WO2008006288A1 - Procédé et système de commande d'emplacement distant, extrémité de télécommande et extrémité commandée - Google Patents

Procédé et système de commande d'emplacement distant, extrémité de télécommande et extrémité commandée Download PDF

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Publication number
WO2008006288A1
WO2008006288A1 PCT/CN2007/001948 CN2007001948W WO2008006288A1 WO 2008006288 A1 WO2008006288 A1 WO 2008006288A1 CN 2007001948 W CN2007001948 W CN 2007001948W WO 2008006288 A1 WO2008006288 A1 WO 2008006288A1
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WIPO (PCT)
Prior art keywords
module
control
controlled
remote control
remote
Prior art date
Application number
PCT/CN2007/001948
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English (en)
French (fr)
Inventor
Mingzhu Dong
Yingjiang Ma
Gang Jin
Liang Zeng
Original Assignee
Gree Electric Appliances Inc. Of Zhuhai
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.)
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First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=37578871&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=WO2008006288(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Gree Electric Appliances Inc. Of Zhuhai filed Critical Gree Electric Appliances Inc. Of Zhuhai
Priority to EP07721521A priority Critical patent/EP2056534A4/en
Priority to US12/308,981 priority patent/US20100033296A1/en
Publication of WO2008006288A1 publication Critical patent/WO2008006288A1/zh

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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
    • H04L12/2816Controlling 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
    • 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
    • H04L2012/2847Home automation networks characterised by the type of home appliance used
    • H04L2012/2849Audio/video appliances
    • 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
    • H04L2012/2847Home automation networks characterised by the type of home appliance used
    • H04L2012/285Generic home appliances, e.g. refrigerators
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W64/00Locating users or terminals or network equipment for network management purposes, e.g. mobility management

Definitions

  • the present invention relates to the field of wireless communications, and in particular, to a method and system for remote location control using a wireless network, and a remote control end and a controlled end of the system. Background technique
  • the wireless remote control air conditioner currently known is generally composed of a receiver and a transmitter, and can only be operated at a short distance. If the distance is too far, generally some related operations are required, which is cumbersome. After investigation, many users hope that when they return home/company and a certain distance from the destination, the air conditioner can start itself without user operation. The current air conditioner basically cannot meet this requirement.
  • GPS Global Positioning System
  • the present invention overcomes the shortcomings of the prior art and provides a method, system, and remote control and control end in such a system that utilizes control over a wireless network.
  • the present invention provides a remote positioning control method, including the following steps:
  • the remote control terminal obtains its own geographic coordinate information through a wireless communication network
  • the control module of the remote control terminal compares the geographic coordinate information with the preset parameter, and if the preset condition is not met, returns to step S1; if the preset condition is met, sends a control message to the controlled terminal;
  • the controlled terminal receives the control information.
  • the control module of the controlled end controls the controlled end according to the received control information.
  • the step S4 further includes: the control module of the controlled end starts the controlled end, and feeds back the operating state data of the controlled end to the remote control end.
  • the method before the step S1, the method further includes: initializing the remote control terminal and the controlled terminal, and inputting or setting the preset parameter.
  • the controlled end is an air conditioner, a television set, a refrigerator, a washing machine or a microwave oven.
  • the present invention provides a remote control terminal for performing remote positioning control, including: a positioning module, configured to acquire geographic coordinate information of the remote control terminal;
  • Human-computer interaction module which is used for system initialization and human-computer interaction
  • the transceiver module is connected to the positioning module and the human-machine interaction module, and communicates with the controlled terminal.
  • the positioning module is a GPS module.
  • the positioning module is a wireless communication positioning module.
  • the positioning module is a mobile phone.
  • the remote control terminal further includes a control module that is connected to the positioning module, the human-machine interaction module, and the transceiver module, and the control module calculates the remote control terminal according to the geographic coordinate information. a distance from the controlled end, and transmitting control information to the controlled end through the transceiver module when the distance is less than a preset distance.
  • the present invention provides a controlled terminal for performing remote positioning control, including a controlled device, and further comprising:
  • a communication module which receives geographic coordinate information and/or control parameters of the remote control terminal and feeds back the operating state of the controlled device to the remote control terminal;
  • control module that controls the controlled device according to the control parameter, and feeds back operation status information of the controlled device to the communication module.
  • control device of the controlled end further calculates a distance between the remote control end and the controlled device according to the geographic coordinate information, and when the distance is less than a preset distance, according to the The control information controls the controlled end.
  • the controlled device is an air conditioner, a television, a refrigerator, a washing machine or a microwave oven.
  • the invention also provides a system for performing remote positioning control, comprising a remote control end and a controlled end, wherein:
  • the remote control terminal includes:
  • the controlled terminal includes the controlled device, and further includes:
  • a communication module which receives control parameters of the remote control terminal and feeds back to the remote control terminal the operating state of the controlled device;
  • the positioning module is a GPS module or a mobile phone.
  • the remote control terminal further includes a control module that is connected to the positioning module, the human-machine interaction module, and the transceiver module, and the control module calculates the remote control terminal and the location according to the geographic coordinate information. Describe the distance of the controlled end, and send control information to the controlled end through the transceiver module when the distance is less than the preset distance.
  • the controlled device is an air conditioner, a television, a refrigerator, a washing machine or a microwave oven.
  • the present invention primarily provides a method and system for controlling a controlled device, such as an air conditioner, over a wireless network.
  • the system can pre-set the distance that the controlled device (such as an air conditioner) can automatically run, and when it detects that the geographical location information of the person reaches the preset distance, the control is sent to the controlled device (such as an air conditioner) through the remote control module.
  • the module controls the controlled device (such as an air conditioner) to run automatically, and the manual device (such as an air conditioner) simultaneously feeds back the operation information.
  • This system can improve the accuracy of intelligent startup of controlled equipment (such as air conditioning) and reduce energy waste.
  • the user can intelligently start the controlled device (such as air conditioner) at the remote end, without manual operation, and the controlled device (such as air conditioner) will automatically start under the condition set by the user, which is more convenient and quick to use.
  • the controlled device such as air conditioner
  • FIG. 1 is a schematic view showing the composition of an air conditioning system in the first embodiment
  • Embodiment 3 is a schematic view showing the composition of an air conditioning system in Embodiment 2;
  • FIG. 4 is a communication schematic diagram of a mobile phone positioning air conditioning system in Embodiment 2;
  • Figure 5 is a flow chart of the control method in the second embodiment. Detailed ways
  • FIG. 1 discloses a global positioning air conditioning system including a remote GPS control device 1 and an air conditioner 2.
  • the air conditioner 2 is provided with a controller 21 and a communication module 22;
  • the GPS control device 1 includes a control module 11, a GPS receiver 12, a human-machine interaction module 13 and a transceiver module 14, a GPS receiver 12, a human-machine interaction module 13 and a transceiver module. 14 is connected to the control module 11, respectively.
  • the controller 21 is used to assist the control module 11 to control the state of the air conditioner 2, such as the auxiliary control module 11 turning on or off the air conditioner, or adjusting the air conditioner temperature.
  • the communication module 22 is configured to receive control information transmitted from the remote end. At the same time, the status information of the air conditioner 2 is transmitted to the transceiver module 14 in the GPS control device 1 by wireless communication, and then the status information is transmitted to the control module 11.
  • the GPS control device 1 The GPS receiver 12 acquires the current coordinate information of the GPS control device 1 through the GPS network. The control module 11 obtains the above information from the GPS receiver 12, and calculates the distance from the air conditioner according to the obtained information. When the automatic starting distance of the air conditioner is met, the air conditioner 2 will be The control information is transmitted to the communication module 22 of the air conditioner 2, and further to the controller 21, which controls the air conditioning state.
  • the user can control the control module 11 of the GPS control device 1 through the human-computer interaction module 13 to control the state of the air conditioner, and at the same time, the initial setting of the system can be realized by the human-machine interaction module 13, including the setting of the target coordinates, the setting of the distance parameter, and Air conditioning system enabled switch settings.
  • the controller 21 controls the state of the air conditioner, and simultaneously transmits the state information of the air conditioner to the control module 11 through the transceiver module 14, and finally, the user can know the state information of the air conditioner 2 through the human-machine interaction module 13.
  • Fig. 2 shows a flow chart of an embodiment of the present embodiment. After the start step 201, in step 203, the user initializes the information of each module through the human-machine interaction module 13 in the GPS control device 1, such as the position of the air conditioner and the automatic start distance of the air conditioner.
  • the user can hold the GPS control device 1 at the remote end of the air conditioner.
  • the control method includes the following steps: Step 205, determining that the GPS function switch is turned on, if it is turned on, proceeding to step 207, otherwise, entering the ending step 215;
  • step 207 the GPS receiver 12 obtains the geographical coordinate information acquired in real time through the GPS network, and simultaneously transmits the above information to the control module 11;
  • step 209 the control module 11 calculates the distance from the air conditioner according to the obtained information.
  • step 211 when the automatic starting distance of the air conditioner is met, the control information of the air conditioner 2 is transmitted to the communication module 22 of the air conditioner 2 through the transceiver module 14, and further Transfer to controller 21;
  • step 213 the controller 21 of the air conditioner 2 controls the state of the air conditioner 2, and transmits the state information to the transceiver module 14 and the control module 11 in the GPS control module 1 through the wireless communication network, and the user can obtain the air conditioner through the human-machine interaction module 13. 2 status information. If it is automatically completed by the system without the user's operation during the control process, the user only needs to initialize the settings before use. The user can control the opening and closing of the remote control function by setting the GPS control device 1 or the function button in the air conditioner 2.
  • Embodiment 2 is a diagrammatic representation of GPS can cover the whole world and has higher coverage and accuracy than general wireless signals. The controllable distance of the air conditioning system using GPS also increases. Embodiment 2:
  • the remote positioning air conditioning system in this embodiment is an air conditioning system utilizing mobile network technology, which is referred to herein as a mobile phone positioning air conditioning system.
  • FIG. 3 for the mobile phone positioning air conditioning system, including the remote mobile phone 3 and the air conditioner 2.
  • the structure of the air conditioner 2 is more than that of the control module 11 in the first embodiment; that is, in the present embodiment, the control module 11 is disposed near the air conditioner.
  • the mobile phone 3 acquires the current coordinates of the mobile phone 3 through a mobile communication network (such as a GSM network, a CDMA network, a 3G, a GPRS network, etc.), and transmits the above-mentioned geographic coordinate information to the control module 11 of the air conditioner via the wireless network via the communication module 22.
  • the control module 11 calculates the distance from the air conditioner 2, and at the same time compares and determines whether the automatic starting distance of the air conditioner 2 is met. When the operating conditions are met, the control module 11 controls the state of the air conditioner through the controller 21 based on the initially set data.
  • FIG. 4 is a schematic diagram of a communication network used in the system of FIG.
  • the mobile telephone 3 implements remote positioning control of the air conditioner 2 by one or more of the base stations 401 ... 406.
  • Fig. 5 shows a flow chart of an embodiment of the present embodiment.
  • the user After the start step 501, in steps 503, 505, the user first initializes the information of each module through the mobile phone 3 that he or she carries with him, such as the position of the air conditioner and the automatic starting distance of the air conditioner.
  • control method When used, the control method is as follows:
  • step 507 it is determined whether the mobile phone positioning function switch is turned on, such as opening in the entering step 509, otherwise enter the end step 515;
  • step 509 the mobile phone 3 acquires the current coordinates of the mobile phone 3 in real time through the mobile communication network, and transmits the above-mentioned geographic coordinate information to the control module 11 of the air conditioner via the wireless network via the communication module 22;
  • control module 11 calculates the distance from the air conditioner 2, and at the same time compares and determines whether the automatic starting distance of the air conditioner 2 is met.
  • control module 11 controls the action of the air conditioner through the controller 21 based on the initially set data, and transmits the status information to the mobile phone 3 via the wireless communication network, as shown in step 513.
  • the user can obtain the status information of the air conditioner 2 in real time through the mobile phone 3. It is automatically completed by the system without the user's operation during the control process. The user only needs to initialize the settings before use.
  • Embodiment 3 Can the user control the remote control function by setting the function buttons in the mobile phone 3 or the air conditioner 2? Start and close.
  • the controlled device is not an air conditioner but other electrical appliances.
  • air conditioner such as TV sets, refrigerators, washing machines, micro boilers.
  • the above embodiments are merely illustrative and not limiting of the technical solutions of the present invention.
  • the remote control is controlled, multiple units can be controlled by the same remote control unit, or the same air conditioner can be controlled by multiple remote control units.
  • the controller and the communication module provided in the air conditioning system can be designed as one body; in addition, the wireless network is not limited to the GPS and mobile communication networks in the above embodiments. Therefore, any modifications or sub-replacements of the spirit and scope of the invention are intended to be included within the scope of the appended claims.

Description

远程定位控制的方法、 系统及其远程控制端和受控端 技术领域
本发明涉及无线通信领域,尤其涉及到一种利用无线网络进行远程定位控 制的方法、 系统, 以及该系统的远程控制端和受控端。 背景技术
随着人们生活质量的逐渐提高, 在潮湿的春天、 炎热的夏天、 寒冷的冬 天越来越多的人希望能够一回到家中就能享受到空调带给他们的舒适。 目前 所知的无线遥控空调, 一般是由接收器及发射器组成, 只能在很短距离操作, 若距离太远, 一般都需要一些的相关操作, 较为烦琐。 经调查, 很多用户希 望自己在快回到家 /公司、 距离目的地一定距离时空调可以自己启动, 无须用 户操作, 现在的空调基本无法满足这一要求。
而今, 人们逐渐认识到目标定位的价值, 可通过无线网络在远端控制空 调的控制器来完成远程控制。 全球定位系统(GPS)技术是其中的一种, GPS 技术也已逐渐融入了国民经济建设、 国防建设、 人民生活和社会发展的各个 应用领域, 另外它还具有的全天候、 高精度、 高可靠性和自动测量的特点。
随着通信技术不断提高和基础通信网络设施的不断完善, 通过电信移动 运营商的网络 (如 GSM网、 CDMA网、 3G、 GPRS等网络)获取移动终端用户 位置信息 (经纬度坐标)的应用也日渐增多,通过移动电话和通讯网络定位的消 费产品逐渐进入人们的生活。
确 认 本 发明内容
本发明克服了现有技术中的缺点, 提供一种利用到无线网络来控制的方 法、 系统, 以及这种系统中的远程控制端和受控端。
一方面, 本发明提供一种远程定位控制方法, 包括以下步骤:
51、 远程控制端通过无线通信网络获取自己的地理坐标信息;
52、 所述远程控制端的控制模块比较所述地理坐标信息和预设参数, 如 果不满足预设条件, 则返回步骤 S1 ; 如果满足预设条件, 则向受控端发送控 制" ί 息;
53、 所述受控端接收所述控制信息;
54、 所述受控端的控制模块根据所接收的控制信息控制所述受控端。 在所述的方法中, 所述步骤 S4进一歩包括: 所述受控端的控制模块启动 所述受控端, 并将所述受控端的运行状态数据反馈给所述远程控制端。
在所述的方法中, 所述步骤 S1之前还包括: 初始化所述远程控制端和所 述受控端, 输入或设置所述预设参数。
在所述的方法中, 所述受控端为空调、 电视机、 电冰箱、 洗衣机或者微 波炉。 另一方面, 本发明提供一种进行远程定位控制的远程控制端, 包括: 定位模块, 其用于获取所述远程控制端的地理坐标信息;
人机交互模块, 其用于系统初始化以及人机交互;
收发模块, 其与所述定位模块、 人机交互模块连接, 与受控端通信。 在所述的远程控制端中, 所述定位模块为 GPS模块。
在所述的远程控制端中, 所述定位模块为无线通信定位模块。 在所述的远程控制端中, 所述定位模块为移动电话。
在所述的远程控制端中, 所述远程控制端还包括与所述定位模块、 人机 交互模块、 收发模块连接的控制模块, 所述控制模块根据所述地理坐标信息 计算所述远程控制端与所述受控端的距离, 并在所述距离小于预设距离时通 过所述收发模块将控制信息发送到所述受控端。 另一方面, 本发明还提供一种进行远程定位控制的受控端, 包括受控设 备, 还包括:
通信模块, 其接收远程控制端的地理坐标信息和 /或控制参数并向远程控 制端反馈所述受控设备的运行状态;
控制模块, 其根据所述控制参数控制所述受控设备, 并将所述受控设备 的运行状态信息反馈给所述通信模块。
在所述的受控端中, 所述受控端的控制设备还根据所述地理坐标信息计 算所述远程控制端与所述受控设备的距离, 并在所述距离小于预设距离时根 据所述控制信息控制所述受控端。
在所述的受控端中, 所述受控设备为空调、 电视机、 电冰箱、 洗衣机或 者微波炉。 本发明还提供一种进行远程定位控制的系统, 包括远程控制端和受控端, 其特征在于:
所述远程控制端包括:
定位模块, 其用于获取所述远程控制端的地理坐标信息; 人机交互模块, 其用于系统初始化以及人机交互; 收发模块, 其与所述定位模块、 人机交互模块连接, 与受控端通信; 所述受控端包括受控设备, 还包括:
通信模块, 其接收远程控制端的控制参数并向远程控制端反馈所述 受控设备的运行状态;
控制模块, 其根据所述控制参数控制所述受控设备, 并将所述受控 设备的运行状态信息反馈给所述通信模块。 在所述的系统中, 所述定位模块为 GPS模块或者移动电话。
在所述的系统中, 所述远程控制端还包括与所述定位模块、 人机交互模 块、 收发模块连接的控制模块, 所述控制模块根据所述地理坐标信息计算所 述远程控制端与所述受控端的距离, 并在所述距离小于预设距离时通过所述 收发模块将控制信息发送到所述受控端。
在所述的系统中, 所述受控设备是空调、 电视机、 电冰箱、 洗衣机或者 微波炉。 与现有技术相比, 本发明主要提供一种无线网络来控制受控设备 (例如 空调) 的方法及系统。 这种系统能够预先设置受控设备 (例如空调) 能自动 运行的距离, 当检测到人所处的地理位置信息达到预设距离时, 通过远程控 制模块发送给受控设备 (例如空调) 的控制模块控制受控设备 (例如空调) 自动运行, 手动设备 (例如空调) 同时将运行信息进行反馈。 这种系统可以 提高受控设备 (例如空调) 智能启动的准确性, 减少能源浪费。 同时, 用户 可以在远端智能启动受控设备 (例如空调), 无须人工操作, 受控设备 (例如 空调) 会在用户设置好的条件下自动启动, 在使用上更方便快捷。 附图说明
图 1是实施例一中的空调系统组成示意图;
图 2是实施例一中的控制方法流程图;
图 3是实施例二中的空调系统组成示意图;
图 4是实施例二中的移动电话定位空调系统的通信原理图;
图 5是实施例二中的控制方法流程图。 具体实施方式
以下结合附图及实施例对本发明进行详细说明。 实施例一: 本实施例中的具备远程定位功能的空调系统是利用 GPS 技术的空调系 统, 这里称其为全球定位空调系统。 请参阅图 1, 图 1 揭示的全球定位空调系统, 包括远端的 GPS控制装置 1及空调 2。 空调 2配有一控制器 21及一通讯模块 22; GPS控制装置 1包括 控制模块 11、 GPS接收机 12、 人机交互模块 13及收发模块 14, GPS接收机 12、 人机交互模块 13及收发模块 14分别与控制模块 11连接。 对于空调 2: 控制器 21用以辅助控制模块 11控制空调 2的状态,如辅助 控制模块 11开启、 关闭空调, 或调节空调温度。 通讯模块 22用来接收从远 端传来的控制信息, 同时, 把空调 2的状态信息通过无线通信传输到 GPS控 制装置 1中的收发模块 14, 然后把状态信息传输到控制模块 11。 对于 GPS控制装置 1: GPS接收机 12通过 GPS网络获取 GPS控制装置 1的当前坐标信息。 控制模块 11从 GPS接收机 12获取上述信息, 并根据获 得的信息计算距空调的距离, 当符合空调的自动启动距离时, 将对空调 2的 控制信息传输给空调 2的通讯模块 22, 进而传输到控制器 21, 控制器 21控 制空调状态。
用户可通过人机交互模块 13控制 GPS控制装置 1的控制模块 11, 从而 控制空调的状态, 同时可以通过人机交互模块 13实现对系统的初始设置, 包 括目的坐标的设置、 距离参数的设置以及空调系统使能的开关设置。 控制器 21控制空调状态, 同时把空调的状态信息通过收发模块 14传输到控制模块 11, 最终, 用户可以通过该人机交互模块 13获知空调 2的状态信息。 图 2示出了本实施例实施方式的流程图。 在开始步骤 201之后, 在步骤 203中,用户通过 GPS控制装置 1中的人机交互模块 13对各模块的信息进行 初始化设置, 如空调的位置及空调的自动启动距离。
用户可以在空调的远端持有 GPS控制装置 1, 控制方法包括如下步骤: 步骤 205中, 判断 GPS功能开关打开, 如果打开则进入步骤 207, 否则 进入结束步骤 215;
步骤 207中, GPS接收机 12通过 GPS网络实时获取的地理坐标信息, 同时把上述信息传输到控制模块 11 ;
步骤 209中, 控制模块 11根据获得的信息计算距空调的距离; 步骤 211 中, 当符合空调的自动启动距离时, 对空调 2的控制信息通过 收发模块 14传输给空调 2的通讯模块 22, 进而传输到控制器 21 ;
步骤 213中, 空调 2的控制器 21控制空调 2的状态, 并把状态信息通过 无线通信网络传输到 GPS控制模块 1中的收发模块 14及控制模块 11, 用户 可以通过人机交互模块 13获得空调 2的状态信息。如果在控制过程中无须用 户的操作而由本系统自动完成, 用户只需在使用前初始化设置即可。 用户可通过设置 GPS控制装置 1或是空调 2中的功能按钮来控制远程控 制功能的开启与关闭。
GPS可覆盖全球, 与一般的无线信号相比覆盖率及精确度高。 利用 GPS 的空调系统的可控距离也随之变大。 实施例二:
本实施例中的远程定位空调系统是利用移动网络技术的空调系统, 这里 称其为移动电话定位空调系统。
请参阅图 3, 图 3 揭示的移动电话定位空调系统, 包括远端的移动电话 3 及空调 2。 空调 2的结构与实施例一中的相比多了控制模块 11 ; 即本实施例 中, 控制模块 11设置在空调附近。
移动电话 3通过移动通信网络(如 GSM网、 CDMA网、 3G、 GPRS等网 络)获取移动电话 3的当前坐标,并将上述地理坐标信息通过无线网络经通讯 模块 22传输给空调的控制模块 11, 控制模块 11计算距空调 2的距离, 同时 比较判断是否符合空调 2的自动启动距离。 当符合运行条件时, 控制模块 11 根据最初设置好的数据通过控制器 21控制空调的状态。
图 4为图 3的系统所用的通信网络示意图。移动电话 3通过基站 401…… 406中的一个或多个实现对空调 2的远程定位控制。
图 5示出了本实施例实施方式的流程图。开始步骤 501之后,在步骤 503、 505中,用户在先通过自己随身携带的移动电话 3对各模块的信息进行初始化 设置, 如空调的位置及空调的自动启动距离等。
使用时, 控制方法如下:
步骤 507 中, 判断移动电话定位功能开关是否打开, 如打开在进入步骤 509, 否则进入结束步骤 515 ;
步骤 509中, 移动电话 3通过移动通信网络实时获取移动电话 3的当前 坐标, 并将上述地理坐标信息通过无线网络经通讯模块 22传输给空调的控制 模块 11 ;
步骤 511中, 控制模块 11计算距空调 2的距离, 同时比较判断是否符合 空调 2的自动启动距离。
当符合运行条件时, 控制模块 11 根据最初设置好的数据通过控制器 21 控制空调的动作, 并把状态信息通过无线通信网络传输到移动电话 3,如步骤 513所示。此时, 用户可以通过移动电话 3实时获得空调 2的状态信息。在控 制过程中无须用户的操作而由本系统自动完成, 用户只需在使用前初始化设 置即可。
用户可通过设置移动电话 3或是空调 2中的功能按钮来控制远程控制功 能的? ξ启与关闭。 实施例三:
本实施例与实施例一或实施例二的区别在于本实施例中, 被控的装置不 是空调, 而是其他电器。 如电视机、 电冰箱、 洗衣机、 微锅炉。
以上实施例仅用以说明而非限制本发明的技术方案。 如被远程控制的空 调可以有多台被同一远程控制装置控制, 或者同一台空调被多个远程控制装 置控制。 再如, 空调系统配备的控制器及通讯模块可设计为一体; 另外, 无 线网络也不限于上述实施例中的 GPS及移动通信网络。 因此, 不脱辜本发明 精神和范围的任何修改或局部替换, 均应涵盖在本发明的权利要求范围当中。

Claims

权 利 要 求
1、 一种远程定位控制方法, 其特征在于, 包括以下步骤:
51、 远程控制端通过无线通信网络获取自己的地理坐标信息;
52、 所述远程控制端的控制模块比较所述地理坐标信息和预设参数, 如 果不满足预设条件, 则返回步骤 S1 ; 如果满足预设条件, 则向受控端发送控 制 "fe息;
53、 所述受控端接收所述控制信息;
54、 所述受控端的控制模块根据所接收的控制信息控制所述受控端。
2、 根据权利要求 1所述的方法, 其特征在于, 所述步骤 S4进一步包括: 所述受控端的控制模块启动所述受控端, 并将所述受控端的运行状态数 据反馈给所述远程控制端。
3、 根据权利要求 1所述的方法, 其特征在于, 所述步骤 S1之前还包括: 初始化所述远程控制端和所述受控端, 输入或设置所述预设参数。
4、 根据权利要求 1至 3中任意一项所述的方法, 其特征在于, 所述受控 端为空调、 电视机、 电冰箱、 洗衣机或者微波炉。
5、 一种进行远程定位控希1)的远程控制端, 其特征在于, 包括:
定位模块, 其用于获取所述远程控制端的地理坐标信息;
人机交互模块, 其用于系统初始化以及人机交互;
收发模块, 其与所述定位模块、 人机交互模块连接, 与受控端通信。
6、 根据权利要求 5 所述的远程控制端, 其特征在于, 所述定位模块为 GPS模块。
7、 根据权利要求 5所述的远程控制端, 其特征在于, 所述定位模块为无 线通信定位模块。
8、 根据权利要求 7所述的远程控制端, 其特征在于, 所述定位模块为移 动电话。
9、 根据权利要求 5到 8中任意一项所述的远程控制端, 其特征在于, 所 述远程控制端还包括与所述定位模块、 人机交互模块、 收发模块连接的控制 模块, 所述控制模块根据所述地理坐标信息计算所述远程控制端与所述受控 端的距离, 并在所述距离小于预设距离时通过所述收发模块将控制信息发送 到所述受控端。
10、 一种进行远程定位控制的受控端, 包括受控设备, 其特征在于, 还 包括:
通信模块, 其接收远程控制端的地理坐标信息和 /或控制信息, 并向远程 控制端反馈所述受控设备的运行状态;
控制模块, 其根据所述控制参数控制所述受控设备, 并将所述受控设备 的运行状态信息反馈给所述通信模块。
11、 根据权利要求 10所述的受控端, 其特征在于, 所述受控端的控制设 备根据所述地理坐标信息计算所述远程控制端与所述受控设备的距离, 并在 所述距离小于预设距离时根据所述控制信息控制所述受控端。
12、 根据权利要求 10或 11所述的受控端, 其特征在于, 所述受控设备 为空调、 电视机、 电冰箱、 洗衣机或者微波炉。
13、 一种进行远程定位控制的系统, 包括远程控制端和受控端, 其特征 在于:
所述远程控制端包括:
定位模块, 其用于获取所述远程控制端的地理坐标信息; 人机交互模块, 其用于系统初始化以及人机交互;
收发模块, 其与所述定位模块、 人机交互模块连接, 与受控端通信; 所述受控端包括受控设备, 还包括:
通信模块, 其接收远程控制端的控制参数并向远程控制端反馈所述 受控设备的运行状态;
控制模块, 其根据所述控制参数控制所述受控设备, 并将所述受控 设备的运行状态信息反馈给所述通信模块。
14、 根据权利要求 13 所述的系统, 其特征在于, 所述定位模块为 GPS 模块或者移动电话。
15、 根据权利要求 14所述的系统, 其特征在于, 所述远程控制端还包括 与所述定位模块、 人机交互模块、 收发模块连接的控制模块, 所述控制模块 根据所述地理坐标信息计算所述远程控制端与所述受控端的距离, 并在所述 距离小于预设距离时通过所述收发模块将控制信息发送到所述受控端。
16、 根据权利要求 13到 15中任意一项所述的系统, 其特征在于, 所述 受控设备是空调、 电视机、 电冰箱、 洗衣机或者微波炉。
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CN1889614B (zh) 2011-07-27

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