WO2016011583A1 - 传统家电智能化节能控制***及方法 - Google Patents

传统家电智能化节能控制***及方法 Download PDF

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Publication number
WO2016011583A1
WO2016011583A1 PCT/CN2014/082639 CN2014082639W WO2016011583A1 WO 2016011583 A1 WO2016011583 A1 WO 2016011583A1 CN 2014082639 W CN2014082639 W CN 2014082639W WO 2016011583 A1 WO2016011583 A1 WO 2016011583A1
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module
central processing
home appliance
processing module
traditional
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PCT/CN2014/082639
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English (en)
French (fr)
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曾国辉
林东腾
何帆
唐林
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曾国辉
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Priority to PCT/CN2014/082639 priority Critical patent/WO2016011583A1/zh
Publication of WO2016011583A1 publication Critical patent/WO2016011583A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]

Definitions

  • the invention relates to a home appliance control system, in particular to a traditional home appliance intelligent energy-saving control system and method.
  • the existing Chinese patent CN02145878.2 discloses a system for remote wireless remote control of traditional home appliances, which has the following defects: 1. In the absence of Wifi and mobile internet, in order to achieve remote monitoring, a hub module needs to be provided. And connect it to the public telephone network and the international network.
  • connection between the hub module and the above two networks can only be a wired connection, but in order to implement wireless control at home, it is necessary to separately set a remote control unit through infrared or The wireless and the line module are connected and communicated; for the same reason, in order to facilitate the installation of the sensing module in a suitable position, the sensing module is also separated from the line module and connected to the line module through a built-in infrared or wireless module, not only the module is composed Complex, and each module has a built-in microprocessor control unit, random access memory, read-only memory and wireless transceiver module.
  • the repeated configuration of these devices and the complexity of the system make the system cost double. . 2, the system only realizes the remote control function, the control subject is still human, the degree of intelligence is low, and automatic energy saving cannot be realized.
  • the existing Chinese patent CN200810235276.2 discloses a digital home appliance system and a control method thereof, which have the following defects: 1. It is not applicable to the traditional non-digital home appliances which still occupy the absolute mainstream; 2. Similarly, the system only realizes the remote control function. The main body of the control is still human, and the degree of intelligence is low, and automatic energy saving cannot be achieved.
  • the technical problem to be solved by the present invention is to provide an intelligent energy-saving control system and method for a conventional household appliance that is simple and easy to use and has wide applicability.
  • the technical solution adopted by the present invention to solve the technical problem thereof is to provide a traditional household appliance intelligent energy-saving control system
  • the system includes a central processing module, a sensing module, a transmitting module, and a network communication module connected to the central processing module; wherein:
  • the network communication module is configured to communicate with a cloud server or a client;
  • the sensing module is configured to sense an environment state of a traditional home appliance, and send the sensed environment state data to the central processing module;
  • the central processing module analyzes the received environmental state data and/or external signaling transmitted via the network communication module, and generates a control instruction for performing corresponding control on the traditional home appliance;
  • the transmitting module sends the control command generated by the central processing module to the corresponding traditional home appliance to implement corresponding control.
  • the sensing module includes a human body motion sensor for sensing a human activity state of an environment in which the traditional home appliance is located, and transmitting the sensed human activity state data to the central processing module; the central processing module is configured according to The human activity state data generation control instruction controls the startup or shutdown of the conventional home appliance.
  • control system further comprises a driving device connected to the central processing module, the sensing module being disposed on the driving device and driven by the driving device to detect whether there is a stationary human body in the environment.
  • the sensing module includes a home appliance state monitoring sensor connected to the central processing module, configured to monitor actual operating state information of the traditional home appliance, and send the monitored actual operating state information to the central processing Module
  • the central processing module determines, according to the received actual operating state information, in conjunction with the control instruction, whether to execute the control instruction.
  • the central processing module, the sensing module, the transmitting module and the network communication module are integrated in a housing.
  • the housing is further provided with the central processing module controlling and driving the housing to rotate to transmit the transmitting module. Aligning the drive module of the conventional home appliance.
  • control system further comprises a receiving module for performing code matching with the conventional home appliance or a conventional remote controller.
  • the invention also provides an intelligent energy-saving control method for a traditional household appliance, comprising the following steps:
  • the sensing module senses an environmental state of the traditional home appliance, and sends the sensed environmental state data to the central processing module; and/or receives external signaling to the central processing module through the network communication module;
  • the central processing module generates a control instruction for performing corresponding control on the traditional home appliance according to the environmental state data and/or external signaling;
  • the transmitting module sends the control command generated by the central processing module to the corresponding traditional home appliance to implement corresponding control.
  • the sensing module senses the human activity state of the environment in which the traditional home appliance is located, and transmits the sensed human activity state data to the central processing module;
  • the central processing module analyzes and processes the received human activity state data, determines whether there is a human body in the environment where the traditional home appliance is located, and generates a control command according to the human activity state to control the startup of the traditional home appliance. Or close.
  • the central processing module issues a driving command to the driving device, and the sensing module is in the The driving device drives the mobile device to detect whether there is a stationary human body in the environment where the conventional home appliance is located, and the central processing module generates a control command according to the sensed result of the driven sensing module to control the startup or shutdown of the traditional home appliance.
  • the sensing module further monitors an actual running state of the traditional home appliance, and sends the monitored actual operating state information to the central processing module;
  • the central processing module determines, according to the received actual operating state information, in combination with the control instruction, whether to execute the control instruction.
  • the transmitting module is aligned with the receiving end of the corresponding conventional home appliance under the driving of the driving module to realize signal docking.
  • the method further includes the step S4: the central processing module further sends the received environmental state data and the determination result to the cloud server or the client through the network communication module; and/or,
  • the transmitting module feeds back the information that the traditional home appliance performs the corresponding function to the central processing module; the central processing module sends the received feedback information to the cloud server through the network communication module or Client.
  • the traditional household appliance intelligent energy-saving control system of the invention realizes the intelligent energy-saving control of the traditional household appliance through the cooperation of the central processing module, the sensing module, the transmitting module and the network communication module, and is simple and easy to use and has wide applicability; It can be connected to the control system through a client such as a mobile phone or a computer or a cloud server to know the running status of the traditional home appliance in real time and to control the traditional home appliance.
  • a client such as a mobile phone or a computer or a cloud server to know the running status of the traditional home appliance in real time and to control the traditional home appliance.
  • FIG. 1 is a logic diagram of a conventional home appliance intelligent energy-saving control system according to a first embodiment of the present invention
  • FIG. 2 is a logic diagram of a conventional home appliance intelligent energy saving control system according to a second embodiment of the present invention.
  • a conventional home appliance intelligent energy-saving control system includes a central processing module 1, a sensing module 2, a transmitting module 4, and a network communication module 3 connected to the central processing module 1; :
  • the network communication module 3 is configured to communicate with the cloud server or the client 10;
  • the sensing module 2 is configured to sense the environment state of the traditional home appliance 20, and send the sensed environment state data to the central processing module 1;
  • the central processing module 1 analyzing and processing the received environmental state data and/or external signaling transmitted via the network communication module 3, and generating a control instruction for performing corresponding control on the conventional home appliance 20;
  • the transmitting module 4 transmitting the control command generated by the central processing module 1
  • the corresponding conventional home appliance 20 is controlled accordingly.
  • the client may be a device such as a mobile phone or a computer, and may be directly connected to the network communication module 3 by wireless or wired, or further connected to the network communication module 3 through a cloud server and/or a router.
  • the conventional home appliance 20 includes an air conditioner, an electric fan, a fan, a television, a DVD, a lighting, and the like, which are remotely controllable.
  • the environmental state of the conventional home appliance sensed by the sensing module 2 includes one or more of temperature, humidity, brightness, and human activity state.
  • the sensing module 2 can also be used to sense outdoor climate data, such as one or more of outdoor temperature, humidity, and brightness, and send the sensed data to the central processing module 1.
  • the network communication module 3 can also send the environmental state data and the outdoor climate data sensed by the sensing module 2 to the cloud server or the client 10 to implement the monitoring function of the user.
  • the external signaling transmitted by the cloud server or client 10 to the central processing module 1 through the network communication module 3 includes external control commands for controlling the corresponding functions of the conventional home appliance 20, obtaining environmental status data of the conventional home appliance 20, outdoor climate data, and location information of the user. One or more of local climate information.
  • the sensing module 2 includes a human body motion sensor 21 for sensing the human activity state of the environment in which the conventional home appliance 20 is located, and transmitting the sensed human activity state data to the central processing module 1.
  • the central processing module 1 generates a control command according to the human body activity state data to control the startup or shutdown of the conventional home appliance.
  • the human motion sensor 21 can be a multi-beam PIR (Passive Infrared Detector) or a Doppler sensor.
  • the human body motion sensor 21 senses a human body activity state in the room, and transmits the sensed human body activity state data to the central processing module 1, the central processing module 1 Analyze and process the received human activity state data to determine whether there is a human body in the room; when it is judged that there is no human body in the room, the central processing module 1 sends a control command to the transmitting module 4 to turn off the air conditioner to turn off the air conditioner in operation to achieve the purpose of energy saving.
  • the central processing module 1 does not need to send a control command to the air conditioner.
  • the human body motion sensor 21 senses the human body activity state in the room, and transmits the sensed human activity state data to the central processing module 1, the central processing module. 1 Analyze and process the received human activity state data to determine whether there is a human body in the room; when it is determined that there is a human body in the room, the central processing module 1 sends a control command to the transmitting module 4 to start the air conditioner; when it is judged that there is no human body in the room, the central processing module 1 No need to send control commands to the conventional home appliance 20.
  • the control system further includes a driver connected to the central processing module 1.
  • the device 5, the sensing module 2 is disposed on the driving device 5 and driven by the driving device 5 to detect whether there is a stationary human body in the environment. Through the setting of the driving device 5, the sensing module 2 is driven to detect the activity of the stationary human body, and the presence of the human body can still be sensed when the human body is stationary, so as to transmit the accurate human body activity state to the central processing module 1.
  • the driving device 5 can be a device such as a micro motor.
  • the central processing module 1, the sensing module 2, the transmitting module 4, and the network communication module 3 are integrated in a single housing. Further, a driving module (not shown) may be disposed on the housing, and the driving module is controlled by the central processing module 1 to drive the housing to rotate to emit Module 4 is aligned with conventional appliance 20.
  • the drive module 5 may include a motor or a motor or the like.
  • the module 4 includes one or more transmitting ends for signal interfacing with the receiving end of the conventional home appliance 20, and the transmitting end is located on the housing.
  • the plurality of transmitting ends may be distributed at different positions of the housing so as to be signal-coupled with a plurality of conventional home appliances 20 distributed around the housing.
  • the transmitting end is an infrared transmitting end, which is used for transmitting an infrared signal, and realizes signal docking with the infrared receiving end of the conventional home appliance 20.
  • the control system further includes a receiving module 6 for performing code matching with the conventional home appliance 20 or the conventional remote controller. .
  • the central processing module 1 calls the control code corresponding to the conventional home appliance 20 and stores it.
  • the receiving module 6 can include one or more At the receiving end, the receiving end is an infrared receiving end for receiving an infrared signal.
  • control method includes the following steps:
  • the sensing module 2 senses an environmental state in which the conventional home appliance 20 is located, and transmits the environmental state data to the central processing module 1; and/or receives external signaling to the central processing module 1 through the network communication module 3.
  • the environmental state includes one or more of temperature, humidity, brightness, and human activity state in the environment where the conventional home appliance 20 is located.
  • the sensing module 2 senses the human activity state of the environment where the traditional home appliance 20 is located through the human body motion sensor 21, and transmits the sensed human activity state data to the central processing module 1.
  • the central processing module 1 generates a control instruction for correspondingly controlling the traditional home appliance according to the environmental state data and/or the external signaling.
  • the central processing module 1 analyzes and processes the received human activity state data, determines whether there is a human body in the environment where the conventional home appliance 20 is located, and generates a control command according to the human body activity state to control the startup or shutdown of the conventional home appliance 20.
  • the central processing module 1 sends a control command to the transmitting module 4 to turn off the traditional home appliance 20 to turn off the running traditional home appliance 20 to achieve the purpose of energy saving; when it is determined that there is a human body in the environment, the center The processing module 1 sends a control command to the transmitting module 4 to activate the conventional home appliance 20, or the central processing module 1 does not need to send a control command to the conventional home appliance 20 when the conventional home appliance 20 is in an operating state.
  • step S1 when the test module 2 is stationary and senses that the environment of the conventional home appliance 20 is free from human body activity, the central processing module 1 issues a drive command to the drive device 5, and the sensor module 2 is driven by the drive device 5 to detect the environment in which the home appliance 20 is located (such as a room). Whether there is a stationary human body in the indoor environment, the central processing module 1 generates a control command according to the sensing result of the driven sensing module 2 to control the startup or shutdown of the conventional home appliance 20.
  • the sensing module 2 performs sensing under the movement, so that when there is a stationary human body, the sensing module 2 is active with respect to the stationary human body, so that it is possible to accurately sense whether there is a human body to accurately determine the human body activity state. Send to central processing module 1.
  • the transmitting module 4 sends the control command generated by the central processing module 1 to the corresponding traditional home appliance 20 to implement corresponding control.
  • step S3 the control command is sent by the central processing module 1 to the transmitting module 4, and the transmitting module 4 transmits an infrared signal through the transmitting end, and the conventional home appliance 20 starts or turns off the corresponding function after receiving. Further, the transmitting module 4 is aligned with the receiving end of the corresponding conventional home appliance 20 under the rotation of the driving module 5 to realize signal docking.
  • control method further includes the step S4: the central processing module 1 further sends the received environmental state data and the determination result to the cloud server or the client 10 through the network communication module 3, and the monitoring function of the user can be implemented. And/or, after step S3, the transmitting module 4 feeds back the information of the remote control conventional home appliance 20 to perform the corresponding function to the central processing module 1; the central processing module 1 sends the received feedback information to the cloud server or the client through the network communication module 3. Terminal 10 implements user monitoring functions.
  • the central processing module 1 can also be connected to the cloud server or the client 10 through the network communication module 3, and can receive external signaling sent by the cloud server or the client 10.
  • the external signaling may include one or more of external control commands for controlling the corresponding functions of the conventional home appliance 20, obtaining environmental state data of the conventional home appliance 20, outdoor climate data, location information of the user, local climate information, and the like.
  • the central processing module 1 analyzes the received external signaling (such as an instruction sent by the client to turn on or off a certain home appliance 20), and sends a control command to the transmitting module 4 according to the analysis result to control the corresponding conventional home appliance 20 Start or shut down.
  • the user can send an external control command sent by the client to activate the traditional home appliance 20, such as an air conditioner, to the central processing module 1.
  • the central processing module 1 controls the air conditioning operation through the transmitting module 4, so that the user can adjust the air conditioner through the room before going home. To the comfortable temperature, this operation is also applicable to a conventional home appliance 20 such as an electric fan or a fan.
  • the traditional home appliance intelligent energy-saving control system includes a central processing module 1, a sensing module 2, a transmitting module 4, and a network communication module 3 connected to the central processing module 1; wherein:
  • the network communication module 3 is configured to communicate with the cloud server or the client 10;
  • the sensing module 2 is configured to sense the environment state of the traditional home appliance 20, and send the sensed environment state data to the central processing module 1;
  • the central processing module 1 analyzing and processing the received environmental state data and/or external signaling transmitted via the network communication module 3, and generating a control instruction for performing corresponding control on the conventional home appliance 20;
  • the transmitting module 4 transmitting the control command generated by the central processing module 1
  • the corresponding conventional home appliance 20 is controlled accordingly.
  • the client may be a device such as a mobile phone or a computer, and may be directly connected to the network communication module 3 by wireless or wired, or further connected to the network communication module 3 through a cloud server and/or a router.
  • the conventional home appliance 20 includes an air conditioner, an electric fan, a fan, a television, a DVD, a lighting, and the like, which are remotely controllable.
  • the environmental state of the conventional home appliance sensed by the sensing module 2 includes one or more of temperature, humidity, brightness, and human activity state.
  • the sensing module 2 can also be used to sense outdoor climate data, such as one or more of outdoor temperature, humidity, and brightness, and send the sensed data to the central processing module 1.
  • the network communication module 3 can also send the environmental state data and the outdoor climate data sensed by the sensing module 2 to the cloud server or the client 10 to implement the monitoring function of the user.
  • the external signaling transmitted by the cloud server or client 10 to the central processing module 1 through the network communication module 3 includes external control commands for controlling the corresponding functions of the conventional home appliance 20, obtaining environmental status data of the conventional home appliance 20, outdoor climate data, and location information of the user. One or more of local climate information.
  • the central processing module 1, the sensing module 2, the transmitting module 4, and the network communication module 3 are integrated in a single housing. Further, a driving module (not shown) may be disposed on the housing, and the driving module is controlled by the central processing module 1 to rotate the driving housing to align the transmitting module 4 with the conventional home appliance 20.
  • the drive module 5 can be a device such as a micro motor.
  • the transmitting module 4 includes one or more transmitting ends for signal interfacing with the receiving end of the conventional home appliance 20, and the transmitting end is located on the housing.
  • the plurality of transmitting ends may be distributed at different positions of the housing so as to be signal-coupled with a plurality of conventional home appliances 20 distributed around the housing.
  • the transmitting end is an infrared transmitting end, which is used for transmitting an infrared signal, and realizes signal docking with the infrared receiving end of the conventional home appliance 20.
  • the control system further includes a receiving module 6 for performing code matching with the conventional home appliance 20 or the conventional remote controller. .
  • the central processing module 1 calls the control code corresponding to the conventional home appliance 20 and stores it.
  • the receiving module 6 can include one or more At the receiving end, the receiving end is an infrared receiving end for receiving an infrared signal.
  • the sensing module 2 includes a home appliance state monitoring sensor 22 connected to the central processing module 1 for monitoring actual operating state information of the conventional home appliance 20, and transmitting the monitored actual operating state information to the central processing module. 1.
  • the central processing module 1 determines and executes whether to send a control command according to the received actual operating state information in combination with the control command.
  • the home appliance condition monitoring sensor 22 may include one or more of an infrared sensor, a vibration sensor, and a light sensor, and the conventional home appliance 20 may be obtained by monitoring one or more of a temperature change, a motion state, or a brightness change of the conventional home appliance 20.
  • the appliance status monitoring sensor 22 can be a single beam PIR (Passive Infrared Detector).
  • the central processing module 1 determines whether the temperature exceeds a preset value (eg, 26 degrees, etc.) and combines The home appliance state monitoring sensor 22 monitors the traditional home appliance 20 such as the air conditioner operating state information.
  • a preset value eg, 26 degrees, etc.
  • the central processing module 1 sends a control command to the transmitting module 4 to adjust the air conditioning operating temperature, so as to The indoor environment is adjusted to a preset value or below; if the air conditioner is in the off state, the central processing module 1 sends a control command to the transmitting module 4 to activate the air conditioner.
  • the sensing module 2 may further include a human body motion sensor 21, which may be referred to the control system of the first embodiment shown in FIG. 1 above; the central processing module 1 may be combined with the conventional home appliance 20
  • the actual running status information and control commands determine and execute whether to send control commands. For example, when the central processing module 1 starts the corresponding conventional home appliance 20 according to the human body activity state information generation control instruction, it is determined whether the corresponding conventional home appliance 20 is in operation according to the actual operating state information of the conventional home appliance 20; when the central processing module 1 determines the traditional home appliance When in operation, the central processing module 1 will not control the corresponding conventional home appliance 20.
  • the central processing module 1 determines that the conventional home appliance 20 is in the off state, the central processing module 1 sends a control command to the transmitting module 4 to activate the corresponding conventional home appliance. 20. Conversely, when the central processing module 1 generates a control command according to the human body activity state information to turn off the corresponding conventional home appliance 20, it is determined according to the actual operating state information of the conventional home appliance 20 whether the corresponding conventional home appliance 20 is in operation; when the central processing module 1 judges the tradition When the home appliance 20 is in operation, the central processing module 1 sends a control command to the transmitting module 4 to turn off the corresponding conventional home appliance 20. When the central processing module 1 determines that the conventional home appliance 20 is in the off state, the central processing module 1 will not control the corresponding conventional home appliance 20 .
  • the traditional home appliance intelligent energy-saving control method of the second embodiment of the present invention is implemented by the control system of the second embodiment.
  • the control method can refer to the traditional home appliance intelligent energy-saving control method of the first embodiment.
  • the sensing module 2 also monitors the actual operating state of the conventional home appliance 20, and transmits the monitored actual operating state information to the central processing module 1; in step S2, The central processing module 1 determines and executes whether to send a control command according to the received actual operating state information in combination with the control command.
  • step S1 the actual operating state of the conventional home appliance 20 is monitored by the home appliance state monitoring sensor 22 of the sensing module 2.
  • the central processing module 1 can also send the actual running status information and the determination result of the received traditional home appliance 20 to the cloud server or the client 10 through the network communication module 3 to implement the monitoring function of the user.
  • the sensing module 1 also senses the state of one or more of the temperature, the humidity, the brightness, and the like of the environment in which the conventional home appliance 20 is located, and the central processing module 1 analyzes and processes the received environmental state data. And determining whether the environmental status data of the traditional home appliance 20 is within a preset value range, and sending a control instruction to the transmitting module 4 according to the determination result to control whether the corresponding traditional home appliance 20 is turned on or off.
  • the sensing module 2 sends the sensed ambient temperature to the central processing module 1 , and the central processing module 1 determines whether the temperature exceeds a preset value (eg, 26 degrees, etc.), and sends a control command to the transmitting module 4 to activate the conventional Home appliances 20 (such as air conditioning).
  • a preset value eg, 26 degrees, etc.
  • the central processing module 1 determines whether the temperature exceeds a preset value (such as 26 degrees, etc.)
  • it also combines the actual operating state information of the air conditioner monitored by the home appliance state monitoring sensor 22, when the ambient temperature exceeds a preset value and the air conditioner is in operation.
  • the central processing module 1 sends a control command to the transmitting module 4 to adjust the operating temperature of the air conditioner to adjust the ambient temperature to a preset value or below; if the air conditioner is in the off state, the central processing module 1 sends a control command to the transmitting module 4 to activate the air conditioner.
  • the traditional home appliance 20 when there is no person in the room and the conventional home appliance 20 is not turned off, the traditional home appliance 20 can be intelligently turned off by the cooperation of the modules in the control system, thereby achieving energy saving; Moreover, the user can also connect with the control system through a client such as a mobile phone or a computer or a cloud server, and can know the running state of the traditional home appliance in real time and can control the traditional home appliance. Control system and method Easy to use, suitable for a wide range of traditional home appliances and environments, with wide applicability.

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Abstract

一种传统家电智能化节能控制***及方法。传统家电智能化节能控制***包括中央处理模块(1),与中央处理模块(1)连接的感测模块(2)、发射模块(4)以及网络通讯模块(3);所述网络通讯模块(3)用于与云端服务器或客户端(10)进行通讯;所述感测模块(2)用于感测传统家电(20)所在环境状态,并将感测到的环境状态数据发送至所述中央处理模块(1);所述中央处理模块(1)分析处理接收到的所述环境状态数据和/或经由所述网络通讯模块(3)传过来的外部信令后生成对所述传统家电(20)进行相应控制的控制指令;所述发射模块(4)将所述中央处理模块(1)生成的控制指令发送至相应的所述传统家电(20)实现相应的控制。实现传统家电的智能化节能控制,简单易用、适用性广。

Description

传统家电智能化节能控制***及方法 技术领域
本发明涉及一种家电控制***,尤其涉及一种 传统家电智能化节能控制***及方法 。
背景技术
传统家电虽然一般都可以被遥控,但是遥控家电都只能通过人工实现,因人外出忘了关家电而造成能源浪费的现象几乎无法避免。另外,客厅等场所往往集中了多种家电,仅仅电视墙附近就有电视、机顶盒、DVD、功放等设备,每种设备都有自己的遥控器,开个电视都必须用两个以上遥控器,操作起来很繁琐。尽管现在市面上出现了智能家电,比如海尔的天尊空调,但是智能家电的价格是传统家电的好几倍,对于已经在使用传统家电的家庭而言,把完好的传统家电处理掉购买新的智能家电是不现实的。
现有中国专利CN02145878.2公开了一种可对传统家电进行远程无线遥控的***,其中存在以下缺陷:1、在没有Wifi和移动互联网的情况下,为实现远程监控,需设置有集线模块,并使之与公用电话网络和国际网络相连接,该集线模块与上述两个网络的连接只能是有线连接,但为了在家里实现无线控制,需要再独立设置一个远程遥控单元通过红外或无线与集线模块进行连接通讯;同样的原因,为了方便将感知模块安装在合适位置,该感知模块也从集线模块剥离出来并通过内置红外或无线模块与集线模块连接通讯,不仅模块组成复杂,而且每个模块都内置有独立的微处理器控制单元、随机存取存储器、只读存储器和无线收发模块等,这些器件的重复配置以及***组成的复杂化都导致***成本的成倍攀升。2、***仅仅实现远程操控功能,操控主体还是人,智能化程度低,无法实现自动节能。
现有中国专利CN200810235276.2公开了一种数字家电***及其控制方法,其存在以下缺陷:1、对仍占绝对主流的传统非数字家电不适用;2、同样的,***仅仅实现远程操控功能,操控主体还是人,智能化程度低,无法实现自动节能。
此外,虽然美国诞生了全智能的节能温控器nest,但它只适用于美国家庭的24V供电的中央空调***,而且该温控器与中央空调***是有线连接。
发明内容
本发明要解决的技术问题在于,提供一种简单易用、适用性广的传统家电智能化节能控制***及方法。
本发明解决其技术问题所采用的技术方案是:提供一种传统家电智能化节能控制*** ,包括中央处理模块,与所述中央处理模块连接的感测模块、发射模块、以及网络通讯模块;其中:
所述网络通讯模块用于与云端服务器或客户端进行通讯;
所述感测模块,用于感测传统家电所在环境状态,并将感测到的环境状态数据发送至所述中央处理模块;
所述中央处理模块分析处理接收到的所述环境状态数据和/或经由所述网络通讯模块传来的外部信令,并生成对所述传统家电进行相应控制的控制指令;
所述发射模块将所述中央处理模块生成的控制指令发送至相应的所述传统家电实现相应的控制。
优选地,所述感测模块包括人体动作传感器,用于感测传统家电所在环境的人体活动状态,并将感测到的人体活动状态数据发送至所述中央处理模块;所述中央处理模块根据所述人体活动状态数据生成控制指令控制传统家电启动或关闭。
优选地,该控制***还包括与所述中央处理模块连接的驱动装置,所述感测模块设置在所述驱动装置上并由所述驱动装置带动移动以检测环境中是否有静止人体。
优选地,所述感测模块包括与所述中央处理模块连接的家电状态监测传感器,用于监测所述传统家电的实际运行状态信息,并将监测到的实际运行状态信息发送至所述中央处理模块;
所述中央处理模块根据接收到的所述实际运行状态信息,结合所述控制指令,判断并执行是否发送所述控制指令。
优选地,所述中央处理模块、感测模块、发射模块以及网络通讯模块集成在一壳体中 。
优选地, 所述壳体上还设有由所述中央处理模块控制、驱动所述壳体转动、以将所述 发射模块 对准所述传统家电的驱动模块。
优选地,该控制***还包括用于与所述传统家电或传统遥控器进行对码的接收模块。
本发明还提供一种传统家电智能化节能控制方法 ,包括以下步骤:
S1 :感测模块感测传统家电所在环境状态,并将感测到的环境状态数据发送至中央处理模块;和/或,通过网络通讯模块接收外部信令至中央处理模块;
S2 :所述中央处理模块根据所述环境状态数据和/或外部信令生成对所述传统家电进行相应控制的控制指令;
S3 :发射模块将所述中央处理模块生成的控制指令发送至相应的所述传统家电实现相应的控制。
优选地,在所述步骤S1中,所述感测模块感测传统家电所在环境的人体活动状态,并将感测到的人体活动状态数据发送至所述中央处理模块;
在所述步骤S2中,所述中央处理模块分析处理接收到的所述人体活动状态数据,判断所述传统家电所在环境中是否有人体,并根据所述人体活动状态生成控制指令控制传统家电启动或关闭。
优选地,在所述步骤S1中,当所述感测模块静止时感测所述传统家电所在环境没有人体活动时,所述中央处理模块发出驱动命令给驱动装置,所述感测模块在所述驱动装置驱动下移动进而检测所述传统家电所在环境里是否有静止人体,所述中央处理模块再根据被驱动的所述感测模块的感测结果生成控制指令控制传统家电启动或关闭。
优选地,在所述步骤S1中,所述感测模块还监测所述传统家电的实际运行状态,并将监测到的实际运行状态信息发送至所述中央处理模块;
在所述步骤S2中,所述中央处理模块根据所接收到的所述实际运行状态信息,结合所述控制指令,判断并执行是否发送所述控制指令。
优选地,在所述步骤S3中,所述发射模块在驱动模块转动带动下,与相应的传统家电的接收端对准,实现信号对接。
优选地,该方法还包括步骤S4:所述中央处理模块还通过网络通讯模块将所接收到的所述环境状态数据以及判断结果发送至云端服务器或客户端;和/或,
在所述步骤S3后,所述发射模块将遥控所述传统家电执行相应功能的信息反馈给所述中央处理模块;所述中央处理模块将接收到的反馈信息通过网络通讯模块发送给云端服务器或客户端。
本发明的传统家电智能化节能控制***,通过中央处理模块、感测模块、发射模块以及网络通讯模块的相配合,实现传统家电的智能化节能控制,简单易用、适用性广;且,用户可通过手机、电脑等客户端或云端服务器与该控制***连接,实时了解传统家电的运行状态以及可通过对传统家电进行控制。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明第一实施例的传统家电智能化节能控制***的逻辑图;
图2是本发明第二实施例的传统家电智能化节能控制***的逻辑图。
具体实施方式
为了对本发明的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本发明的具体实施方式。
如图1所示,本发明第一实施例的传统家电智能化节能控制***,包括中央处理模块1,与中央处理模块1连接的感测模块2、 发射 模块4、以及网络通讯模块3;其中: 网络通讯模块3用于与云端服务器或客户端10进行通讯;感测模块2用于感测传统家电20所在环境状态,并将感测到的环境状态数据发送至中央处理模块1;中央处理模块1分析处理接收到的环境状态数据和/或经由网络通讯模块3传来的外部信令,并生成对传统家电20进行相应控制的控制指令;发射模块4将中央处理模块1生成的控制指令发送至相应的传统家电20实现相应的控制。
具体地,云端服务器或客户端10中,客户端可为手机、电脑等设备,可与网络通讯模块3无线或有线直接连接,或进一步通过云端服务器和/或路由器与网络通讯模块3连接。传统家电20包括空调、电风扇、风机、电视机、DVD、照明灯等等可进行遥控的家电。感测模块2感测的传统家电所在环境状态包括温度、湿度、亮度及人体活动状态等中一种或多种。另外,该感测模块2还可用于感测室外气候数据,如室外的温度、湿度及亮度等中一种或多种,并将该感测到的数据发送给中央处理模块1。通过网络通讯模块3还可将感测模块2感测到的环境状态数据、室外气候数据发送给云端服务器或客户端10,实现用户的监测功能。云端服务器或客户端10通过网络通讯模块3传送给中央处理模块1的外部信令包括控制传统家电20相应功能的外部控制指令、获取传统家电20所在环境状态数据、室外气候数据、用户所在位置信息、当地气候信息等中的一种或多种。
在本实施例中,感测模块2包括人体动作传感器21,用于感测传统家电20所在环境的人体活动状态,并将感测到的人体活动状态数据发送至中央处理模块1。中央处理模块1根据人体活动状态数据生成控制指令控制传统家电启动或关闭。人体动作传感器21可为多波束PIR(被动红外探测器)或多普勒传感器。例如,在房间等室内中传统家电20如空调处于运行状态下,人体动作传感器21感测室内的人体活动状态,并将感测到的人体活动状态数据发送至中央处理模块1,中央处理模块1分析处理接收到的人体活动状态数据,判断室内是否有人体;当判断室内没有人体在时,中央处理模块1向发射模块4发送控制指令关闭空调,以将运行中的空调关闭,达到节能的目的;当判断室内有人体在时,中央处理模块1不需发送控制指令给空调。又如,在房间等室内中传统家电20如空调处于关闭状态下,人体动作传感器21感测室内的人体活动状态,并将感测到的人体活动状态数据发送至中央处理模块1,中央处理模块1分析处理接收到的人体活动状态数据,判断室内是否有人体;当判断室内有人体在时,中央处理模块1向发射模块4发送控制指令启动空调;当判断室内没有人体在时,中央处理模块1不需发送控制指令给传统家电20。
进一步地,在本实施例中, 为了避免当传统家电20所在环境如室内有人体在且处于静止时,感测模块2的人体动作传感器21感测不到人体(静止人体),该控制***还包括与中央处理模块1连接的驱动装置5,感测模块2设置在驱动装置5上并由驱动装置5带动移动,以检测环境中是否有静止人体。通过该驱动装置5的设置,带动感测模块2相对静止人体活动进行检测,在人体静止不动时仍能够感测到人体的存在,以将准确的人体活动状态发送至中央处理模块1。该驱动装置5可为微型电机等装置。
中央处理模块1、感测模块2、发射模块4以及网络通讯模块3集成在一壳体中。 进一步地,壳体上还可设有驱动模块(未图示),该驱动模块由中央处理模块1控制,驱动壳体转动以将 发射 模块4对准传统家电20。驱动模块5可包括马达或电机等。
发射 模块4包括一个或多个发射端,用于与传统家电20的接收端实现信号对接,发射端位于壳体上。多个发射端可分布在壳体的不同位置上,从而可与壳体周围的多个传统家电20分布进行信号对接。该 发射端为红外发射端,用于发射红外信号,与传统家电20的红外接收端实现信号对接。另外,该控制***还包括接收模块6, 用于与传统家电20或传统遥控器进行对码 。接收模块6与传统家电20 或传统遥控器 对码后,通过中央处理模块1调用与传统家电20相应的控制码并存储。接收模块6可 包括一个或多个 接收端,接收端为红外接收端,用于接收红外信号。
本发明第一实施例的传统家电智能化节能控制方法 ,由上述控制***实现,参考图1,该控制方法包括以下步骤:
S1 :感测模块2感测传统家电20所在的环境状态,并将环境状态数据发送至中央处理模块1;和/或,通过网络通讯模块3接收外部信令至中央处理模块1。
其中,环境状态包括传统家电20所在环境中的温度、湿度、亮度及人体活动状态等中一种或多种。在本实施例中,感测模块2通过人体动作传感器21感测传统家电20所在环境的人体活动状态,并将感测到的人体活动状态数据发送至中央处理模块1。
S2 :中央处理模块1根据环境状态数据和/或外部信令生成对传统家电进行相应控制的控制指令。
在本实施例中,中央处理模块1分析处理接收到的人体活动状态数据,判断传统家电20所在环境中是否有人体,并根据人体活动状态生成控制指令控制传统家电20的启动或关闭。当判断环境中没有人体在时,中央处理模块1向发射模块4发送控制指令关闭传统家电20,以将运行中的传统家电20关闭,达到节能的目的;当判断环境中有人体在时,中央处理模块1向发射模块4发送控制指令启动传统家电20,或者在传统家电20处于运行状态中时,中央处理模块1不需发送控制指令给传统家电20。
进一步地,本实施例中,为了避免当传统家电20所在环境有人体在且处于静止不动时,感测模块2感测不到人体而使得误关传统家电20,在步骤S1中,当感测模块2静止时感测传统家电20所在环境没有人体活动时,中央处理模块1发出驱动命令给驱动装置5,感测模块2在驱动装置5驱动下移动进而检测传统家电20所在环境(如房间等室内环境)里是否有静止人体,中央处理模块1再根据被驱动的感测模块2的感测结果生成控制指令控制传统家电20启动或关闭。其中,感测模块2在移动下进行感测,使得有静止人体时,感测模块2相对于静止人体是活动的,从而能够准确地对是否有人体进行感测,以将准确的人体活动状态发送至中央处理模块1。
S3 :发射模块4将中央处理模块1生成的控制指令发送至相应的传统家电20实现相应的控制。
在该步骤S3中,控制指令由中央处理模块1发送到发射模块4,发射模块4通过发射端发射红外信号,传统家电20接收后启动或关闭相应功能。进一步地,发射模块4在驱动模块5转动带动下,与相应的传统家电20的接收端对准,实现信号对接。
进一步地,该控制方法还包括步骤S4:中央处理模块1还通过网络通讯模块3将所接收到的环境状态数据以及判断结果发送至云端服务器或客户端10,可实现用户的监控功能。和/或,在步骤S3后,发射模块4将遥控传统家电20执行相应功能的信息反馈给中央处理模块1;中央处理模块1将接收到的反馈信息通过网络通讯模块3发送给云端服务器或客户端10,实现用户的监控功能。
此外,在步骤S1中,中央处理模块1还可通过网络通讯模块3与云端服务器或客户端10连接,可接收云端服务器或客户端10发送的外部信令。外部信令可包括控制传统家电20相应功能的外部控制指令、获取传统家电20所在环境状态数据、室外气候数据、用户所在位置信息、当地气候信息等中的一种或多种。在步骤S2中,中央处理模块1分析接收到的外部信令(如客户端发送的开启或关闭某一传统家电20的指令),并根据分析结果向发射模块4发送控制指令控制相应传统家电20启动或关闭。
另外,用户可通过客户端发送的激活传统家电20如空调运行的外部控制指令给中央处理模块1,中央处理模块1再通过发射模块4控制空调运作,方便用户在回家前室内以通过空调调节至舒适温度,该操作对于电风扇、风机等传统家电20也适用。
如图2所示,本发明第二实施例的传统家电智能化节能控制***,包括中央处理模块1, 与中央处理模块1连接的感测模块2、发射模块4、以及网络通讯模块3;其中: 网络通讯模块3用于与云端服务器或客户端10进行通讯;感测模块2用于感测传统家电20所在环境状态,并将感测到的环境状态数据发送至中央处理模块1;中央处理模块1分析处理接收到的环境状态数据和/或经由网络通讯模块3传来的外部信令,并生成对传统家电20进行相应控制的控制指令;发射模块4将中央处理模块1生成的控制指令发送至相应的传统家电20实现相应的控制。
具体地,云端服务器或客户端10中,客户端可为手机、电脑等设备,可与网络通讯模块3无线或有线直接连接,或进一步通过云端服务器和/或路由器与网络通讯模块3连接。传统家电20包括空调、电风扇、风机、电视机、DVD、照明灯等等可进行遥控的家电。感测模块2感测的传统家电所在环境状态包括温度、湿度、亮度及人体活动状态等中一种或多种。另外,该感测模块2还可用于感测室外气候数据,如室外的温度、湿度及亮度等中一种或多种,并将该感测到的数据发送给中央处理模块1。通过网络通讯模块3还可将感测模块2感测到的环境状态数据、室外气候数据发送给云端服务器或客户端10,实现用户的监测功能。云端服务器或客户端10通过网络通讯模块3传送给中央处理模块1的外部信令包括控制传统家电20相应功能的外部控制指令、获取传统家电20所在环境状态数据、室外气候数据、用户所在位置信息、当地气候信息等中的一种或多种。
中央处理模块1、感测模块2、发射模块4以及网络通讯模块3集成在一壳体中。 进一步地,壳体上还可设有驱动模块(未图示),该驱动模块由中央处理模块1控制,驱动壳体转动以将发射模块4对准传统家电20。驱动模块5可为微型电机等装置。
发射模块4包括一个或多个发射端,用于与传统家电20的接收端实现信号对接,发射端位于壳体上。多个发射端可分布在壳体的不同位置上,从而可与壳体周围的多个传统家电20分布进行信号对接。该 发射端为红外发射端,用于发射红外信号,与传统家电20的红外接收端实现信号对接。另外,该控制***还包括接收模块6 ,用于与传统家电20或传统遥控器进行对码 。接收模块6与传统家电20 或传统遥控器 对码后,通过中央处理模块1调用与传统家电20相应的控制码并存储。接收模块6可 包括一个或多个 接收端,接收端为红外接收端,用于接收红外信号。
在本实施例中,感测模块2包括与中央处理模块1连接的家电状态监测传感器22,用于监测传统家电20的实际运行状态信息,并将监测到的实际运行状态信息发送至中央处理模块1。中央处理模块1根据接收到的实际运行状态信息,结合控制指令,判断并执行是否发送控制指令。家电状态监测传感器22可包括红外传感器、振动传感器及光传感器中的一种或多种,可通过监测传统家电20的温度变化、运动状态或亮度变化中的一种或多种来获得传统家电20的实际运行状态。家电状态监测传感器22可为单波束PIR(被动红外探测器)。例如,当感测模块2将感测到的传统家电20所在环境状态如室内环境温度发送给中央处理模块1,中央处理模块1判断该温度是否超过预设值(如26度等),并结合家电状态监测传感器22监测到的传统家电20如空调运行状态信息,当室内环境温度超过预设值时且空调处于运行时,中央处理模块1向发射模块4发送控制指令调节空调运作温度,以将室内环境调节至预设值或以下;如果空调处于关闭状态,则中央处理模块1向发射模块4发送控制指令启动空调。
在本实施例中,感测模块2还可包括人体动作传感器21,该人体动作传感器21可参考上述图1所示第一实施例的控制***中所述;中央处理模块1可结合传统家电20的实际运行状态信息和控制指令,判断并执行是否发送控制指令。例如,当中央处理模块1根据人体活动状态信息生成控制指令启动相应传统家电20时,同时根据传统家电20的实际运行状态信息判断相应传统家电20是否在运行中;当中央处理模块1判断传统家电20在运行中时,中央处理模块1将不控制相应传统家电20,当中央处理模块1判断传统家电20处于关闭状态时,中央处理模块1将控制指令发送给发射模块4,以启动相应传统家电20。相反地,当中央处理模块1根据人体活动状态信息生成控制指令关闭相应传统家电20时,同时根据传统家电20的实际运行状态信息判断相应传统家电20是否在运行中;当中央处理模块1判断传统家电20在运行中时,中央处理模块1将控制指令发送给发射模块4关闭相应传统家电20,当中央处理模块1判断传统家电20处于关闭状态时,中央处理模块1将不控制相应传统家电20。
本发明第二实施例的传统家电智能化节能控制方法,由上述第二实施例的控制***实现,该控制方法可参考上述第一实施例的传统家电智能化节能控制方法。不同的是,在本实施例中,在步骤S1中,感测模块2还监测传统家电20的实际运行状态,并将监测到的实际运行状态信息发送至中央处理模块1;在步骤S2中,中央处理模块1根据所接收到的实际运行状态信息,结合控制指令,判断并执行是否发送控制指令。
具体地,在步骤S1中,由感测模块2的家电状态监测传感器22来监测传统家电20的实际运行状态。另外,中央处理模块1还可通过网络通讯模块3将所接收到的传统家电20的实际运行状态信息以及判断结果发送至云端服务器或客户端10,实现用户的监控功能。
在其他实施例的控制方法中,感测模块1还感测传统家电20所在环境的温度、湿度以及亮度等中的一种或多种的状态,中央处理模块1分析处理接收到的环境状态数据,判断传统家电20所在环境状态数据是否在预设值范围内,并根据判断结果向发射模块4发送控制指令控制相应传统家电20启动或关闭。例如,感测模块2将感测到的环境温度发送给中央处理模块1,中央处理模块1判断该温度是否超过预设值(如26度等),超过时向发射模块4发送控制指令启动传统家电20(如空调)。此外,中央处理模块1判断温度是否超过预设值(如26度等)后,还结合家电状态监测传感器22监测到的空调实际运行状态信息,当环境温度超过预设值时且空调处于运行时,中央处理模块1向发射模块4发送控制指令调节空调运作温度,以将环境温度调节至预设值或以下;如果空调处于关闭状态,则中央处理模块1向发射模块4发送控制指令启动空调。
由上述各实施例的控制***和方法可知,在室内没有人而传统家电20没有关闭时,通过控制***中各模块等的配合,能够智能关闭传统家电20,实现节能; 且,用户还可通过手机、电脑等客户端或云端服务器与该控制***连接,实时了解传统家电的运行状态以及可对传统家电进行控制。该 控制***和方法 简单易用,适用于多种传统家电和环境,适用性广。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (13)

  1. 一种传统家电智能化节能控制***,其特征在于,包括中央处理模块,与所述中央处理模块连接的感测模块、发射模块、以及网络通讯模块;其中:
    所述网络通讯模块用于与云端服务器或客户端进行通讯;
    所述感测模块,用于感测传统家电所在环境状态,并将感测到的环境状态数据发送至所述中央处理模块;
    所述中央处理模块分析处理接收到的所述环境状态数据和/或经由所述网络通讯模块传来的外部信令,并生成对所述传统家电进行相应控制的控制指令;
    所述发射模块将所述中央处理模块生成的控制指令发送至相应的所述传统家电实现相应的控制。
  2. 根据权利要求1所述的传统家电智能化节能控制***,其特征在于,所述感测模块包括人体动作传感器,用于感测传统家电所在环境的人体活动状态,并将感测到的人体活动状态数据发送至所述中央处理模块;所述中央处理模块根据所述人体活动状态数据生成控制指令控制传统家电启动或关闭。
  3. 根据权利要求2所述的传统家电智能化节能控制***,其特征在于,该控制***还包括与所述中央处理模块连接的驱动装置,所述感测模块设置在所述驱动装置上并由所述驱动装置带动移动以检测环境中是否有静止人体。
  4. 根据权利要求1所述的传统家电智能化节能控制***,其特征在于,所述感测模块包括与所述中央处理模块连接的家电状态监测传感器,用于监测所述传统家电的实际运行状态信息,并将监测到的实际运行状态信息发送至所述中央处理模块;
    所述中央处理模块根据接收到的所述实际运行状态信息,结合所述控制指令,判断并执行是否发送所述控制指令。
  5. 根据权利要求1所述的传统家电智能化节能控制*** ,其特征在于,所述中央处理模块、感测模块、发射模块以及网络通讯模块集成在一壳体中 。
  6. 根据权利要求5所述的传统家电智能化节能控制***,其特征在于, 所述壳体上还设有由所述中央处理模块控制、驱动所述壳体转动、以将所述 发射模块 对准所述传统家电的驱动模块。
  7. 根据权利要求1所述的传统家电智能化节能控制*** ,其特征在于,该控制***还包括用于与所述传统家电或传统遥控器进行对码的接收模块。
  8. 一种传统家电智能化节能控制方法,其特征在于,包括以下步骤:
    S1 :感测模块感测传统家电所在环境状态,并将感测到的环境状态数据发送至中央处理模块;和/或,通过网络通讯模块接收外部信令至中央处理模块;
    S2 :所述中央处理模块根据所述环境状态数据和/或外部信令生成对所述传统家电进行相应控制的控制指令;
    S3 :发射模块将所述中央处理模块生成的控制指令发送至相应的所述传统家电实现相应的控制。
  9. 根据权利要求8所述的传统家电智能化节能控制方法,其特征在于,在所述步骤S1中,所述感测模块感测传统家电所在环境的人体活动状态,并将感测到的人体活动状态数据发送至所述中央处理模块;
    在所述步骤S2中,所述中央处理模块分析处理接收到的所述人体活动状态数据,判断所述传统家电所在环境中是否有人体,并根据所述人体活动状态生成控制指令控制传统家电启动或关闭。
  10. 根据权利要求9所述的传统家电智能化节能控制方法,其特征在于,在所述步骤S1中,当所述感测模块静止时感测所述传统家电所在环境没有人体活动时,所述中央处理模块发出驱动命令给驱动装置,所述感测模块在所述驱动装置驱动下移动进而检测所述传统家电所在环境里是否有静止人体,所述中央处理模块再根据被驱动的所述感测模块的感测结果生成控制指令控制传统家电启动或关闭。
  11. 根据权利要求8所述的传统家电智能化节能控制方法,其特征在于,在所述步骤S1中,所述感测模块还监测所述传统家电的实际运行状态,并将监测到的实际运行状态信息发送至所述中央处理模块;
    在所述步骤S2中,所述中央处理模块根据所接收到的所述实际运行状态信息,结合所述控制指令,判断并执行是否发送所述控制指令。
  12. 根据权利要求8所述的传统 家电智能化节能控制方法,其特征在于,在所述步骤S3中,所述发射模块在驱动模块转动带动下,与相应的传统家电的接收端对准,实现信号对接。
  13. 根据权利要求8所述的传统家电智能化节能控制方法,其特征在于,该方法还包括步骤S4:所述中央处理模块还通过网络通讯模块将所接收到的所述环境状态数据以及判断结果发送至云端服务器或客户端;和/或,
    在所述步骤S3后,所述发射模块将遥控所述传统家电执行相应功能的信息反馈给所述中央处理模块;所述中央处理模块将接收到的反馈信息通过网络通讯模块发送给云端服务器或客户端。
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CN112418385A (zh) * 2020-12-10 2021-02-26 郑子龙 一种仿生智能体控制方法、设备、***
CN113709008A (zh) * 2021-08-26 2021-11-26 深圳市昌龙装饰设计工程有限公司 一种智能家居的安全管理方法和装置

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