WO2014063649A1 - 家用电器控制的方法及*** - Google Patents

家用电器控制的方法及*** Download PDF

Info

Publication number
WO2014063649A1
WO2014063649A1 PCT/CN2013/085934 CN2013085934W WO2014063649A1 WO 2014063649 A1 WO2014063649 A1 WO 2014063649A1 CN 2013085934 W CN2013085934 W CN 2013085934W WO 2014063649 A1 WO2014063649 A1 WO 2014063649A1
Authority
WO
WIPO (PCT)
Prior art keywords
wireless
wireless interface
module
gateway
interface module
Prior art date
Application number
PCT/CN2013/085934
Other languages
English (en)
French (fr)
Inventor
马延文
Original Assignee
浙江风向标科技有限公司
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 浙江风向标科技有限公司 filed Critical 浙江风向标科技有限公司
Publication of WO2014063649A1 publication Critical patent/WO2014063649A1/zh

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L12/2823Reporting information sensed by appliance or service execution status of appliance services in a home automation network
    • H04L12/2825Reporting to a device located outside the home and the home network
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric
    • 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
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
    • G05B19/0423Input/output
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L12/2816Controlling appliance services of a home automation network by calling their functionalities
    • H04L12/2818Controlling appliance services of a home automation network by calling their functionalities from a device located outside both the home and the home network
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/25Pc structure of the system
    • G05B2219/25168Domotique, access through internet protocols
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/25Pc structure of the system
    • G05B2219/25198Brouter: transfers data from wireless to wired networks, router: wired to wired
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/26Pc applications
    • G05B2219/2613Household appliance in general

Definitions

  • the present application relates to a method and system for home appliance control. Background technique
  • a smart home system capable of centrally controlling home appliances is disclosed, for example, in CN 102117062 A.
  • a method for controlling home appliances in a cloud server comprises the steps of: acquiring a wireless signal of a state change of a home appliance device from a gateway; The state change and the predefined linkage condition send a smart linkage operation command to the gateway.
  • the method further comprises registering and distributing the gateway based on a matching relationship between the username of the application and the gateway identification.
  • the step of transmitting the smart linkage operation command to the gateway according to the state change of the home appliance and the predefined linkage condition further comprises determining whether the linkage partner is satisfied according to the state change of the home appliance device acquired by the gateway; And sending the smart linkage operation command to the gateway when the linkage partner is satisfied, and sending the home appliance device status to the user through the network to alert the user.
  • the intelligent linkage operation command comprises turning the power of the household appliance device on or off, adjusting the state of the household appliance device and alerting the user.
  • a method for controlling home appliances in a gateway comprising the steps of: acquiring a state change from the home appliance device and transmitting to the cloud server; receiving from the cloud server The intelligent linkage operation command sends the intelligent linkage operation command to the home appliance device or device corresponding to the intelligent linkage operation command.
  • a home appliance control system comprising: a cloud server configured to acquire the wireless signal from a gateway and send according to the wireless signal and a predefined linkage condition The smart linkage operation command is sent to the gateway; the gateway is configured with a network interface that is connected or electrically connected to each other, and further configured with a first wireless interface module that is logically connected or electrically connected to the network interface, The network interface is configured to exchange information with the cloud server, the first wireless interface is configured to exchange wireless information with other wireless interfaces; an infrared sub-controller, wherein the second wireless interface module is provided with a logical connection or electrical connection with each other and an infrared a signal transmitting module, the second wireless interface module configured to receive a wireless signal from the first wireless interface module indicating intelligent linkage operation and transmit an operation status signal corresponding to the corresponding infrared signal to the first wireless interface And controlling the red according to the wireless signal indicating the intelligent linkage operation The signal transmitting module transmits a corresponding
  • the gateway can receive intelligent linkage operation commands from the cloud server through the network interface, thereby implementing control of the home appliance.
  • a home appliance e.g., an air conditioner, a television, etc.
  • a remote control device can be controlled by an infrared sub-control device.
  • household appliances without any remote control such as electric water heaters, etc.
  • they can be controlled by a socket adapter. Therefore, the home appliance control system according to the present application can easily realize centralized control of existing non-smart home appliances without changing home electrical wiring.
  • the cloud server is further configured to perform registration and data distribution according to a matching relationship between the user name of the application and the gateway identifier; determining whether the linkage condition is met according to a state change of the home appliance device acquired by the gateway; Sending the intelligent linkage operation command to the gateway when the linkage condition is satisfied and alerting the user through the network.
  • the system further comprises: a sub-controller integrated in the household appliance, wherein a fourth wireless interface module is provided, which is logically connected or electrically connected to the control module in the household appliance, the fourth wireless interface
  • the module is configured to receive a wireless signal indicating the intelligent linkage operation from the first wireless interface module and send a corresponding signal to the control module in the home appliance according to the received wireless signal indicating the intelligent linkage operation;
  • the fourth wireless interface module is further configured to send a wireless signal to the first wireless interface module to indicate a status of the household appliance.
  • the sub-controller integrated in the home appliance according to the present application is added to the home appliance, and the existing home appliance can be very easily supported by the control of the home appliance control system, thereby providing An easily expandable home appliance control system that allows for the addition of various household appliances.
  • the system further comprises a smoke sensing module, wherein the logical connections are provided Or an electrically connected fifth wireless interface module and a smoke sensor, the fifth wireless interface module configured to send a wireless signal to the first wireless interface module to indicate an environmental status detected by the smoke sensor.
  • the system further comprises a temperature and humidity sensing module, wherein a sixth wireless interface module and a temperature and humidity sensor are provided that are logically or electrically connected to each other, the sixth wireless interface module being configured to be to the first wireless
  • the interface module sends a wireless signal to indicate the environmental status detected by the temperature and humidity sensor.
  • the system further comprises an infrared detection module, wherein a seventh wireless interface module and an infrared detection sensor are provided that are logically or electrically connected to each other, the seventh wireless interface module being configured to be to the first wireless interface module Sending a wireless signal to indicate an environmental state detected by the infrared detecting sensor.
  • the corresponding environmental state can be obtained by the smoke sensing module and/or the temperature and humidity sensing module and/or the infrared detecting module.
  • the cloud server can learn the environment status and take appropriate measures based on the received information.
  • the cloud server is further configured to change the received home appliance status information to the user via the application to alert the user.
  • the user can understand the abnormal situation occurring in the home, so as to take corresponding measures in time.
  • the predefined linkage condition is when the smoke sensor detects that the smoke zero level in the environment exceeds a predetermined threshold, or when the ambient temperature detected by the temperature and humidity sensor exceeds a predetermined threshold Or, when the infrared detecting sensor detects abnormal intrusion, sends a smart linkage operation instruction to the gateway through the first wireless interface module to instruct the home appliance to cut off power of all the appliances.
  • the system implements the wireless interface module in accordance with one or more of Zigbee, Wifi, Bluetooth technology.
  • the network interface is an RJ45 interface or a wireless local area network interface.
  • FIG. 1 shows a schematic diagram of a home appliance control system and method in accordance with one embodiment of the present application
  • FIG. 2 is a schematic diagram showing a home appliance control system and method in accordance with another embodiment of the present application.
  • FIG. 3 is a schematic diagram of a home appliance control system and method in accordance with yet another embodiment of the present application.
  • Fig. 1 shows a schematic view of a home appliance control system in accordance with an embodiment of the present application.
  • the home appliance control system shown in FIG. 1 includes a cloud server 300, a gateway 110, a gateway 210, a user application 100, and a user application 200.
  • a cloud server 300 includes a gateway 110, a gateway 210, a user application 100, and a user application 200.
  • Those skilled in the art can It is to be noted that only the network unit necessary for understanding the present application is shown in FIG. 1, and other modules such as a secure authentication server may be included in the home appliance control system.
  • the user accessing the cloud server 300 can be authenticated by the secure authentication server.
  • the user can access the network through a device such as a mobile phone, a computer, a telephone, a personal digital assistant, and after being authenticated by the secure authentication server, can communicate with the cloud server 300 through the network, thereby setting or receiving the cloud server 300 from the cloud server. Warning message. And it is possible to increase the safety of the use of the home appliance control system according to the present application.
  • the cloud server 300 is configured to distribute data to the gateway and user based on a matching relationship between the user name of the user application and the gateway identification. As shown in Figure 1, the cloud server registers with user 100 and gateway 110, user 200 and gateway 210. When information from the gateway 110 needs to be sent to the user, the cloud server sends the information from the gateway 110 to the corresponding user 100 according to the matching relationship of the user 100 corresponding to the gateway 110, instead of sending the message to the user 100.
  • the user can communicate with the cloud server 300 over the network. For example, the user 200 can set the linkage condition and the smart linkage command of the home appliance of the user 200 in the cloud server 300 through the network, so as to control the operation of the home appliance managed by the gateway 210 through the gateway 210.
  • the cloud server 300 acquires a wireless signal of a state change of the home appliance from the gateway, and judges whether the state change of the home appliance satisfies the linkage condition according to a predefined linkage condition. When the linkage condition is met, the cloud server 300 sends an intelligent linkage operation command to the gateway.
  • the intelligent linkage operation command may be, for example, an operation in which the home appliance is turned off or closed.
  • FIG. 2 shows a schematic diagram of a home appliance control system in accordance with one embodiment of the present application.
  • the home appliance control system shown in Fig. 2 includes a cloud server 300, a gateway 110, an infrared minute controller 120, a socket adapter 130, and a user program 100.
  • a cloud server 300 includes a gateway 110, an infrared minute controller 120, a socket adapter 130, and a user program 100.
  • the home appliance control system may also include a plurality of other infrared sub-controllers 120 and socket adapters 130, and possibly Includes other modules, such as a secure authentication server.
  • the network interface 1101 and the first wireless interface module 110 2 are disposed in the gateway 110.
  • the network interface 1101 and the first wireless interface module 1102 are logically connected or electrically connected to each other. among them
  • the network interface 1101 is configured to exchange information with the cloud server 300, and the first wireless interface 1102 is configured to send wireless information to other wireless interfaces according to the intelligent linkage operation command received through the network interface 1101, to instruct the infrared sub-controller 120 to correspond
  • the household appliance performs control and/or directs the outlet adapter 130 to turn the power of the corresponding household appliance on or off.
  • the first wireless interface 1102 is also configured to acquire device state changes from the home appliance and send to the network interface 1101.
  • network interface 1101 can be, for example, an RJ45 interface or a wireless local area network interface or a 3G wireless communication interface.
  • the infrared sub-controller 120 is provided with a second wireless interface module 1201 and an infrared signal transmitting module 1202 that are logically connected or electrically connected to each other, and the second wireless interface module 1201 is configured to receive an indication intelligent linkage operation from the first wireless interface module 1102. Commanding the wireless signal, and controlling the infrared signal transmitting module 1202 to transmit the corresponding infrared signal according to the wireless signal indicating the intelligent linkage operation. For example, if the wireless signal indicating the smart linkage operation command received by the second wireless interface module 1201 indicates that the air conditioner is turned on/off or the air conditioner temperature is adjusted, the infrared signal transmitting module 1202 is controlled to transmit the corresponding frequency when the air conditioner remote controller performs the above control. Infrared signal, so that the air conditioner performs the corresponding action.
  • the second wireless interface module 1201 is configured to transmit a wireless signal from the infrared signal transmitting module 1202 indicating the operational status to the first wireless interface 1102.
  • the socket adapter 130 is provided with a third wireless interface module 1301, a relay module 1302 and a power consumption module 1303 that are logically or electrically connected to each other.
  • the third wireless interface module 1301 is configured to receive a wireless signal indicating the intelligent linkage operation from the first wireless interface module 1102, and control the relay 1302 to open or close according to the wireless signal indicating the intelligent linkage operation, thereby causing the socket to be converted.
  • the head 130 is turned off or on, and further turns off or turns on the power of the home appliance connected to the outlet switch 130.
  • the control of a general non-smart home appliance (for example, an electric water heater, etc.) can be easily realized, and since the communication between the socket adapter 130 and the gateway 110 is wirelessly implemented, there is no need to change the electrical of the existing home environment. Wiring, which saves costs.
  • the electricity statistics module 1 3 03 The total power and total power of the interface are counted according to the information provided by the relay module 1302, and the total power and total power are sent to the first wireless interface 1101 through the wireless interface 1301.
  • the cloud server 300 is based on the total power and total obtained. Power and pre-defined linkage conditions for the operation of a general non-smart home appliance to open or close.
  • the first and second third wireless interfaces 1102, 1201, 1301 are implemented in accordance with one or more of Zigbee, Wifu Bluetooth technologies.
  • the first and second third wireless interfaces 1102, 1201, 1301 are implemented using a commercial ZigBee 2007 Pro protocol stack.
  • the first and second third radio interfaces 1102, 1201, and 1301 adopt a 32-bit ARM Cortex-M3 processor, and can complete complicated control logic while completing ZigBee communication work, and can replace some single-chip microcomputer work by modifying a program. .
  • the wireless interface is thus implemented in compliance with the IEEE 802.15.4 international standard.
  • the working frequency band of the wireless interface module is 2.4G license-free working frequency band
  • the PCB antenna gain is about 0 dBi
  • the receiving sensitivity is -102 dBm
  • the link budget is 109 dB
  • the output power is 7 dBm
  • the sleep mode is The power consumption is ⁇ 1 ⁇ ⁇
  • the receive mode power consumption is 27 mA
  • the transmit mode power consumption is 40 mA.
  • first and second third wireless interfaces 1102, 1201, 1301 are implemented based on IEEE 802.i.
  • the communication between the multiple wireless interfaces adopts an encryption mechanism, which can protect against malicious attacks and fully protect the security and privacy of the user.
  • the infrared sub-controller 120 and the socket adapter 130 can be controlled by remote control or by the gateway ⁇ 0 according to the intelligent linkage operation command sent from the cloud server 300 to intelligently turn on and off the power of the device connected thereto, thereby saving energy. , for the purpose of increasing security.
  • Fig. 3 shows a schematic diagram of a home appliance control system in accordance with another embodiment of the present application.
  • the embodiment shown in FIG. 3 also includes integration.
  • the sub-controller 140 integrated in the home appliance is provided with a fourth wireless interface module 1401 that is logically or electrically connected to the control modules in the home appliance.
  • the fourth wireless interface module 1401 is configured to receive a wireless signal indicating the intelligent linkage operation from the first wireless interface module 1102, and send a corresponding signal to the control module in the home appliance according to the received wireless signal indicating the intelligent linkage operation.
  • the fourth wireless interface module 1401 is in turn configured to transmit a signal from the home appliance control module 1402 to the first wireless interface 1102.
  • the household appliance of Figure 3 is a rice cooker.
  • the rice cooker includes a control module for controlling the working mode of the rice cooker.
  • the control module can be connected with some buttons, and the user can select a rice cooking mode/porridge mode/broth mode/reheat mode by pressing a button, and then control the rice cooker through the control module to make it select with the user.
  • the mode works accordingly.
  • the home appliance control module can also transmit a signal of the state of the home device to the fourth wireless interface 1401.
  • a sub-controller 140 is integrated in the rice cooker, and a fourth wireless interface module 1401 is disposed in the sub-controller 140.
  • the fourth wireless interface module 1401 is connected to the control module in the rice cooker, so that the fourth wireless interface module 1401 can send the signal to the control module of the rice cooker after receiving the signal from the first wireless interface 1102 in the gateway 110. Corresponding instructions to enable the rice cooker to work accordingly.
  • the gateway 110 sends a signal to the fourth wireless interface module 1401 in the home appliance through the first wireless interface 1102 to instruct the rice cooker to start porridge.
  • the fourth wireless interface module 1401 After receiving the signal, notifies the control module of the rice cooker so that the control module of the rice cooker controls the rice cooker to start porridge.
  • the household appliance presented herein is merely an exemplary embodiment of a rice cooker, and according to the present application, the sub-controller 140 can be integrated in any household appliance having a control module.
  • the existing home appliance can be supported very much in support of the control of the home appliance control system according to the present application, thereby providing an easily expandable home appliance control system that allows various home appliances to join.
  • the sub-controller 140 can be a separate module or integrated with the control system of the home appliance.
  • the fourth wireless interface 1401 uses a 32-bit ARM Cortex-M3 processor to perform complex control logic while completing ZigBee communication, so that it is possible to add control functions of the home appliance to the processor, so that The score controller 140 can be integrated with the control system of the home appliance.
  • the smoke sensing module 150 is provided with a fifth wireless interface module 1501 and a smoke sensor 1502 that are logically connected or electrically connected to each other, and the fifth wireless interface module 1501 is configured to send a wireless signal to the first wireless interface module 1 102 to indicate the smoke.
  • the gateway 110 can obtain the environmental state detected by the smoke sensor 1502, thereby being able to find an unexpected situation such as a fire, and perform corresponding processing.
  • the smoke sensor 1502 detects an environmental condition associated with the smoke and transmits the environmental status to the first wireless interface 1102 of the gateway 110 via the fifth wireless interface 1501, and the gateway 110 communicates the smoke-related environment via the network interface 1 101.
  • the status is sent to the cloud server 300.
  • the cloud server 300 determines whether the linkage condition is met, such as a preset threshold, based on the predefined linkage condition and the received smoke-related environmental status.
  • the cloud server 300 When the linkage condition is satisfied (if the smoke level in the environment exceeds a preset threshold, indicating that a fire has occurred), the cloud server 300 sends a smart linkage operation command to the gateway, such as cutting off the power, sending a smoke alarm, and the like. At the same time, the cloud server 300 sends a reminder message to the user through the network.
  • a smart linkage operation command such as cutting off the power, sending a smoke alarm, and the like.
  • the cloud server 300 sends a reminder message to the user through the network.
  • the temperature and humidity sensing module 160 is provided with a sixth wireless interface module 1601 and a temperature and humidity sensor 1602 which are logically connected or electrically connected to each other, and the sixth wireless interface module 1601 is configured to send a wireless signal to the first wireless interface module 1102 to indicate The environmental state detected by the temperature and humidity sensor 1602.
  • the gateway 110 can obtain the environmental status detected by the temperature and humidity sensing module 160 and transmit the environmental status to the cloud server 200.
  • accidents such as fire/overflow can be found and processed accordingly.
  • the infrared detecting module 170 is provided with a seventh wireless interface module 1701 and an infrared detecting sensor 1702 connected to each other, and the seventh wireless interface module 1701 is configured to send a wireless signal to the first wireless interface module 1102 to indicate infrared The state of the environment detected by the probe sensor 1702.
  • the gateway 110 can obtain the environmental status detected by the infrared detecting module 170 and transmit the environmental status to the cloud server 200.
  • the cloud server can find an unexpected situation such as an abnormal intrusion, or a sudden fall of a person, according to a predefined linkage condition and the change of the environmental state, and perform corresponding processing. As a result, in the event of an accident, measures that reduce or avoid possible losses can be taken directly without user instructions.
  • the predefined linkage condition is, for example, when the smoke sensor 1502 detects that the smoke level in the environment exceeds a predetermined threshold, or the ambient temperature detected by the temperature and humidity sensor 1602/ When the humidity exceeds a predetermined threshold, or when the infrared detecting sensor 1702 detects abnormal intrusion, the wireless signal indicating the intelligent linkage operation is sent through the first wireless interface module to indicate that the power of all the appliances is cut off or the corresponding is issued. alarm.
  • the household appliances to be controlled are respectively connected to the gateway in a wireless form to form a star topology.
  • a plurality of wireless communication links are taken from the gateway, connected to all household appliances that need to implement control or monitoring nodes from which data needs to be acquired.
  • the monitoring nodes are, for example, the smoke sensing module 150 and the temperature and humidity sensing module 160 mentioned above.
  • the infrared detecting module 170 may also be nested in each household appliance that needs to be controlled to obtain data about the operating state of the household appliance. Transfer live information wirelessly.
  • each monitoring node does not schedule any data processing capabilities, but simply performs the acquisition of passive data (e.g., real-time power consumption) or completes the corresponding control.
  • the network advantage is used to automatically integrate and analyze the collected data, and different scene modes are developed to optimize the power saving. Reuse wireless communication technology to achieve real-time remote monitoring.

Landscapes

  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • General Engineering & Computer Science (AREA)
  • Selective Calling Equipment (AREA)

Abstract

一种家用电器控制的方法及***,包括:云服务器(300)获取来自网关(110)的家用电器设备状态变化的无线信号并根据家用电器状态变化和预定义的联动条件发送智能联动操作命令给网关(110);网关(110)设置有网络接口(1101)和第一无线接口(1102),网络接口(1101)被配置为与云服务器(300)交互信息,第一无线接口(1102)被配置为根据从网络接口(1101)接收到的信息向家用电器发送无线信号和获取来自家用电器的家用电器状态信息;网关(110)根据来自云服务器(300)的智能联动操作命令控制家用电器进行相应的操作。由此简单地实现对非智能家用电器的集中控制。

Description

家用电器控制的方法及*** 技术领域
本申请涉及家用电器控制的方法及***。 背景技术
随着智能家居的发展, 已经能够实现根据预先确定的规则集中 地、 自动地对智能家用电器进行控制。 例如在 CN 102117062 A中公 开了一种能够集中控制家用电器的智能家居***。
然而, 在实际使用中, 目前很多家用电器还没有集成支持智能 家居的模块, 因此在一般家庭中引入智能家居系統面临一定的困难。 例如对于没有任何遥控装置的家用电器 (例如电热水器等) , 如果 需要对这些家用电器进行集中控制, 只能通过直接接通和闭合电源 供电的方式来实现。 虽然在装修电线布线时就在电源插座中设置相 应的控制模块能够实现对这类家用电器的供电的集中控制, 但是对 于一般家庭, 改变供电线路的布线是极为繁瑣甚至不现实的。 因此, 通过云服务器和网关来集中地控制家用电器可以实现非智能化家用 电器的智能化操作。 发明内容
基于以上考虑,如果提出一种能够很方便地实现对现有非智能家用 电器进行集中控制的家用电器控制***, 将是非常有利的。 基于以上考 虑,如果提出一种能够很方便地实现对现有非智能家用电器进行集中控 制的家用电器控制***, 将是非常有利的。
根据本申请的第一方面,提出了一种在云服务器中进行家用电器控 制的方法, 其中, 所述方法包括以下步驟: 获取来自网关的家用电器设 备状态变化的无线信号;根据所述家用电器状态变化和预定义的联动条 件发送智能联动操作命令给所述网关。 有利地,所述的方法还包括根据应用程序的用户名和网关标识的匹 配关系对所述网关进行注册和数据分发。
有利地,所述根据家用电器状态变化和预定义的联动条件发送智能 联动操作命令给所述网关的步骤还包括根据所述网关获取的家用电器 设备状态变化, 判断是否满足所述联动奈件; 以及当所述联动奈件满足 时发送所述智能联动操作命令给所述网关并通过网络将所述家用电器 设备状态发送给用户以警示用户。
有利地, 所述智能联动操作命令包括开启或关闭所述家用电器设备 电源, 调整所述家用电器设备状态和警示用户。
根据本申请的第二方面,提出了一种在网关中进行家用电器控制的 方法, 包括以下步骤: 获取来自所述家用电器设备的状态变化并发送给 所述云服务器;接收来自所述云服务器的所述智能联动操作命令并发送 所述智能联动操作命令给智能联动操作命令所对应的家用电器设备或 装置。
根据本申请的第三方面, 提出了一种家用电器控制***, 包括: 云 服务器, 所述云服务器被配置为获取来自网关的所述无线信号并根据 所述无线信号和预定义的联动条件发送所述智能联动操作指令给所述 网关; 网关, 其中设置有彼此遝辑连接或电连接的网络接口, 其中还设 置有与所述网络接口逻辑连接或电连接的第一无线接口模块,所述网络 接口被配置为与云服务器交互信息,所述第一无线接口被配置为与其他 无线接***互无线信息; 红外分控制器, 其中设置有彼此逻辑连接或电 连接的第二无线接口模块以及红外信号发射模块,所述第二无线接口模 块被配置为接收来自所述第一无线接口模块的指示智能联动操作的无 线信号并向所述第一无线接口发送相应的红外信号所对应的操作状态 信号,并根据所述指示智能联动操作的无线信号控制所述红外信号发射 模块发送相应的红外信号; 插座转接头, 其中设置有彼此逻辑连接或电 连接的第三无线接口模块以及继电器模块以及电量统计模块,所述第三 无线接口模块被配置为接收来自所述第一无线接口模块的指示智能联 动操作的无线信号, 向所述第一无线接口发送插座转换头状态以及接收 来自所述继电器模块的继电器状态信息,并根据所述指示智能联动操作 的无线信号控制所述继电器断开或闭合,从而使得所述插座转换头断开 或接通; 所述电量统计模块被配置为统计谅接口的总电量和功率以及 向所述第三无线接口发送统计结果。
根据本申请的方案, 网关能够通过网络接口从云服务器接收智能联 动操作命令, 从而实现对家用电器的控制。 此外, 根据本申请, 对于已 有遥控装置的家用电器(例如空调、 电视机等)能够通过红外分控装置 对其进行控制。对于没有任何遥控装置的家用电器(例如电热水器等), 能够通过插座转接头来对其进行控制。 因此, 依据本申请的家用电器控 制***能够很方便地实现对现有非智能家用电器进行集中控制, 而无需 改变家居电气布线。
有利地,所述云服务器还被配置为根据应用程序的用户名和网关标 识的匹配关系来进行注册和数据分发;根据所述网关获取的家用电器设 备状态变化, 判断是否满足所述联动条件; 以及当所述联动条件满足时 发送所述智能联动操作命令给所述网关并通过网絡警示用户。
有利地, 所述***还包括: 集成在家用电器中的分控制器, 其中设 置有与所述家用电器中的控制模块彼此逻辑连接或电连接的第四无线 接口模块,所述第四无线接口模块被配置为接收来自所述第一无线接口 模块的指示智能联动操作的无线信号并根据所接收到的所述指示智能 联动操作的无线信号向所述家用电器中的控制模块发送相应的信号; 所 述第四无线接口模块还被配置为向所述第一无线接口模块发送无线信 号, 以指示所述家用电器的状态。
随着技术的发展, 越来越多的家用电器(例如电饭锅、 洗衣机等) 中集成有控制模块, 用于控制家用电气的工作模式。 通过本申请的这一 实施例,将依据本申请的该集成在家用电器中的分控制器添加至家用电 器中, 能够非常简单地使现有家用电器支持该家用电器控制***的控 制, 从而提供一种容易扩展的、 允许各种家用电器加入的家用电器控制 ***。
有利地, 所述***还包括烟雾传感模块, 其中设置有彼此逻辑连接 或电连接的第五无线接口模块以及烟雾传感器,所述第五无线接口模块 被配置为向所述第一无线接口模块发送无线信号, 以指示所述烟雾传感 器检测到的环境状态。
有利地, 所述***还包括温湿度传感模块, 其中设置有彼此逻辑连 接或电连接的第六无线接口模块以及温湿度传感器,所述第六无线接口 模块被配置为向所述第一无线接口模块发送无线信号, 以指示所述温湿 度传感器检测到的环境状态。
有利地, 所述***还包括红外探测模块, 其中设置有彼此逻辑连接 或电连接的第七无线接口模块以及红外探测传感器,所述第七无线接口 模块被配置为向所述第一无线接口模块的发送无线信号, 以指示所述红 外探测传感器检测到的环境状态。
由此, 依据本专利的方案能够通过烟雾传感模块和 /或温湿度传感 模块和 /或红外探测模块来获取相应的环境状态。 通过将相应的环境状 态发送至网关并由网关发送到云服务器, 以便云服务器根椐接收到的信 息了解环境状态并采取相应的措施。
有利地,所述云服务器还被构造为将接收到的家用电器状态信息变 化通过所述应用程序向发送给用户以警示用户。
由此, 使得用户能够了解到家中发生的异常情况, 以便及时采取相 应的措施。
有利地, 所述预定义联动条件为, 在所述烟雾传感器检测到环境中 的烟零水平超过预先确定的阔值时,或在所述温湿度传感器检测到的环 境温度超过预先确定的阈值时,或在所述红外探测传感器检测到有人异 常闯入时, 通过第一无线接口模块发送智能联动操作指令给网关, 以指 示家用电器切断所有电器的电源。
由此能够自动实现对家用电器的安全控制。 能够在检测到异常环境 状况时 (例如发生火灾、 溢水以及入室盗窃等) 无需用户进一步指示, 就切断家中电器的电源, 从而减小可能发生的危害。
有利地, 所述***才艮据 Zigbee、 Wifi、 蓝牙技术中的一个或多个实 现所述无线接口模块。 有利地, 所述网络接口为 RJ45接口或无线局域网接口。
本申请的各个方面将通过下文中的具体实施例的说明而更加清晰。 附图说明
通过参照附图阅读以下所作的对非限制性实施例的详细描述,本申 请的其它特征、 目的和优点将会变得更明显。
图 1示出了依据本申请的一个实施例的家用电器控制***及方法的 示意图;
图 2示出了依据本申请的另一个实施例的家用电器控制***及方法 的示意图;
图 3示出了依据本申请的又一个实施例的家用电器控制***及方法 的示意图。
在图中, 贯穿不同的示图, 相同或类似的附图标记表示相同或相似 的装置 (模块)或步骤。
通过参照附图阅读以下所作的对非限制性实施例的详细描述, 能够 更容易地理解本发明的特征、 目的和优点。 其中, 相同或相似的附图标 记代表相同或相似的装置。 具体实施方式
在以下优选的实施例的具体描述中,将参考构成本申请一部分的所 附的附图。所附的附图通过示例的方式示出了能够实现本申请的特定的 实施例。 示例的实施例并不旨在穷尽 居本申请的所有实施例。 可以理 解, 在不偏离本申请的范围的前提下, 可以利用其他实施例, 也可以进 行结构性或者逻辑性的修改。 因此, 以下的具体描述并非限制性的, 且 本申请的范围由所附的权利要求所限定。
图 1示出了依据本申请的一个是实施例的家用电器控制***的示意 图。
图 1所示的家用电器控制***包括云服务器 300, 网关 110, 网 关 210, 用户应用程序 100, 用户应用程序 200。 本领域技术人员能够理 解的是, 图 1中仅示出了对于理解本申请必要的网络单元, 家用电器控 制***中还可能包括其他模块, 例如安全认证服务器等。
通过安全认证服务器, 能够对接入云服务器 300的用户进行身份认 证。 用户能够通过手机、 电脑、 电话、 个人数字助理等设备接入网络, 并在经过安全认证服务器的认证之后, 能够通过网络与云服务器 300通 信, 从而对云服务器 300进行设置或接收来自云服务器的警示信息。 并 能够增加依据本申请的家用电器控制***使用的安全性。
云服务器 300 被配置为根据用户应用程序的用户名和网关标识的 匹配关系对所述网关和用户进行数据分发。 如图 1中示出, 云服务器对 用户 100和网关 110, 用户 200和网关 210进行注册。 当有来自于网关 110 的信息需要发送到用户时, 云服务器根据网关 110 相对应的用户 100的匹配关系, 将所述来自于网关 110的信息发送到所对应的用户 100, 而不是发送给另一个用户 200。 此外, 用户能够通过网絡与云服 务器 300通信。 例如, 用户 200可以通过网络对云服务器 300中的用户 200的家用电器的联动条件和智能联动命令进行设置, 从而达到通过网 关 210控制网关 210所辖家用电器的操作。
云服务器 300获取来自于网关的家用电器的状态变化的无线信号, 并根据预定义的联动条件来判断家用电器的状态变化是否满足联动条 件。 当满足联动条件时, 云服务器 300向所述网关发送智能联动操作命 令。 所述智能联动操作命令可以是例如家用电器断开或闭合的操作。
图 2 示出了依据本申请的一个实施例的家用电器控制***的示意 图。
图 2所示的家用电器控制***包括云服务器 300,网关 1 10, 红外分 控制器 120, 插座转接头 130和用户症用程序 100。 本领域技术人员能 够理解的是, 图 2中仅示出了对于理解本申请必要的网络单元, 家用电 器控制***中还可能包括多个其他的红外分控制器 120 和插座转接头 130, 还可能包括其他模块, 例如安全认证服务器等。
网关 110中设置有网络接口 1101和第一无线接口模块 1102。 其中 网 接口 1101和第一无线接口模块 1102彼此逻辑连接或电连接。其中 网络接口 1101被配置为与云服务器 300交互信息, 第一无线接口 1102 被配置为根据通过网络接口 1101接收到的智能联动操作命令向其他无 线接口发送无线信息, 以指示红外分控制器 120对相应的家用电器进行 控制和 /或指示插座转接头 130接通或断开相应的家用电器的电源。 第 一无线接口 1102还被配置为获取来自家用电器的设备状态变化并发送 给所述网络接口 1101。
在依据本申请的一个实施例中, 网络接口 1101例如能够是 RJ45接 口或无线局域网接口或 3G无线通信接口。 本领域技术人员能够理解, 这里给出的型号和参数仅仅是示例性的。在不偏离本申请的基本思想的 情况下, 本领域技术人员能够采用其他可行的型号和参数。
红外分控制器 120中设置有彼此逻辑连接或电连接的第二无线接口 模块 1201以及红外信号发射模块 1202,第二无线接口模块 1201被配置 为接收来自第一无线接口模块 1102的指示智能联动操作命令的无线信 号, 并 4艮据所述指示智能联动操作的无线信号控制红外信号发射模块 1202发送相应的红外信号。 例如, 如果第二无线接口模块 1201接收到 的指示智能联动操作命令的无线信号指示打开 /关闭空调或调整空调温 度, 则控制红外信号发射模块 1202发送与空调遥控器进行上述控制时 的相应频率的红外信号, 以使得空调进行相应的动作。 第二无线接口模 块 1201 被配置为向第一无线接口 1102发送来自于红外信号发送模块 1202的指示操作状态的无线信号。
插座转接头 130中设置有彼此逻辑连接或电连接的第三无线接口模 块 1301, 继电器模块 1302和电量统计模块 1303。 其中第三无线接口模 块 1301被配置为接收来自第一无线接口模块 1102的指示智能联动操作 的无线信号, 并根据指示智能联动操作的无线信号控制继电器 1302断 开或闭合, 从而使得所述插座转换头 130断开或接通, 并进一步断开或 接通连接至该插座转换头 130的家用电器的电源。从而能够简单地实现 对一般非智能家用电器(例如电热水器等)的控制, 并且由于插座转接 头 130与网关 110之间的通信是无线地实现的, 因此, 不需要改变现有 家居环境的电气布线, 从而能够节约成本。 其中电量统计模块 1303根 据继电器模块 1302提供的信息统计该接口的总电量和总功率, 并把所 述总电量和总功率通过无线接口 1301发送到第一无线接口 1101. 云服 务器 300 根据获取的所述总电量和总功率以及预定义的联动条件对一 般非智能家用电器断开或闭合的操作。
在依据本申请的一个实施例中, 根据 Zigbee、 Wifu 蓝牙技术中的 一个或多个实现第一第二第三无线接口 1102、 1201、 1301。
在一个特定的实施例中 , 采用商业化的 ZigBee 2007 Pro协议栈来 实现第一第二第三无线接口 1102、 1201、 1301。 具体地, 第一第二第三 无线接口 1102、 1201、 1301采用 32位的 ARM Cortex-M3处理器, 在 完成 ZigBee通讯工作的同时能够完成复杂的控制逻辑, 通过修改程序 可以取代部分单片机的工作。 如此实现无线接口符合 IEEE 802.15.4国 际标准。 本领域技术人员能够理解, 这里给出的协议和型号仅仅是示例 性的。 在不偏离本申请的基本思想的情况下, 本领域技术人员能够采用 其他可行的协议和型号。 在一个具体的实施例中, 无线接口模块的工作 频段为 2.4G免许可证工作频段, PCB天线增益约为 0 dBi, 接受灵敏度 为 -102dBm, 链路预算为 109dB, 输出功率为 7dBm, 休眠模式功耗为< 1 μ Α, 接收模式功耗为 27mA, 发射模式功耗为 40mA。 本领域技术人 员能够理解, 这里给出的参数仅仅是示例性的。 在不偏离本申请的基本 思想的情况下, 本领域技术人员能够采用其他可行的参数。
在另一个特定的实施例中, 基于 IEEE802.i l 来实现第一第二第三 无线接口 1102、 1201、 1301。
可选地, 在多个无线接口之间的通信采用加密机制, 能够防御恶意 攻击, 充分的保障了用户的安全和隐私。
可以通过远程控制或由网关 Π 0才艮据从云服务器 300发送的智能联 动操作命令控制红外分控制器 120和插座转接头 130, 智能地打开与关 闭连接其上的设备电源, 达到节省能耗, 增加安全性的目的。
图 3 示出了依据本申请的另一个实施例的家用电器控制***示意 图。
除了图 2中示出的模块之夕卜,依据图 3所示的实施例中还包括集成 在家用电器中的分控制器 140、烟雾传感模块 150、温湿度传感模块 160、 红外探测模块 170。
集成在家用电器中的分控制器 140中设置有与家用电器中的控制模 块彼此逻辑连接或电连接的第四无线接口模块 1401。第四无线接口模块 1401被配置为接收来自第一无线接口模块 1102的指示智能联动操作的 无线信号,并根据所接收到的指示智能联动操作的无线信号向家用电器 中的控制模块发送相应的信号。 第四无线接口模块 1401 又被配置为向 第一无线接口 1102发送来自于家用电器控制模块 1402的家用设备状态 的信号。
例如,在依据本申请的一个实施例中,图 3中的家用电器为电饭锅。 该电饭锅中包含控制模块, 用以控制电饭锅的工作模式。 例如, 该控制 模块能够与一些按键相连接, 用户能够通过按键选择煮饭模式 /煮粥模 式 /煲汤模式 /再加热模式等, 随后通过控制模块对电饭锅进行控制, 使 其与用户选择的模式相应地工作。 另外, 家用电器控制模块也能向第 四无线接口 1401发送家用设备状态的信号。
在该电饭锅中集成了分控制器 140, 分控制器 140中设置有第四无 线接口模块 1401。 第四无线接口模块 1401与电饭锅中的控制模块相连 接, 以便第四无线接口模块 1401在接收到来自网关 110中的第一无线 接口 1102的信号之后, 能够向电饭锅的控制模块发送相应的指令, 以 使得电饭锅能够相应地工作。
例如, 网关 110通过第一无线接口 1102向家用电器中的第四无线 接口模块 1401发送信号, 以指示电饭锅开始煮粥。 第四无线接口模块 1401在接收到这一信号之后,通知电饭锅的控制模块, 以使得电饭锅的 控制模块控制电饭锅开始煮粥。
本领域技术人员能够理解的是,这里给出的家用电器为电饭锅仅仅 是一个示例性的实施例, 依据本申请, 能够在任何具有控制模块的家用 电器中集成分控制器 140。 从而能够非常筒单地使现有家用电器支持依 据本申请的家用电器控制***的控制, 从而提供一种容易扩展的、 允许 各种家用电器加入的家用电器控制***。 此外, 本领域技术人员能够理解的是, 分控制器 140能够是单独的 模块,或者与家用电器的控制***集成在一起。例如,第四无线接口 1401 釆用 32位的 ARM Cortex-M3处理器, 在完成 ZigBee通讯工作的同时 能够完成复杂的控制逻辑, 因此完全能够将家用电器的控制功能添加至 该处理器, 以使得分控制器 140 能够与家用电器的控制***集成在一 起。
烟雾传感模块 150中设置有彼此逻辑连接或电连接的第五无线接口 模块 1501以及烟雾传感器 1502,第五无线接口模块 1501被配置为向第 一无线接口模块 1 102发送无线信号, 以指示烟雰传感器 1502检测到的 环境状态。
由此, 网关 110能够获得烟雾传感器 1502检测到的环境状态, 从 而能够发现例如火灾等意外情况, 并进行相应的处理。 例如烟雾传感器 1502检测到与烟雾有关的环境状态并将所述环境状态通过第五无线接 口 1501发送到网关 110的第一无线接口 1102, 网关 110通过网络接口 1 101将所述与烟雾有关的环境状态发送到云服务器 300. 云服务器 300 根据预定义的联动条件和接收到的与烟雾有关的环境状态判断是否满 足联动条件, 如预先设定的阈值。 当联动条件满足时 (如环境中的烟 雾氷平超过预先设定的阈值, 则指示发生了火灾), 云服务器 300向网 关发送智能联动操作命令, 如切断电源, 发送烟雾警报等。 同时云服务 器 300通过网络向用户发送提醒信息。
温湿度传感模块 160中设置有彼此逻辑连接或电连接的第六无线接 口模块 1601以及温湿度传感器 1602,第六无线接口模块 1601被配置为 向第一无线接口模块 1102发送无线信号, 以指示温湿度传感器 1602检 测到的环境状态。
由此, 网关 110能够获得温湿度传感模块 160检测到的环境状态并 将所述环境状态发送到云服务器 200。 并根据预定义的联动条件能够发 现例如火灾 /溢水等意外情况, 并进行相应的处理。 例如当温湿度传感 器 1602检测到的环境温度 /湿度超过预先确定的阈值时, 则指示发生了 火灾 /溢水。 红外探测模块 170中设置有彼此£辑连接或电连接的第七无线接口 模块 1701以及红外探测传感器 1702,第七无线接口模块 1701被配置为 向第一无线接口模块 1102发送无线信号, 以指示红外探测传感器 1702 检测到的钚境状态。
由此, 网关 110能够获得红外探测模块 170检测到的环境状态并 将所述环境状态发送到云服务器 200。 所述云服务器根据预定义的联动 奈件和所述环境状态变化能够发现例如有人异常闯入、或有人突然摔倒 等等意外情况, 并进行相应的处理。 由此, 在发生意外情况时, 无需用 户指示, 就能够直接采取減少或避免可能产生的损失的措施。
在依据本申请的一个实施例中, 预定义联动条件为, 例如, 在烟雾 传感器 1502检测到环境中的烟雾水平超过预先确定的阈值时, 或在所 述温湿度传感器 1602检测到的环境温度 /湿度超过预先确定的阈值时, 或在所述红外探测传感器 1702检测到有人异常闯入时, 通过第一无线 接口模块发送指示智能联动操作的无线信号, 以指示切断所有电器的电 源或发出相应的警报。
将所需控制的家用电器分别以无线的形式接入网关,构成星形拓朴 结构。 从网关引出多条无线通信链路, 连接到所有需要实施控制的家用 电器或者需要从其获取数据的监控节点,监控节点例如是上文提到的烟 雾传感模块 150、 温湿度传感模块 160和红外探测模块 170, 也可以嵌 套在各个需要控制的家用电器中, 以获取关于家用电器运行状态的数 据。 使用无线方式传输现场信息。 在依据本申请的一个实施例中, 每个 监控节点不安排任何数据处理能力 , 只是单純地完成采集无源的数据 (例如: 实时耗电量)或完成相应的控制。 利用网络优势对收集的数据 进行自动整合分析, 并制定出不同场景模式使节电到达最优化。 再利用 无线通信技术, 达到实时远程监控。
对于本领域技术人员而言,显然本申请不限于上述示范性实施例的 细节, 而且在不背离本申请的精神或基本特征的情况下, 能够以其他的 具体形式实现本申请。 因此, 无论如何来看, 均应将实施例看作是示范 性的, 而且是非限制性的。 此外, 明显的, "包括" 一词不排除其他元 素和步骤, 并且措辞 "一个" 不排除复数。 装置权利要求中陈述的多个 元件也可以由一个元件来实现。 第一, 第二等词语用来表示名称, 而并 不表示任何特定的顺序。

Claims

权 利 要 求 书
1. 一种在云服务器中进行家用电器控制的方法, 其中, 所述方 法包括以下步骤:
获取来自网关的家用电器设备状态变化的无线信号;
根据所述家用电器状态变化和预定义的联动条件发送智能联动 操作命令给所述网关。
2. 如权利要求 1所述的方法, 其特征在于, 还包括以下步驟 根据应用程序的用户名和网关标识的匹配关系对所述网关进行 注册和数据分发。
3. 如权利要求 1所述方法, 其特征在于, 所述根据家用电器状 态变化和预定义的联动条件发送智能联动操作命令给所述网关的步 驟还包括
根据所述网关获取的家用电器设备状态变化, 判断是否满足所 述联动条件; 以及
当所述联动条件满足时发送所述智能联动操作命令给所述网关 并通过网络将所述家用电器设备状态发送给用户以警示用户。
4. 如权利要求 1所述方法, 其特征在于, 所迷智能联动操作 命令包括开启或关闭所述家用电器设备电源, 调整所述家用电器设 备状态和警示用户。
5. 一种在网关中进行家用电器控制的方法, 其中, 所述方法包 括以下步骤:
获取来自所述家用电器设备的状态变化并发送给所述云服务 器;
接收来自所述云服务器的所述智能联动操作命令并发送所述智 能联动操作命令给智能联动操作命令所对应的家用电器设备或装 置。
6. 一种家用电器控制***, 包括:
云服务器, 所述云服务器被配置为获取来自网关的所述指示智 能联动操作的无线信号并根据所述无线信号和预定义的联动条件发 送所述智能联动操作指令给所述网关;
网关, 其中设置有彼此逻辑连接或电连接的网絡接口, 其中还 设置有与所述网络接口逻辑连接或电连接的第一无线接口模块, 所 述网络接口被配置为与所述云服务器交互无线信号; 所述第一无线 接口被配置为与其他无线接***互无线信号;
红外分控制器, 其中设置有彼此逻辑连接或电连接的第二无线 接口模块以及红外信号发射模块, 所述第二无线接口模块被配置为 接收来自所述第一无线接口模块的指示智能联动操作的无线信号并 向所述第一无线接口发送相应的红外信号所对应的操作状态信号, 并根据所述指示智能联动操作的无线信号控制所述红外信号发射模 块发送相应的红外信号;
插座转接头, 其中设置有彼此逻辑连接或电连接的第三无线接 口模块, 继电器模块以及电量统计模块, 所述第三无线接口模块被 配置为接收来自所述第一无线接口模块的指示智能联动操作的无线 信号, 向所述第一无线接口发送插座转换头状态以及接收来自所述 继电器模块的继电器状态信息, 并根据所述指示智能联动操作的无 线信号控制所述继电器断开或闭合, 从而使得所述插座转换头断开 或接通; 所述电量统计模块被配置为统计该接口的总电量和功率以 及向所述第三无线接口发送统计结果。
7. 根据权利要求 6所述的***, 其特征在于, 其中所述云服务 器还被配置为根据应用程序的用户名和网关标识的匹配关系来进行 注册和数据分发; 根据所述网关获取的家用电器设备状态变化, 判 断是否满足所述联动条件; 以及当所述联动条件满足时发送所述智 能联动操作命令给所述网关并通过网络警示用户。
8. 根据权利要求 6所述的***, 其特征在于, 所述***还包括: 集成在家用电器中的分控制器, 其中设置有与所述家用电器中 的控制模块彼此逻辑连接或电连接的第四无线接口模块, 所述第四 无线接口模块被配置为接收来自所述第一无线接口模块的指示智能 联动操作的无线信号并根据所接收到的所述指示智能联动操作的无 线信号向所述家用电器中的控制模块发送相应的信号; 所述第四无 线接口模块还被配置为向所述第一无线接口模块发送无线信号, 以 指示所述家用电器的状态。
9. 根据权利要求 6所述的***, 其特征在于, 所述***还包括: 烟雾传感模块, 其中设置有彼此逻辑连接或电连接的第五无线 接口模块以及烟雾传感器, 所述第五无线接口模块被配置为向所述 第一无线接口模块发送无线信号, 以指示所述烟雾传感器检测到的 环境状态。
10. 根据权利要求 6 所述的***, 其特征在于, 所述***还包 括:
温湿度传感模块, 其中设置有彼此逻辑连接或电连接的第六无 线接口模块以及温湿度传感器, 所述第六无线接口模块被配置为向 所述第一无线接口模块发送无线信号, 以指示所述温湿度传感器检 测到的环境状态。
1 1. 根据权利要求 6 所述的***, 其特征在于, 所述***还包 括:
红外探测模块, 其中设置有彼此逻辑连接或电连接的第七无线 接口模块以及红外探测传感器, 所述第七无线接口模块被配置为向 所述第一无线接口模块发送无线信号, 以指示所述红外探测传感器 检测到的环境状态。
12. 根据权利要求 6所述的***, 其特征在于, 所述云服务器 还被构造为将接收到的家用电器状态信息变化通过所述应用程序发 送给用户以警示用户。
13. 根据权利要求 9, 10, 11所述的***, 其特征在于, 所述智 能联动条件为, 在所述烟雾传感器检测到的环境中的烟雾水平超过 预先确定的阈值时, 或在所述温湿度传感器检测到的环境温度 /湿度 超过预先确定的阈值时, 或在所述红外探测传感器检测到有人异常 闯入时, 发送智能联动操作指令给网关, 以指示切断所有电器的电
14. 根据权利要求 6 所述的***, 其特征在于, 根据 Zigbee、 Wifi、 蓝牙技术中的一个或多个实现所述无线接口模块。
15. 根据权利要求 6所述的***, 其特征在于, 所述网络接口为 RJ45接口或无线局域网接口或 3G无线通信接口。
PCT/CN2013/085934 2012-10-25 2013-10-25 家用电器控制的方法及*** WO2014063649A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201220555871.6 2012-10-25
CN2012205558716U CN203054541U (zh) 2012-10-25 2012-10-25 家用电器控制***

Publications (1)

Publication Number Publication Date
WO2014063649A1 true WO2014063649A1 (zh) 2014-05-01

Family

ID=48737474

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2013/085934 WO2014063649A1 (zh) 2012-10-25 2013-10-25 家用电器控制的方法及***

Country Status (2)

Country Link
CN (1) CN203054541U (zh)
WO (1) WO2014063649A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104698942A (zh) * 2015-03-16 2015-06-10 陆兴华 一种智能控制与信息管理***及方法
WO2021110263A1 (en) * 2019-12-04 2021-06-10 Electrolux Appliances Aktiebolag Method of controlling a home appliance and control system

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103777590A (zh) * 2012-10-25 2014-05-07 浙江风向标科技有限公司 家用电器控制***
CN104614997B (zh) * 2014-12-12 2017-12-29 联想(北京)有限公司 控制方法、控制装置和电子设备
CN105847163A (zh) * 2015-12-31 2016-08-10 深圳市超然电子有限公司 智能路由器
CN105867147A (zh) * 2016-04-14 2016-08-17 音贝半导体有限公司 一种家用电器控制***
CN106357495A (zh) * 2016-11-01 2017-01-25 惠州良信电器有限公司 兼容无线覆盖的智能家居控制***
CN108122390A (zh) * 2016-11-29 2018-06-05 广东万和新电气股份有限公司 双控制器家用电器
CN108549252A (zh) * 2018-06-20 2018-09-18 江苏优泰智能科技有限公司 一种基于ZigBee的智能家居控制***

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005080065A (ja) * 2003-09-02 2005-03-24 Hitachi Ltd サービス提供システムと認証システム及び署名生成機器とサービス利用機器と検証機器
WO2012008402A1 (ja) * 2010-07-13 2012-01-19 株式会社エヌ・ティ・ティ・ドコモ テーブルタップを用いた電力監視及び制御システム
CN102338834A (zh) * 2010-07-16 2012-02-01 财团法人工业技术研究院 居家电器检测的方法及***
CN202276352U (zh) * 2011-09-07 2012-06-13 中青融基(北京)投资管理有限公司 一种智慧家庭***

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005080065A (ja) * 2003-09-02 2005-03-24 Hitachi Ltd サービス提供システムと認証システム及び署名生成機器とサービス利用機器と検証機器
WO2012008402A1 (ja) * 2010-07-13 2012-01-19 株式会社エヌ・ティ・ティ・ドコモ テーブルタップを用いた電力監視及び制御システム
CN102338834A (zh) * 2010-07-16 2012-02-01 财团法人工业技术研究院 居家电器检测的方法及***
CN202276352U (zh) * 2011-09-07 2012-06-13 中青融基(北京)投资管理有限公司 一种智慧家庭***

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104698942A (zh) * 2015-03-16 2015-06-10 陆兴华 一种智能控制与信息管理***及方法
WO2021110263A1 (en) * 2019-12-04 2021-06-10 Electrolux Appliances Aktiebolag Method of controlling a home appliance and control system

Also Published As

Publication number Publication date
CN203054541U (zh) 2013-07-10

Similar Documents

Publication Publication Date Title
WO2014063649A1 (zh) 家用电器控制的方法及***
US10943470B2 (en) Method and apparatus for controlling a home device remotely in a home network system
US9996068B2 (en) Intelligent wireless and wired control of devices
WO2016145743A1 (zh) 网络控制装置、智能家居***及其控制方法
US20220239622A1 (en) Efficient Network Stack for Wireless Application Protocols
Brandt et al. Home automation routing requirements in low-power and lossy networks
CN105681142B (zh) 组网***和组网方法
CN202978996U (zh) 一种智能家居***
CN103777590A (zh) 家用电器控制***
CN108234238B (zh) 局域网中的调试和个性化设备
CN202711051U (zh) 一种家庭智能控制***
WO2014068559A1 (en) Appliances control devices and methods
CN102185802A (zh) 一种智能家居嵌入式网关
CN106302049A (zh) 一种基于ZigBee技术的智能家居***
CN106997649A (zh) 一种网络智能明火探测器控制***及其控制方法
CN104880952A (zh) 一种基于运营服务的智能家居管理***
CN110045629A (zh) 一种智能安防家居控制***
CN107948003A (zh) 一种智能家居的一键加网装置及其配置方法
KR101738784B1 (ko) IoT 환경 구축을 위한 무선 네트워크 기능이 결합된 지능형 통합 스위치 및 이를 이용하는 제어 방법
CN112789828B (zh) 局域网中的遥控器功能的智能适配
CN104007707A (zh) 一种无线传感器网络智能家居
CN206460285U (zh) 一种室内低功耗智能控制器
CN205863553U (zh) 物联网智能插座
CN208209981U (zh) 一种节能用电***
CN204272389U (zh) 一种基于ZigBee网状结构的智能家居***

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 13848407

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 12/10/2015)

122 Ep: pct application non-entry in european phase

Ref document number: 13848407

Country of ref document: EP

Kind code of ref document: A1