adaptively implement lighting control operations
  • Embodiment 6 is a diagrammatic representation of Embodiment 6
  • FIG. 11 shows the structure of the luminaire control system 30 according to the sixth embodiment of the present invention. For the convenience of description, only the parts related to the present embodiment are shown, which are described in detail as follows:
  • the luminaire control system 30 shown in this embodiment includes the server 10 as shown in FIG. 2 and FIG. 6 and the illuminating control device 20 as shown in FIG.
  • the lighting control device 20 can be applied to the embodiment of the luminaire control method corresponding to FIG. 7 and FIG. 10
  • the server 10 can be applied to the illuminant control method embodiment corresponding to FIG. 1 and FIG. 10 . Description, no longer repeat here.
  • the lighting control device 20 built in the luminaire transmits the identification information of the luminaire to the server 10 according to the user operation; the server 10
  • the lighting control device 20 acquires the identity identification information of the luminaire; the server 10 searches the database corresponding to the identity identification information according to the identity identification information, and retrieves the environment parameter information corresponding to the environment in which the luminaire is located; the server 10 sets the environment parameter The information is sent to the lighting control device 20; the lighting control device 20 receives the environmental parameter information and performs parameter adjustment on the luminaire according to the environmental parameter information, so that the lighting control device 20 in the luminaire can adaptively implement the lighting control operation according to the external environmental parameter.
  • the problem that the existing luminaires cannot adaptively implement the lighting control operation according to external environmental parameters is solved.
  • the disclosed system, apparatus, and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division, and the actual implementation may have another division manner, for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some communication interface, device or unit, It can be electrical, mechanical or other form.
  • the unit described as a separate component may or may not be physically distributed, and the component displayed as a unit may or may not be a physical unit, that is, may be located in one place, or may be distributed to multiple On the network unit. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions, if implemented in the form of software functional units and sold or used as separate products, may be stored in a computer readable storage medium.
  • the technical solution of the present invention which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a USB flash drive, a removable hard disk, a read only memory (ROM, Read-Only)
  • RAM random access memory
  • disk disk or optical disk, and other media that can store program code.

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Abstract

一种灯具控制方法,通过内置于灯具的照明控制端根据用户操作将灯具的身份标识信息发送至服务端;服务端从照明控制端获取灯具的身份标识信息;服务端根据身份标识信息查找与身份标识信息对应的数据库,并从数据库中调取与所述灯具所处环境对应的环境参数信息;服务端将环境参数信息发送至照明控制端;照明控制端接收环境参数信息;照明控制端根据环境参数信息对灯具进行参数调节,使得灯具中的照明控制端可根据外部环境参数自适应地实现照明控制操作,解决了现有灯具存在不能根据外部环境参数自适应地实现照明控制操作的问题。

Description

发明名称:一种灯具控制方法及***、 照明控制装置、 服务器 技术领域
[0001] 本发明属于智能灯具技术领域, 尤其涉及一种灯具控制方法及***、 照明控制 装置、 服务器。
背景技术
目前, 现有灯具的控制方式主要由用户通过安装在控制终端 (如手机、 电脑) 内的软件实现相应的控制, 例如, 用户通过安装在控制终端内的软件对灯具进 行幵关控制、 亮度调节及色温调节等一系列控制操作, 也就是说控制终端只是 充当了灯具自身的遥控器, 而灯具本身并不能根据外部环境参数 (如光线强弱 ) 的变化自适应地实现幵关控制、 亮度调节、 以及色温调节等照明控制操作。
[0003] 综上所述, 现有灯具存在不能根据外部环境参数自适应地实现照明控制操作的 问题。
技术问题
[0004] 本发明的目的在于提供一种灯具控制方法, 旨在解决现有灯具存在不能根据外 部环境参数自适应地实现照明控制操作的问题。
问题的解决方案
技术解决方案
[0005] 本发明是这样实现的, 一种灯具控制方法, 所述灯具控制方法包括以下步骤: [0006] 从内置于灯具的所述照明控制端获取所述灯具的身份标识信息;
[0007] 根据所述身份标识信息査找与所述身份标识信息对应的数据库, 并从所述数据 库中调取与所述灯具所处环境对应的环境参数信息;
[0008] 将所述环境参数信息发送至所述照明控制端, 以使所述照明控制端根据所述环 境参数信息对所述灯具进行参数调节。
[0009] 本发明的另一目的在于提供一种灯具控制方法, 所述灯具控制方法包括以下步 骤:
[0010] 根据用户操作将灯具的身份标识信息发送至服务端; [0011] 接收所述服务端根据所述身份标识信息査找与所述身份标识信息对应的数据库
, 并从所述数据库中调取与所述灯具所处环境对应的环境参数信息;
[0012] 根据所述环境参数信息对所述灯具进行参数调节。
[0013] 本发明的又一目的在于提供一种灯具控制方法, 所述灯具控制方法包括以下步 骤:
[0014] 内置于所述灯具的照明控制端根据用户操作将所述灯具的身份标识信息发送至 服务端;
[0015] 所述服务端从所述照明控制端获取所述灯具的身份标识信息;
[0016] 所述服务端根据所述身份标识信息査找与所述身份标识信息对应的数据库, 并 从所述数据库中调取与所述灯具所处环境对应的环境参数信息;
[0017] 所述服务端将所述环境参数信息发送至所述照明控制端;
[0018] 所述照明控制端接收所述环境参数信息;
[0019] 所述照明控制端根据所述环境参数信息对所述灯具进行参数调节。
[0020] 本发明的目的还在于提供一种服务器, 所述服务器包括:
[0021] 身份标识信息获取模块, 用于从内置于灯具的所述照明控制装置获取所述灯具 的身份标识信息;
[0022] 环境参数信息调取模块, 用于根据所述身份标识信息査找与所述身份标识信息 对应的数据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参数信 息;
[0023] 环境参数信息发送模块, 用于将所述环境参数信息发送至所述照明控制装置, 以使所述照明控制装置根据所述环境参数信息对所述灯具进行参数调节。
[0024] 本发明的另一目的还在于提供一种照明控制装置, 内置在灯具中, 所述照明控 制装置包括:
[0025] 身份标识信息发送模块, 用于根据用户操作将灯具的身份标识信息发送至服务 器;
[0026] 环境参数信息接收模块, 用于接收所述服务器根据所述身份标识信息査找与所 述身份标识信息对应的数据库, 并从所述数据库中调取与所述灯具所处环境对 应的环境参数信息; [0027] 调节模块, 用于根据所述环境参数信息对所述灯具进行参数调节。
[0028] 本发明的又一目的还在于提供一种灯具控制***, 所述灯具控制***包括上述 的服务器与照明控制装置。
发明的有益效果
有益效果
[0029] 在本发明中, 内置于灯具的照明控制端根据用户操作将灯具的身份标识信息发 送至服务端, 以使服务端根据该身份标识信息査找与身份标识信息对应的数据 库, 并从数据库中调取与灯具所处环境对应的环境参数信息, 服务端将环境参 数信息发送至照明控制端, 照明控制端根据环境参数信息对灯具进行参数调节
, 使得灯具中的照明控制端可根据外部环境参数自适应地实现照明控制操作, 解决了现有灯具存在不能根据外部环境参数自适应地实现照明控制操作的问题
对附图的简要说明
附图说明
[0030] 图 1是本发明第一实施例所提供的灯具控制方法的流程示意图;
[0031] 图 2是本发明第一实施例所提供的服务器的结构示意图;
[0032] 图 3是图 2所示的服务器中的环境参数信息调取模块 101的第一结构示意图;
[0033] 图 4是图 2所示的服务器中的环境参数信息调取模块 101的第二结构示意图;
[0034] 图 5是图 2所示的服务器中的环境参数信息调取模块 101的第三结构示意图;
[0035] 图 6是本发明第二实施例所提供的服务器的结构示意图;
[0036] 图 7是本发明第三实施例所提供的灯具控制方法的流程示意图;
[0037] 图 8是本发明第三实施例所提供的照明控制装置的结构示意图;
[0038] 图 9是本发明第四实施例所提供的照明控制装置的结构示意图;
[0039] 图 10是本发明第五实施例所提供的灯具控制方法的流程示意图;
[0040] 图 11是本发明第六实施例所提供的灯具控制***的结构示意图。
本发明的实施方式 [0041] 为了使本发明的目的、 技术方案及优点更加清楚明白, 以下结合附图及实施例 , 对本发明进行进一步详细说明。 应当理解, 此处所描述的具体实施例仅仅用 以解释本发明, 并不用于限定本发明。
[0042] 以下结合具体附图对本发明的实现进行详细的描述:
[0043] 实施例一:
[0044] 图 1示出了本发明第一实施例所提供的灯具控制方法的实现流程, 为了便于说 明, 仅示出了与本实施例相关的部分, 详述如下:
[0045] 在步骤 S10中, 从内置于灯具的照明控制端获取所述灯具的身份标识信息。
[0046] 其中, 步骤 S10具体为: 服务端与照明控制端进行通信, 并向照明控制端发送 身份标识信息请求指令, 照明控制端响应该身份标识信息请求指令, 并向服务 端推送其所置灯具的身份标识信息; 或者是服务端与照明控制端进行通信, 照 明控制端自主向服务端发送其所置灯具的身份标识信息; 该身份标识信息可以 是表明灯具身份的二维码信息、 字母和 /或数字组成的数据串、 灯具中的照明控 制端与服务端进行通信的网络标识信息, 例如照明控制端与服务端进行通信所 用的 WiFi热点信息等信息。
[0047] 在步骤 S 11中, 根据所述身份标识信息査找与所述身份标识信息对应的数据库
, 并从所述数据库中调取与所述灯具所处环境对应的环境参数信息。
[0048] 具体的, 作为本发明一优选实施例, 步骤 S11包括以下步骤:
[0049] 根据所述身份标识信息对所述灯具进行定位, 以获取所述灯具的位置信息; [0050] 根据所述位置信息査找与所述位置信息对应的数据库, 并从所述数据库中调取 与所述灯具所处环境对应的环境参数信息。
[0051] 其中, 当身份标识信息为表明灯具身份的二维码信息、 字母和 /或数字组成的 数据串等信息吋, 根据该二维码信息、 字母和 /或数字组成的数据串等信息在预 设的身份标识信息与地域位置映射表获取灯具的位置信息; 当身份标识信息为 灯具中的照明控制端与服务端进行通信的网络标识信息, 例如照明控制端与服 务端进行通信所用的 WiFi热点信息吋, 服务端对该 WiFi热点信息进行分析, 以 获取该 WiFi热点信息所在的位置信息, 而该 WiFi热点所在的位置信息也就是灯 具的位置信息。 [0052] 再者, 根据所述位置信息査找与所述位置信息对应的数据库, 并从所述数据库 中调取与所述灯具所处环境对应的环境参数信息的步骤具体包括:
[0053] 根据所述位置信息査找与所述位置信息对应的气象数据库;
[0054] 从所述气象数据库中调取与所述灯具所处环境对应的环境参数信息。
[0055] 具体的, 例如当服务端获取到的灯具的位置信息是 XX省、 XX县吋, 服务端可 査找与该 XX省、 XX县对应的气象数据库; 或者当服务端获取到的灯具的位置信 息是由经纬度信息构成的位置信息吋, 服务端可根据该经纬度信息査找与之对 应的气象数据库。
[0056] 值得注意的是, 在本实施例中, 服务端根据位置信息査找与该位置信息对应的 气象数据库吋可以通过査找与该位置信息对应的气象数据库信息来査找相应的 气象数据库, 该气象数据库信息可以是气象数据库的编号信息、 名称信息等。
[0057] 其中, 在获取到气象数据库的编号信息、 名称信息后, 可以根据编号信息、 名 称信息等査找到与该气象数据库的编号信息或者名称信息相对应的气象数据库 , 并从该气象数据库中调取灯具所处环境的环境参数信息, 例如, 当服务端获 取到该气象数据库信息为 XX省、 XX县气象数据库吋, 服务端便可从将 XX省、 XX县的气象数据库中调取 XX省、 XX县的天气数据, 该天气数据可以为阴天、 晴天、 雨天, 并且该天气数据可包括湿度、 温度等环境参数信息, 而上述天气 数据便是灯具所处环境的环境参数信息。
[0058] 此外, 作为本发明另一实施例, 步骤 S11具体包括以下步骤:
[0059] 根据所述身份标识信息获取与所述身份标识信息对应的智能家居数据库; [0060] 从所述智能家居数据库中调取与所述灯具所处环境对应的环境参数信息。
[0061] 具体的, 当身份标识信息为表明灯具身份的二维码信息、 字母和 /或数字组成 的数据串等信息吋, 根据该身份标识信息在预设的身份标识信息-智能家居数据 库信息映射表中査找与该身份标识信息对应的智能家居数据库; 或者当身份标 识信息为灯具中的照明控制端与服务端进行通信的网络标识信息, 例如照明控 制端与服务端进行通信所用的 WiFi热点信息吋, 服务端根据该 WiFi热点信息査 找通信方式与该 WiFi热点信息相同的, 并与服务端进行智能家居通信的智能家 居***信息, 并根据该智能家居***信息获取与之对应的智能家居数据库。 例 如, 当 WiFi热点信息为 A吋, 服务端根据该 WiFi热点 A査找同样采用该 WiFi热点 A与其进行通信的智能家居***信息, 当服务端获取到与该 WiFi热点 A采用相同 通信方式与其进行通信的智能家居***信息吋, 再进一步获取与该智能家居系 统信息对应的智能家居数据库^
[0062] 其中, 从智能家居数据库中调取的与灯具所处环境对应的环境参数信息指的是 调取智能家居控制***数据使灯具与***同步控制, 如灯具所处的当前环境是 否有空调、 冰箱、 洗衣机等家用电器幵启, 并且当有电器幵启吋, 获取电器的 工作状态, 例如当空调打幵吋, 获取空调当前工作的温度、 湿度、 风力等信息 , 并根据智能家居***对应的照明环境情景的设定对灯具进行调节, 如下班回 来自动幵灯, 晚上休息吋自动关灯, 和空调的温度自动调节到相应的灯光色温 , 如幵的是冷气则灯具调到清凉的冷光, 幵的是暖气则调至暖和的黄光。
[0063] 进一步地, 作为本发明又一实施例, 步骤 S11具体包括以下步骤:
[0064] 根据所述身份标识信息获取与所述身份标识信息对应的安防网络数据库; [0065] 从所述安防网络数据库中调取与所述灯具所处环境对应的环境参数信息。
[0066] 其中, 当身份标识信息为表明灯具身份的二维码信息、 字母和 /或数字组成的 数据串等信息吋, 根据该身份标识信息在预设的身份标识信息-安防网络数据库 信息映射表中査找与该身份标识信息对应的安防网络数据库; 或者当身份标识 信息为灯具中的照明控制端与服务端进行通信的网络标识信息, 例如照明控制 端与服务端进行通信所用的 WiFi热点信息吋, 服务端根据该 WiFi热点信息査找 通信方式与该 WiFi热点信息相同的, 并与服务端进行通信的安防网络***信息 , 并根据该安防网络***信息获取与之对应的安防网络数据库。 例如, 当 WiFi 热点信息为 A吋, 服务端根据该 WiFi热点 A査找同样采用该 WiFi热点 A与其进行 通信的安防网络***信息, 当服务端获取到与该 WiFi热点 A采用相同通信方式与 其进行通信的安防网络***信息吋, 再进一步获取与该安防网络***信息对应 的安防网络数据库 C。
[0067] 其中, 从安防网络数据库中调取的与灯具所处环境对应的环境参数信息指的是 灯具所处的当前环境的实际情况, 例如灯具所处的当前环境是否有人。
[0068] 在步骤 S12中, 将所述环境参数信息发送至所述照明控制端, 以使所述照明控 制端根据所述环境参数信息对所述灯具进行参数调节。
[0069] 进一步地, 如图 2所示, 本实施例还提供了一种服务器 10, 该服务器 10包括身 份标识信息获取模块 100、 环境参数信息调取模块 101以及环境参数信息发送模 块 102。
[0070] 身份标识信息获取模块 100, 用于从内置于灯具的照明控制装置获取灯具的身 份标识信息。
[0071] 环境参数信息调取模块 101, 用于根据所述身份标识信息査找与所述身份标识 信息对应的数据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参 数信息。
[0072] 环境参数信息发送模块 102, 用于将所述环境参数信息发送至所述照明控制装 置, 以使所述照明控制装置根据所述环境参数信息对所述灯具进行参数调节。
[0073] 具体的, 作为本发明一优选实施例, 如图 3所示, 环境参数信息调取模块 101包 括位置信息获取单元 101a与第一环境参数信息获取单元 101b。
[0074] 位置信息获取单元 101a, 用于根据所述身份标识信息对所述灯具进行定位, 以 获取所述灯具的位置信息。
[0075] 第一环境参数信息获取单元 101b, 用于根据所述位置信息査找与所述位置信息 对应的数据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参数信 息。
[0076] 进一步地, 第一环境参数信息获取单元 101b包括气象数据库获取子单元与环境 参数信息调取子单元。
[0077] 气象数据库信息获取子单元用于根据所述位置信息査找与所述位置信息对应的 气象数据库。
[0078] 环境参数信息调取子单元用于从所述气象数据库中调取与所述灯具所处环境对 应的环境参数信息。
[0079] 进一步地, 作为本发明另一实施例, 如图 4所示, 环境参数信息调取模块 101包 括智能家居数据库获取单元 101c与第二环境参数信息调取单元 101d。
[0080] 智能家居数据库信息获取单元 101c, 用于根据所述身份标识信息获取与所述身 份标识信息对应的智能家居数据库。 [0081] 第二环境参数信息调取单元 101d, 用于从所述智能家居数据库中调取与所述灯 具所处环境对应的环境参数信息。
[0082] 进一步地, 作为本发明又一实施例, 如图 5所示, 环境参数信息调取模块 101包 括安防网络数据库获取单元 101e与第三环境参数信息调取单元 101f。
[0083] 安防网络数据库信息获取单元 101e, 用于根据所述身份标识信息获取与所述身 份标识信息对应的安防网络数据库。
[0084] 环境参数信息调取单元 101f, 用于从所述安防网络数据库中调取与所述灯具所 处环境对应的环境参数信息。
[0085] 本发明实施例提供的服务器 10可以应用于与图 1对应的灯具控制方法实施例中 , 详情参见上述灯具控制方法实施例的描述, 在此不再赘述。
[0086] 在本实施例中, 通过从内置于灯具的照明控制端获取灯具的身份标识信息, 并 根据身份标识信息査找与该身份标识信息对应的数据库, 并从该数据库中调取 与灯具所处环境对应的环境参数信息, 且将环境参数信息发送至照明控制端, 以使照明控制端根据环境参数信息对灯具进行参数调节, 进而使得灯具中的照 明控制端可根据外部环境参数自适应地实现照明控制操作, 解决了现有灯具存 在不能根据外部环境参数自适应地实现照明控制操作的问题。
[0087] 实施例二:
[0088] 图 6示出了本发明第二实施例所提供的服务器的结构, 为了便于说明, 仅示出 了与本实施例相关的部分, 详述如下:
[0089] 如图 6所示, 本发明实施例所提供的服务器 10包括处理器 103 (processor) , 通 信接口 104 (Communications Interface) , 存储器 105 (memory) , 总线 106。
[0090] 处理器 103, 通信接口 104, 存储器 105通过总线 106完成相互间的通信。
[0091] 通信接口 104, 用于与外界设备, 例如, 个人电脑、 服务器等通信。
[0092] 处理器 103, 用于执行程序 107。
[0093] 具体地, 程序 107可以包括程序代码, 所述程序代码包括计算机操作指令。
[0094] 处理器 103可能是一个中央处理器 CPU, 或者是特定集成电路 ASIC (Applicatio n Specific Integrated Circuit) , 或者是被配置成实施本发明实施例的一个或多个 集成电路。 [0095] 存储器 105, 用于存放程序 107。 存储器 105可能包含高速 RAM存储器, 也可能 还包括非易失性存储器 (non-volatile memory) , 例如至少一个磁盘存储器。 程 序 107具体可以包括:
[0096] 身份标识信息获取模块 100, 用于从内置于灯具的照明控制装置获取灯具的身 份标识信息。
[0097] 环境参数信息调取模块 101, 用于根据所述身份标识信息査找与所述身份标识 信息对应的数据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参 数信息。
[0098] 环境参数信息发送模块 102, 用于将所述环境参数信息发送至所述照明控制端 , 以使所述照明控制端根据所述环境参数信息对所述灯具进行参数调节。
[0099] 本发明实施例提供的服务器 10可以应用于与图 1对应的灯具控制方法实施例中 , 详情参见上述灯具控制方法实施例的描述, 在此不再赘述。
[0100] 实施例三:
[0101] 图 7示出了本发明第三实施例所提供的灯具控制方法的实现流程, 为了便于说 明, 仅示出了与本实施例相关的部分, 详述如下:
[0102] 在步骤 S20中, 根据用户操作将灯具的身份标识信息发送至服务端。
[0103] 其中, 步骤 S20具体为: 内置在灯具中的照明控制端根据用户操作与服务端进 行通信, 并响应服务端发送的身份标识信息请求指令, 进而灯具的身份标识信 息发送至服务端; 或者内置在灯具中的照明控制端根据用户操作与服务端进行 通信, 并自主向服务端发送灯具的身份标识信息; 该身份标识信息可以是表明 灯具身份的二维码信息、 字母和 /或数字组成的数据串、 灯具中的照明控制端与 服务端进行通信的网络标识信息, 例如照明控制端与服务端进行通信所用的 WiF i热点信息等信息; 该用户操作包括但不限于触摸操作、 按键操作。
[0104] 在步骤 S21中, 接收所述服务端根据所述身份标识信息査找与所述身份标识信 息对应的数据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参数 f π息。
[0105] 其中, 灯具所处环境参数信息包括但不限于灯具所处环境的天气数据信息、 与 灯具所处环境对应的智能机家居数据库中的是否有空调、 冰箱、 洗衣机等家用 电器幵启, 并且当有电器幵启吋, 电器的工作状态, 例如当空调打幵吋, 空调 当前工作的温度、 湿度、 风力等信息, 以及灯具所处的环境的实际情况信息, 例如灯具所处的当前环境是否有人。
[0106] 在步骤 S22中, 根据所述环境参数信息对所述灯具进行参数调节。
[0107] 其中, 根据环境参数信息对灯具进行参数调节主要有调光、 调色、 幵灯、 关灯 等操作。 例如, 若环境参数信息为阴冷的雨雪天吋, 照明控制端根据该环境参 数信息将灯具的发光颜色调整到 2700至 3000K色温的暖白光, 若环境参数信息为 炎热的夏天吋; 照明控制端根据该环境参数信息将灯具的发光颜色调整到 5700-6 500K的清凉色温; 若环境参数信息持续为阴雨天吋, 照明控制端将加强灯具紫 外光的发光强度, 以抑制环境中的霉菌生长。
[0108] 进一步地, 如图 8所示, 本实施例还提供了一种照明控制装置 20, 该照明控制 装置 20包括身份标识信息发送模块 200、 环境参数信息接收模块 201以及调节模 块 202。
[0109] 身份标识信息发送模块 200, 用于根据用户操作将灯具的身份标识信息发送至 服务器。
[0110] 环境参数信息接收模块 201, 用于接收所述服务器根据所述身份标识信息査找 与所述身份标识信息对应的数据库, 并从所述数据库中调取与所述灯具所处环 境对应的环境参数信息。
[0111] 调节模块 202, 用于根据所述环境参数信息对所述灯具进行参数调节。
[0112] 在本实施例中, 照明控制装置 20内置在灯具中, 该灯具包括但不限于三边形、 四边形、 多边形、 圆形、 椭圆形及其他不规则形状; 该身份标识信息发送模块 2 00则是内置在灯具中的通信模块, 该通信模块包括但不限于利用有线方式通信 、 无线方式通信; 该调节模块 202包括控制单元与驱动单元, 控制单元根据环境 参数信息控制驱动单元对灯具中的发光模块进行驱动, 其中, 该驱动模块可以 是任意方式的驱动, 包括但不限于机械驱动、 电子驱动、 数字驱动以及模拟驱 动等, 此外, 该控制单元为微控制单元 (Microcontroller Unit, MCU) , 其包括 但不限于单片机、 ARM处理器以及其他具有数据逻辑处理能力的处理器。
[0113] 本发明实施例提供的照明控制装置 20可以应用于与图 7对应的灯具控制方法实 施例中, 详情参见上述灯具控制方法实施例的描述, 在此不再赘述。
[0114] 在本实施例中, 通过根据用户操作将灯具的身份标识信息发送至服务端, 并接 收服务端根据身份标识信息所査找的与该身份标识信息对应的数据库, 并从该 数据库中调取与灯具所处环境对应的环境参数信息, 且根据环境参数信息对灯 具进行参数调节, 进而使得照明控制端可根据外部环境参数自适应地控制灯具 实现照明控制操作, 解决了现有灯具存在不能根据外部环境参数自适应地实现 照明控制操作的问题。
[0115] 細:
[0116] 图 9示出了本发明第四实施例所提供的照明控制装置 20的结构, 为了便于说明
, 仅示出了与本实施例相关的部分, 详述如下:
[0117] 如图 9所示, 本发明实施例所提供的照明控制装置 20包括处理器 203 (processor
) , 通信接口 204 (Communications
Interface) , 存储器 205 (memory) , 总线 206。
[0118] 处理器 203, 通信接口 204, 存储器 205通过总线 206完成相互间的通信。
[0119] 通信接口 204, 用于与外界设备, 例如, 个人电脑、 服务器等通信。
[0120] 处理器 203, 用于执行程序 207。
[0121] 具体地, 程序 207可以包括程序代码, 所述程序代码包括计算机操作指令。
[0122] 处理器 203可能是一个中央处理器 CPU, 或者是特定集成电路 ASIC (Applicatio n Specific Integrated Circuit) , 或者是被配置成实施本发明实施例的一个或多个 集成电路。
[0123] 存储器 205, 用于存放程序 207。 存储器 205可能包含高速 RAM存储器, 也可能 还包括非易失性存储器 (non-volatile memory) , 例如至少一个磁盘存储器。 程 序 207具体可以包括:
[0124] 身份标识信息发送模块 200, 用于根据用户操作将灯具的身份标识信息发送至 服务器。
[0125] 环境参数信息接收模块 201, 用于接收所述服务器根据所述身份标识信息査找 与所述身份标识信息对应的数据库, 并从所述数据库中调取与所述灯具所处环 境对应的环境参数信息。 [0126] 调节模块 202, 用于根据所述环境参数信息对所述灯具进行参数调节。
[0127] 本发明实施例提供的照明控制装置 20可以应用于与图 7对应的灯具控制方法实 施例中, 详情参见上述灯具控制方法实施例的描述, 在此不再赘述。
[0128] 实施例五:
[0129] 图 10示出了本发明第五实施例所提供的灯具控制方法的实现流程, 为了便于说 明, 仅示出了与该实施例相关的部分, 详述如下:
[0130] 在步骤 S30中, 内置于所述灯具的照明控制端根据用户操作将所述灯具的身份 标识信息发送至服务端。
[0131] 其中, 步骤 S30具体为: 内置在灯具中的照明控制端根据用户操作与服务端进 行通信, 并响应服务端发送的身份标识信息请求指令, 进而灯具的身份标识信 息发送至服务端; 或者内置在灯具中的照明控制端根据用户操作与服务端进行 通信, 并自主向服务端发送灯具的身份标识信息; 该身份标识信息可以是表明 灯具身份的二维码信息、 字母和 /或数字组成的数据串、 灯具中的照明控制端与 服务端进行通信的网络标识信息, 例如照明控制端与服务端进行通信所用的 WiF i热点信息等信息; 该用户操作包括但不限于触摸操作、 按键操作。
[0132] 在步骤 S31中, 所述服务端从所述照明控制端获取所述灯具的身份标识信息。
[0133] 其中, 步骤 S31具体为: 服务端与照明控制端进行通信, 并向照明控制端发送 身份标识信息请求指令, 照明控制端响应该身份标识信息请求指令, 并向服务 端推送其所置灯具的身份标识信息; 或者是服务端与照明控制端进行通信, 照 明控制端自主向服务端发送其所置灯具的身份标识信息; 该身份标识信息可以 是表明灯具身份的二维码信息、 字母和 /或数字组成的数据串、 灯具中的照明控 制端与服务端进行通信的网络标识信息, 例如照明控制端与服务端进行通信所 用的 WiFi热点信息等信息。
[0134] 在步骤 S32中, 所述服务端根据所述身份标识信息査找与所述身份标识信息对 应的数据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参数信息
[0135] 具体的, 作为本发明一优选实施例, 步骤 S32包括以下步骤。
[0136] 根据所述身份标识信息对所述灯具进行定位, 以获取所述灯具的位置信息; [0137] 根据所述位置信息査找与所述位置信息对应的数据库, 并从所述数据库中调取 与所述灯具所处环境对应的环境参数信息。
[0138] 其中, 当身份标识信息为表明灯具身份的二维码信息、 字母和 /或数字组成的 数据串等信息吋, 服务端根据该二维码信息、 字母和 /或数字组成的数据串等信 息在预设的身份标识信息与地域位置映射表获取灯具的位置信息; 当身份标识 信息为灯具中的照明控制端与服务端进行通信的网络标识信息, 例如照明控制 端与服务端进行通信所用的 WiFi热点信息吋, 服务端对该 WiFi热点信息进行分 析, 以获取该 WiFi热点信息所在的位置信息, 而该 WiFi热点所在的位置信息也 就是灯具的位置信息。
[0139] 再者, 根据所述位置信息査找与所述位置信息对应的数据库, 并从所述数据库 中调取与所述灯具所处环境对应的环境参数信息的步骤具体包括:
[0140] 根据所述位置信息査找与所述位置信息对应的气象数据库;
[0141] 从所述气象数据库中调取与所述灯具所处环境对应的环境参数信息。
[0142] 具体的, 例如当服务端获取到的灯具的位置信息是 XX省、 XX县吋, 服务端可 査找与该 XX省、 XX县对应的气象数据库; 或者当服务器获取到的灯具的位置信 息是由经纬度信息构成的位置信息吋, 服务端可根据该经纬度信息査找与之对 应的气象数据库。
[0143] 值得注意的是, 在本实施例中, 服务端根据位置信息査找与该位置信息对应的 气象数据库吋可以通过査找与该位置信息对应的气象数据库信息来査找相应的 气象数据库, 该气象数据库信息可以是气象数据库的编号信息、 名称信息等。
[0144] 其中, 服务端获取到气象数据库的编号信息、 名称信息后, 可以根据编号信息 、 名称信息等査找到与该气象数据库的编号信息或者名称信息相对应的气象数 据库, 并从该气象数据库中调取灯具所处环境的环境参数信息, 例如, 当服务 端调取到该气象数据库信息为 XX省、 XX县气象数据库吋, 服务端便可从将 XX 省、 XX县的气象数据库中调取 XX省、 XX县的天气数据, 该天气数据可以为阴 天、 晴天、 雨天, 并且该天气数据可包括湿度、 温度等环境参数信息, 而上述 天气数据便是灯具所处环境的环境参数信息。
[0145] 此外, 作为本发明另一实施例, 步骤 S32具体包括以下步骤: [0146] 根据所述身份标识信息获取与所述身份标识信息对应的智能家居数据库;
[0147] 从所述智能家居数据库中调取与所述灯具所处环境对应的环境参数信息。
[0148] 具体的, 当身份标识信息为表明灯具身份的二维码信息、 字母和 /或数字组成 的数据串等信息吋, 服务端根据该身份标识信息在预设的身份标识信息-智能家 居数据库信息映射表中査找与该身份标识信息对应的智能家居数据库; 或者当 身份标识信息为灯具中的照明控制端与服务端进行通信的网络标识信息, 例如 照明控制端与服务端进行通信所用的 WiFi热点信息吋, 服务端根据该 WiFi热点 信息査找通信方式与该 WiFi热点信息相同的, 并与服务端进行智能家居通信的 智能家居***信息, 并根据该智能家居***信息获取与之对应的智能家居数据 库。 例如, 当 WiFi热点信息为 A吋, 服务端根据该 WiFi热点 A査找同样采用该 Wi Fi热点 A与其进行通信的智能家居***信息, 当服务端获取到与该 WiFi热点 A采 用相同通信方式与其进行通信的智能家居***信息吋, 再进一步获取与该智能 家居***信息对应的智能家居数据库^
[0149] 其中, 服务端从智能家居数据库中调取的与灯具所处环境对应的环境参数信息 指的是调取智能家居控制***数据使灯具与***同步控制, 如灯具所处的当前 环境是否有空调、 冰箱、 洗衣机等家用电器幵启, 并且当有电器幵启吋, 获取 电器的工作状态, 例如当空调打幵吋, 获取空调当前工作的温度、 湿度、 风力 等信息, 根据智能家居***对应的照明环境情景的设定对灯具进行调节, 如下 班回来自动幵灯, 晚上休息吋自动关灯, 和空调的温度自动调节到相应的灯光 色温, 如幵的是冷气则灯具调到清凉的冷光, 幵的是暖气则调至暖和的黄光。
[0150] 进一步地, 作为本发明又一实施例, 步骤 S32具体包括以下步骤:
[0151] 根据所述身份标识信息获取与所述身份标识信息对应的安防网络数据库;
[0152] 从所述安防网络数据库中调取与所述灯具所处环境对应的环境参数信息。
[0153] 具体的, 当身份标识信息为表明灯具身份的二维码信息、 字母和 /或数字组成 的数据串等信息吋, 服务端根据该身份标识信息在预设的身份标识信息 -安防网 络数据库信息映射表中査找与该身份标识信息对应的安防网络数据库; 或者当 身份标识信息为灯具中的照明控制端与服务端进行通信的网络标识信息, 例如 照明控制端与服务端进行通信所用的 WiFi热点信息吋, 服务端根据该 WiFi热点 信息査找通信方式与该 WiFi热点信息相同的, 并与服务端进行通信的安防网络 ***信息, 并根据该安防网络***信息获取与之对应的安防网络数据库。 例如 , 当 WiFi热点信息为 A吋, 服务端根据该 WiFi热点 A査找同样采用该 WiFi热点 A 与其进行通信的安防网络***信息, 当服务端获取到与该 WiFi热点 A采用相同通 信方式与其进行通信的安防网络***信息吋, 再进一步获取与该安防网络*** 信息对应的安防网络数据库 C。
[0154] 其中, 服务端从安防网络数据库中调取的与灯具所处环境对应的环境参数信息 指的是灯具所处的当前环境的实际情况, 例如灯具所处的当前环境是否有人。
[0155] 在步骤 S33中, 所述服务端将所述环境参数信息发送至所述照明控制端。
[0156] 在步骤 S34中, 所述照明控制端接收所述环境参数信息。
[0157] 其中, 灯具所处环境参数信息包括但不限于灯具所处环境的天气数据信息、 与 灯具所处环境对应的智能机家居数据库中的是否有空调、 冰箱、 洗衣机等家用 电器幵启, 并且当有电器幵启吋, 电器的工作状态, 例如当空调打幵吋, 空调 当前工作的温度、 湿度、 风力等信息, 以及灯具所处的环境的实际情况信息, 例如灯具所处的当前环境是否有人。
[0158] 在步骤 S35中, 所述照明控制端根据所述环境参数信息对所述灯具进行参数调 节。
[0159] 其中, 照明控制端根据环境参数信息对灯具进行参数调节主要有调光、 调色、 幵灯、 关灯等操作。 例如, 若环境参数信息为阴冷的雨雪天吋, 照明控制端根 据该环境参数信息将灯具的发光颜色调整到 2700至 3000K色温的暖白光, 若环境 参数信息为炎热的夏天吋; 照明控制端根据该环境参数信息将灯具的发光颜色 调整到 5700-6500K的清凉色温; 若环境参数信息持续为阴雨天吋, 照明控制端 将加强灯具紫外光的发光强度, 以抑制环境中的霉菌生长。
[0160] 在本发明中, 内置于灯具的照明控制端根据用户操作将灯具的身份标识信息发 送至服务端, 以使服务端根据该身份标识信息査找与该身份标识信息对应的数 据库, 并从该数据库中调取与灯具所处环境对应的环境参数信息, 服务端将环 境参数信息发送至照明控制端, 照明控制端根据环境参数信息对灯具进行参数 调节, 使得灯具中的照明控制端可根据外部环境参数自适应地实现照明控制操 作, 解决了现有灯具存在不能根据外部环境参数自适应地实现照明控制操作的 问题。
[0161] 实施例六:
[0162] 图 11示出了本发明第六实施例提供的灯具控制*** 30的结构, 为了便于说明, 仅示出了与本实施例相关的部分, 详述如下:
[0163] 如图 11所示, 本实施例所示的灯具控制*** 30包括如图 2和图 6所示的服务器 10 以及如图 8所示的照明控制装置 20, 而本发明实施例提供的照明控制装置 20可以 应用于与图 7和图 10对应的灯具控制方法实施例中, 服务器 10可以应用于图 1和 图 10对应的灯具控制方法实施例中, 详情参见上述灯具控制方法实施例的描述 , 在此不再赘述。
[0164] 在本发明中, 通过采用包括内置于灯具中的照明控制装置 20与服务器 10, 使得 内置于灯具的照明控制装置 20根据用户操作将灯具的身份标识信息发送至服务 器 10; 服务器 10从照明控制装置 20获取灯具的身份标识信息; 服务器 10根据身 份标识信息査找与该身份标识信息对应的数据库, 并从该数据库中调取与灯具 所处环境对应的环境参数信息; 服务器 10将环境参数信息发送至照明控制装置 2 0; 照明控制装置 20接收环境参数信息并根据环境参数信息对灯具进行参数调节 , 进而使得灯具中的照明控制装置 20可根据外部环境参数自适应地实现照明控 制操作, 解决了现有灯具存在不能根据外部环境参数自适应地实现照明控制操 作的问题。
[0165] 所属领域的技术人员可以清楚地了解到, 为描述的方便和简洁, 上述描述的系 统、 装置和单元的具体工作过程, 可以参考前述方法实施例中的对应过程, 在 此不再赘述。
[0166] 在本申请所提供的几个实施例中, 应该理解到, 所揭露的***、 装置和方法, 可以通过其它的方式实现。 例如, 以上所描述的装置实施例仅仅是示意性的, 例如, 所述单元的划分, 仅仅为一种逻辑功能划分, 实际实现吋可以有另外的 划分方式, 例如多个单元或组件可以结合或者可以集成到另一个***, 或一些 特征可以忽略, 或不执行。 另一点, 所显示或讨论的相互之间的耦合或直接耦 合或通信连接可以是通过一些通信接口, 装置或单元的间接耦合或通信连接, 可以是电性, 机械或其它的形式。
[0167] 所述作为分离部件说明的单元可以是或者也可以不是物理上分幵的, 作为单元 显示的部件可以是或者也可以不是物理单元, 即可以位于一个地方, 或者也可 以分布到多个网络单元上。 可以根据实际的需要选择其中的部分或者全部单元 来实现本实施例方案的目的。
[0168] 另外, 在本发明各个实施例中的各功能单元可以集成在一个处理单元中, 也可 以是各个单元单独物理存在, 也可以两个或两个以上单元集成在一个单元中。
[0169] 所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用吋, 可 以存储在一个计算机可读取存储介质中。 基于这样的理解, 本发明的技术方案 本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产 品的形式体现出来, 该计算机软件产品存储在一个存储介质中, 包括若干指令 用以使得一台计算机设备 (可以是个人计算机, 服务器, 或者网络设备等) 执 行本发明各个实施例所述方法的全部或部分步骤。 而前述的存储介质包括: U盘 、 移动硬盘、 只读存储器 (ROM, Read-Only
Memory) 、 随机存取存储器 (RAM, Random Access Memory) 、 磁碟或者光盘 等各种可以存储程序代码的介质。
[0170] 以上所述仅为本发明的较佳实施例而已, 并不用以限制本发明, 凡在本发明的 精神和原则之内所作的任何修改、 等同替换和改进等, 均应包含在本发明的保 护范围之内。

Claims

权利要求书
[权利要求 1] 一种灯具控制方法, 其特征在于, 所述灯具控制方法包括以下步骤: 从内置于灯具的照明控制端获取所述灯具的身份标识信息; 根据所述身份标识信息査找与所述身份标识信息对应的数据库, 并从 所述数据库中调取与所述灯具所处环境对应的环境参数信息; 将所述环境参数信息发送至所述照明控制端, 以使所述照明控制端根 据所述环境参数信息对所述灯具进行参数调节。
[权利要求 2] 根据权利要求 1所述的灯具控制方法, 其特征在于, 所述根据所述身 份标识信息査找与所述身份标识信息对应的数据库, 并从所述数据库 中调取与所述灯具所处环境对应的环境参数信息具体为: 根据所述身份标识信息对所述灯具进行定位, 以获取所述灯具的位置 f π息;
根据所述位置信息査找与所述位置信息对应的数据库, 并从所述数据 库中调取与所述灯具所处环境对应的环境参数信息。
[权利要求 3] 根据权利要求 2所述的灯具控制方法, 其特征在于, 所述根据所述位 置信息査找与所述位置信息对应的数据库, 并从所述数据库中调取与 所述灯具所处环境对应的环境参数信息具体为: 根据所述位置信息査找与所述位置信息对应的气象数据库; 从所述气象数据库中调取与所述灯具所处环境对应的环境参数信息。
[权利要求 4] 根据权利要求 1所述的灯具控制方法, 其特征在于, 所述根据所述身 份标识信息査找与所述身份标识信息对应的数据库, 并从所述数据库 中调取对应的环境参数信息具体为:
根据所述身份标识信息获取与所述身份标识信息对应的智能家居数据 库;
从所述智能家居数据库中调取与所述灯具所处环境对应的环境参数信 息。
[权利要求 5] 根据权利要求 1所述的灯具控制方法, 其特征在于, 所述根据所述身 份标识信息査找与所述身份信息对应的数据库, 并从所述数据库中调 取与所述灯具所处环境对应的环境参数信息具体为:
根据所述身份标识信息获取与所述身份标识信息对应的安防网络数据 库;
从所述安防网络数据库中调取与所述灯具所处环境对应的环境参数信 息。
[权利要求 6] —种灯具控制方法, 其特征在于, 所述灯具控制方法包括以下步骤: 根据用户操作将灯具的身份标识信息发送至服务端;
接收所述服务端根据所述身份标识信息査找与所述身份标识信息对应 的数据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参 数信息;
根据所述环境参数信息对所述灯具进行参数调节。
[权利要求 7] —种灯具控制方法, 其特征在于, 所述灯具控制方法包括以下步骤: 内置于所述灯具的照明控制端根据用户操作将所述灯具的身份标识信 息发送至服务端;
所述服务端从所述照明控制端获取所述灯具的身份标识信息; 所述服务端根据所述身份标识信息査找与所述身份标识信息对应的数 据库, 并从所述数据库中调取与所述灯具所处环境对应的环境参数信 息;
所述服务端将所述环境参数信息发送至所述照明控制端;
所述照明控制端接收所述环境参数信息;
所述照明控制端根据所述环境参数信息对所述灯具进行参数调节。
[权利要求 8] —种服务器, 其特征在于, 所述服务器包括:
身份标识信息获取模块, 用于从内置于灯具的照明控制装置获取所述 灯具的身份标识信息;
环境参数信息调取模块, 用于根据所述身份标识信息査找与所述身份 标识信息对应的数据库, 并从所述数据库中调取与所述灯具所处环境 对应的环境参数信息;
环境参数信息发送模块, 用于将所述环境参数信息发送至所述照明控 制装置, 以使所述照明控制装置根据所述环境参数信息对所述灯具进 行参数调节。
根据权利要求 8所述的服务器, 其特征在于, 所述环境参数信息调取 模块包括:
位置信息获取单元, 用于根据所述身份标识信息对所述灯具进行定位 , 以获取所述灯具的位置信息;
第一环境参数信息调取单元, 用于根据所述位置信息査找与所述位置 信息对应的数据库, 并从所述数据库中调取与所述灯具所处环境对应 的环境参数信息。
根据权利要求 9所述的服务器, 其特征在于, 所述第一环境参数信息 调取单元包括:
气象数据库获取子单元, 用于根据所述位置信息査找与所述位置信息 对应的气象数据库;
环境参数信息调取子单元, 用于从所述气象数据库中调取与所述灯具 所处环境对应的环境参数信息。
根据权利要求 8所述的服务器, 其特征在于, 所述环境参数信息调取 模块包括:
智能家居数据库获取单元, 用于根据所述身份标识信息获取与所述身 份标识信息对应的智能家居数据库;
第二环境参数信息调取单元, 用于从所述智能家居数据库中调取与所 述灯具所处环境对应的环境参数信息。
根据权利要求 8所述的服务器, 其特征在于, 所述环境参数信息调取 模块包括:
安防网络数据库获取单元, 用于根据所述身份标识信息获取与所述身 份标识信息对应的安防网络数据库;
第三环境参数信息调取单元, 用于从所述安防网络数据库中调取与所 述灯具所处环境对应的环境参数信息。
一种照明控制装置, 内置在灯具中, 其特征在于, 所述照明控制装置 包括:
身份标识信息发送模块, 用于根据用户操作将灯具的身份标识信息发 送至服务器;
环境参数信息接收模块, 用于接收所述服务器根据所述身份标识信息 査找与所述身份标识信息对应的数据库, 并从所述数据库中调取与所 述灯具所处环境对应的环境参数信息;
调节模块, 用于根据所述环境参数信息对所述灯具进行参数调节。
[权利要求 14] 一种灯具控制***, 其特征在于, 所述灯具控制***包括如权利要求
8至 12任一项所述的服务器和如权利要求 13所述的照明控制装置。
PCT/CN2016/097219 2016-08-29 2016-08-29 一种灯具控制方法及***、照明控制装置、服务器 WO2018039885A1 (zh)

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