WO2012142887A1 - 家庭网关自主开关的方法、装置及系统 - Google Patents

家庭网关自主开关的方法、装置及系统 Download PDF

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Publication number
WO2012142887A1
WO2012142887A1 PCT/CN2012/072263 CN2012072263W WO2012142887A1 WO 2012142887 A1 WO2012142887 A1 WO 2012142887A1 CN 2012072263 W CN2012072263 W CN 2012072263W WO 2012142887 A1 WO2012142887 A1 WO 2012142887A1
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WIPO (PCT)
Prior art keywords
home gateway
signal
signal transceiver
distance
preset value
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Application number
PCT/CN2012/072263
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English (en)
French (fr)
Inventor
邢自成
王明
Original Assignee
中兴通讯股份有限公司
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Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2012142887A1 publication Critical patent/WO2012142887A1/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
    • H04L12/283Processing of data at an internetworking point of a home automation network
    • H04L12/2834Switching of information between an external network and a home network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/12Arrangements for remote connection or disconnection of substations or of equipment thereof
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/50Reducing energy consumption in communication networks in wire-line communication networks, e.g. low power modes or reduced link rate

Definitions

  • the present invention relates to the field of communications, and in particular, to a method, apparatus and system for autonomous switching of a home gateway. Background technique
  • gateways In the early days of network convergence, device development represented by gateways is an important feature to promote service convergence, such as home gateways. With the strong promotion of domestic operators (such as telecommunications, mobile, China Unicom, etc.) and major foreign operators, home gateways have entered thousands of households. As the core equipment of the home network, the home gateway is inseparable from the development of the digital home industry. It has a major impact on the development of the digital industry and is an important link to achieve family business integration. However, in general, the home gateway maintains a power-on state even when it is not in use. Although the power consumption of a single home gateway is relatively small, the power consumption of thousands of home gateways is cumulative, and the wasted resources are quite large. Summary of the invention
  • the main object of the present invention is to provide a method, device and system for a home gateway autonomous switch, which aims to save energy.
  • the invention provides a method for a home gateway autonomous switch, comprising the steps of:
  • the signal of the signal transceiver is periodically detected, and the distance between the signal transceiver and the home gateway is determined; when the distance between the signal transceiver and the home gateway is greater than a preset value, the home gateway is controlled to be in a closed state;
  • the signal of the timing detection signal transceiver determines that the distance between the signal transceiver and the home gateway includes:
  • the determining, by the feedback message, whether the terminal that sends the feedback message is a signal transceiver corresponding to the home gateway includes:
  • the terminal that sends the feedback message is a signal transceiver carried by a user of the home gateway.
  • controlling the home gateway to be in the closed state includes:
  • the control signal is sent to close the home gateway, otherwise it will not operate.
  • controlling the home gateway to be in an open state includes:
  • the invention also provides a home gateway based signal processor, comprising: a detecting module, configured to periodically detect a signal of a signal transceiver carried by the user, and determine a distance between the signal transceiver and the home gateway;
  • a first control module configured to: when the distance between the signal transceiver and the home gateway is greater than a preset value, control the home gateway to be in a closed state;
  • a second control module configured to: when the distance between the signal transceiver and the home gateway is less than or equal to the preset value, control the home gateway to be in an open state.
  • the detecting module comprises:
  • a sending unit configured to send a broadcast message
  • a receiving unit configured to receive a feedback message of the broadcast packet
  • the determining unit is configured to determine, according to the feedback message, whether the terminal that sends the feedback message is a signal transceiver corresponding to the home gateway.
  • the determining unit is specifically configured to:
  • the first control module includes:
  • a determining unit configured to determine a current state of the home gateway when the distance between the signal transceiver and the home gateway is greater than the preset value
  • the closing unit is configured to send a control signal to close the home gateway when the current state of the home gateway is turned on, otherwise it does not operate.
  • the second control module includes:
  • a determining unit configured to determine a current state of the home gateway when the distance between the signal transceiver and the home gateway is less than the preset value
  • the opening unit is configured to send a control signal to turn on the home gateway when the current state of the home gateway is off, otherwise it does not operate.
  • the invention also provides a system for a home gateway autonomous switch, comprising a home gateway, a signal processor and a signal transceiver, wherein the signal processor comprises:
  • a detecting module configured to periodically detect a signal of a signal transceiver carried by the user, and determine a distance between the signal transceiver and the home gateway;
  • a first control module configured to: when the distance between the signal transceiver and the home gateway is greater than a preset value, control the home gateway to be in a closed state;
  • a second control module configured to: when the distance between the signal transceiver and the home gateway is less than or equal to the preset value, control the home gateway to be in an open state.
  • the detecting module comprises:
  • a sending unit configured to send a broadcast message
  • a receiving unit configured to receive a feedback message of the broadcast packet
  • the determining unit is configured to determine, according to the feedback message, whether the terminal that sends the feedback message is a signal transceiver corresponding to the home gateway.
  • the determining unit is specifically configured to:
  • the first control module includes:
  • a determining unit configured to determine a current state of the home gateway when the distance between the signal transceiver and the home gateway is greater than the preset value
  • the closing unit is configured to send a control signal to close the home gateway when the current state of the home gateway is turned on, otherwise it does not operate.
  • the second control module includes:
  • a determining unit configured to determine a current state of the home gateway when the distance between the signal transceiver and the home gateway is less than the preset value;
  • the opening unit is configured to send a control signal to turn on the home gateway when the current state of the home gateway is off, otherwise it does not operate.
  • the home gateway comprises an autonomous switch enabling module for enabling or invalidating the control function of the signal processor by the signal processor.
  • the method, device and system for a home gateway autonomous switch are provided.
  • the home gateway automatically opens, and the user is away from the home gateway, and the distance reaches the preset value.
  • the home gateway is shut down autonomously, and from the perspective of low carbon, environmental protection and energy saving, the power energy is greatly saved without affecting the use of the user.
  • FIG. 1 is a schematic flowchart of a method for autonomous switch of a home gateway according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a detecting step in an embodiment of a method for autonomous switch of a home gateway according to the present invention
  • FIG. 3 is a schematic flowchart of a shutdown step in an embodiment of a method for autonomously switching a home gateway according to the present invention
  • FIG. 4 is a schematic flow chart showing an opening procedure in an embodiment of a method for autonomously switching a home gateway according to the present invention
  • FIG. 5 is a schematic structural diagram of an embodiment of a signal processor based on a home gateway according to the present invention
  • FIG. 6 is a schematic structural diagram of a detection module according to an embodiment of a signal processor based on a home gateway according to the present invention
  • FIG. 7 is a schematic structural diagram of a first control module in an embodiment of a home gateway-based signal processor according to the present invention.
  • FIG. 8 is a schematic structural diagram of a second control module in an embodiment of a home gateway-based signal processor according to the present invention.
  • FIG. 9 is a schematic structural diagram of an embodiment of a system for autonomous switch of a home gateway according to the present invention.
  • FIG. 10 is a schematic structural diagram of a home gateway in an embodiment of a system for a home gateway autonomous switch according to the present invention. detailed description
  • an embodiment of a method for autonomous switch of a home gateway includes: Step S10: periodically detecting a signal of a signal transceiver, and determining a distance between a signal transceiver and a home gateway;
  • the signal processor and the signal transceiver form a signal processing unit.
  • the signal processor is placed on the side of the home gateway and can be built in or external to the home gateway.
  • the signal processor establishes a wired or wireless connection with the home gateway and is used with at least one signal transceiver.
  • the transceiver is carried around for users with home gateway privileges.
  • the effective range of the signal processor and the signal transceiver is within a preset value such as 200m or 300m.
  • the power supply of the signal processor and the signal transceiver can be a button battery, and the button battery of the signal processor can also be used in the home. Charging when the gateway is in the power-on state.
  • the signal transceiver can be used in the style of a mobile phone pendant, which is convenient for users to carry and use.
  • the signal processor and the signal transceiver are in a one-to-many relationship, and this binding relationship can be set through a page.
  • the signal processor After the signal processor establishes a wireless connection with the signal transceiver, the signal processor detects the signal of the signal transceiver to determine the distance between the signal processor and the signal transceiver. Since the distance between the signal processor and the home gateway is negligible, signal processing The distance between the device and the signal transceiver is the distance between the home gateway and the user with the home gateway authority.
  • Step S11 When the distance between the signal transceiver and the home gateway is greater than a preset value, the control home gateway is in a closed state;
  • the signal processor detects that the distance between the signal transceiver and the home gateway is greater than a preset value, It is considered that the user with the home gateway authority has been away from the home gateway, and the signal processor controls the home gateway to be turned off.
  • Step S12 When the distance between the signal transceiver and the home gateway is less than or equal to the preset value, the home gateway is controlled to be in an open state.
  • the signal processor When the signal processor detects that the distance between the signal transceiver and the home gateway is less than or equal to a preset value, the user who believes that the home gateway authority is close to the home gateway, the signal processor controls the home gateway to be turned on. .
  • the administrator of the home gateway can set a cycle time T through the page, and the signal processor performs the detection on the signal transceiver every cycle time T, and opens the home gateway according to the detection result or Off control.
  • the home gateway when the user is close to the home gateway and the distance is less than or equal to a preset value, the home gateway is automatically opened, and when the user is away from the home gateway, and the distance is greater than the preset value, the home gateway is automatically shut down from the low carbon. From the perspective of environmental protection and energy conservation, it can greatly save electricity and energy without affecting the use of users.
  • step S10 may further include:
  • Step S101 Sending a broadcast message
  • Step S102 Receive a feedback message of the broadcast packet.
  • the signal transceiver When the signal transceiver receives the broadcast message sent by the signal processor, the signal transceiver responds to a feedback message to the signal processor.
  • Step S103 Determine, according to the feedback message, whether the terminal that sends the feedback message is a signal transceiver corresponding to the home gateway.
  • the signal processor After the signal processor receives the response signal of the signal transceiver, that is, the feedback message, the signal processor determines the feedback message, and determines whether the terminal that sends the feedback message is the user of the home gateway according to the content or form of the feedback message.
  • the signal transceiver carried.
  • the signal processor reduces the transmission by transmitting a broadcast message identification signal transceiver.
  • the complexity of the detection is not limited to, but not limited to, Bluetooth, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi, Wi-Fi
  • step S103 may further include:
  • the signal transceiver and the signal processor may pre-arrange an identifier for the signal processor identification signal transceiver, and the feedback message received by the signal processor includes an appointment identifier, and the agreement identifier and the signal processor save When the agreed identifiers are consistent, the signal processor considers that the terminal that sends the feedback message is a signal transceiver carried by the user of the home gateway.
  • the signal processor identifies the signal transceiver by using the convention identifier, which is simple and flexible.
  • step S11 may further include:
  • Step S11 determining, when the distance between the signal transceiver and the home gateway is greater than the preset value, determining a current state of the home gateway;
  • the signal processor When the signal processor detects that the distance between all users of the home gateway and the home gateway is greater than a predetermined preset value, the signal processor first determines the state of the home gateway. Determine whether the home gateway is on or off.
  • Step S112 When the current state of the home gateway is on, the sending control signal turns off the home gateway, otherwise it does not work.
  • the signal processor When the current state of the home gateway is turned on, the signal processor sends a control signal to the home gateway to turn off the power of the home gateway. If the current state of the home gateway is off, the signal processor does not operate.
  • the control signal can be agreed between the signal processor and the home gateway. For example, when the home gateway needs to be turned on, a signal state "0" is output, and when the home gateway is turned off, the signal state T is output.
  • the signal processor determines whether to close according to the current state of the home gateway. Operation.
  • step S12 may further include:
  • Step S121 When the distance between the signal transceiver and the home gateway is less than the preset value, determine a current state of the home gateway.
  • the signal processor When the signal processor detects that the distance between the at least one user of the home gateway and the home gateway is less than or equal to the agreed preset value, the signal processor first determines the state of the home gateway. Determine if the home gateway is on or off.
  • Step S122 When the current state of the home gateway is off, the sending control signal turns on the home gateway, otherwise it does not operate.
  • the signal processor When the current state of the home gateway is off, the signal processor sends a control signal to the home gateway to turn on the power of the home gateway. If the current state of the home gateway is a normal working state, the signal processor does not operate.
  • the control signal can be agreed between the signal processor and the home gateway. For example, when the home gateway needs to be turned on, a signal state "0" is output, and when the home gateway is turned off, the output signal state is "1".
  • the signal processor determines whether to perform the power-on operation according to the current state of the home gateway.
  • an autonomous switch enable module may be disposed, externally or built in the home gateway, to control the autonomous switch function of the home gateway, when the autonomous switch function of the autonomous switch enable module is enabled.
  • the signal processor is valid for the control signal of the home gateway, and vice versa.
  • the user can set the autonomous switch enable module through the page, or set a hardware button and indicator light on the home gateway, and manually set the autonomous switch enable module through the hardware button, the indicator light is always on, indicating that the autonomous switch function has been When the indicator is off, the auto switch function has been turned off; the auto switch function can be turned off or on, or from on to off by long pressing the hardware button for a preset time such as 5 seconds or longer. Referring to FIG.
  • a home gateway-based signal processor 100 including: The detecting module 10 is configured to periodically detect a signal of a signal transceiver carried by the user, and determine a distance between the signal transceiver and the home gateway;
  • the first control module 20 is configured to: when the distance between the signal transceiver and the home gateway is greater than a preset value, control the home gateway to be in a closed state;
  • the second control module 30 is configured to control the home gateway to be in an open state when the distance between the signal transceiver and the home gateway is less than or equal to the preset value.
  • the signal processor 100 and the signal transceiver form a signal processing unit.
  • the signal processor 100 is placed on the side of the home gateway and can be built in or external to the home gateway.
  • the signal processor establishes a wired or wireless connection with the home gateway and is used with at least one signal transceiver.
  • the signal transceiver is carried around for users with home gateway privileges.
  • the effective distance of the signal processor 100 and the signal transceiver is within a preset value such as 200m or 300m, and the power supply device of the signal processor 100 and the signal transceiver can be a button battery, and the button battery of the signal processor 100 is further It can be charged when the home gateway is in the power-on state.
  • the signal transceiver can be used in the style of a mobile phone pendant, which is convenient for users to carry and use.
  • the signal processor 100 has a one-to-many relationship with the signal transceiver, and this binding relationship can be set through a page.
  • the detecting module 10 detects the signal of the signal transceiver to determine the distance between the signal processor 100 and the signal transceiver. Since the distance between the signal processor 100 and the home gateway is negligible, Therefore, the distance between the signal processor 100 and the signal transceiver is the distance between the home gateway and the user having the home gateway authority.
  • the detecting module 10 detects that the distance between the signal transceiver and the home gateway is greater than a preset value, the user who has the home gateway authority is considered to be away from the home gateway, and the first control module 20 controls the home gateway to be in the closed state. .
  • the detecting module 10 detects that the distance between the signal transceiver and the home gateway is less than or equal to a preset value, the user who is considered to have the home gateway authority is close to the home gateway, and the second control module 30 controls the home gateway to be in the Open state.
  • the administrator of the home gateway can set a cycle time T through the page, and the signal processor 100 performs the detection on the signal transceiver every cycle time T, and opens the home gateway according to the detection result. Or off control.
  • the home gateway when the user is close to the home gateway and the distance is less than or equal to a preset value, the home gateway is automatically opened, and when the user is away from the home gateway, and the distance is greater than the preset value, the home gateway is automatically shut down from the low carbon. From the perspective of environmental protection and energy conservation, it can greatly save electricity and energy without affecting the use of users.
  • the detection module 10 includes:
  • a sending unit 11 configured to send a broadcast message
  • the receiving unit 12 is configured to receive a feedback message of the broadcast packet.
  • the determining unit 13 is configured to determine, according to the feedback message, whether the terminal that sends the feedback message is a signal transceiver corresponding to the home gateway.
  • the signal transceiver When the signal transceiver receives the broadcast message sent by the transmitting unit 11, the signal transceiver responds to a feedback message to the signal transceiver.
  • the determining unit 13 determines the feedback message, and determines whether the terminal that sends the feedback message is the user of the home gateway according to the content or form of the feedback message.
  • the signal transceiver carried.
  • the signal processor 100 reduces the complexity of the detection by transmitting a broadcast message identification signal transceiver.
  • the determining unit 13 is specifically configured to:
  • the signal transceiver and signal processor 100 may pre-approve an identifier for the identification unit 13 to identify the signal transceiver, and include an agreement in the feedback message received by the receiving unit 12.
  • the identity identifier is consistent with the agreement identifier saved by the determining unit 13, the determining unit 13 considers that the terminal that sends the feedback message is a signal transceiver carried by the user of the home gateway.
  • the signal processor 100 recognizes the signal transceiver by the appointment identifier, which is simple and flexible.
  • the first control module 20 includes:
  • the determining unit 21 is configured to determine, when the distance between the signal transceiver and the home gateway is greater than the preset value, the current state of the home gateway;
  • the closing unit 22 is configured to send a control signal to turn off the home gateway when the current state of the home gateway is turned on, otherwise it does not operate.
  • the determining unit 21 first determines the state of the home gateway. Determine whether the home gateway is on or off.
  • the shutdown unit 22 When the current state of the home gateway is turned on, the shutdown unit 22 sends a control signal to the home gateway to turn off the power of the home gateway. If the current state of the home gateway is off, the shutdown unit 22 does not operate.
  • the control signal can be agreed between the signal processor 100 and the home gateway. For example, when the home gateway needs to be turned on, a signal state "0" is output, and when the home gateway is turned off, the signal state "1" is output.
  • the signal processor 100 determines whether to perform a shutdown operation according to the current state of the home gateway.
  • the second control module 30 includes:
  • the determining unit 31 is configured to determine a current state of the home gateway when the distance between the signal transceiver and the home gateway is less than the preset value;
  • the opening unit 32 is configured to send a control signal to turn on the home gateway when the current state of the home gateway is off, otherwise it does not operate.
  • the judging unit 31 first judges the state of the home gateway. Determine whether the home gateway is on or off.
  • the opening unit 32 When the current state of the home gateway is off, the opening unit 32 sends a control signal to the home gateway to turn on the power of the home gateway. If the current state of the home gateway is a normal working state, the opening unit 32 does not operate.
  • the control signal can be agreed between the signal processor and the home gateway. For example, when the home gateway needs to be turned on, a signal state "0" is output, and when the home gateway is turned off, the output signal state is "1".
  • the signal processor 100 determines whether to perform the power-on operation according to the current state of the home gateway.
  • an autonomous switch enable module may be disposed, externally or built in the home gateway, to control the autonomous switch function of the home gateway, when the autonomous switch function of the autonomous switch enable module is enabled.
  • the signal processor is valid for the control signal of the home gateway, and vice versa.
  • the user can set the autonomous switch enable module through the page, or set a hardware button and indicator light on the home gateway, and manually set the autonomous switch enable module through the hardware button, the indicator light is always on, indicating that the autonomous switch function has been When the indicator is off, the auto switch function has been turned off; the auto switch function can be turned off or on, or from on to off by long pressing the hardware button for a preset time such as 5 seconds or longer. Referring to FIG.
  • an embodiment of a system for autonomous switch of a home gateway of the present invention which includes a home gateway 300, a signal processor 100, and a signal transceiver 200.
  • the signal processor 100 includes: a detecting module 10, configured to periodically detect a user carrying The signal of the signal transceiver 200 determines the distance between the signal transceiver 200 and the home gateway 300;
  • the first control module 20 is configured to control the home gateway 300 to be in a closed state when the distance between the signal transceiver 200 and the home gateway 300 is greater than a preset value;
  • the second control module 30 is configured to control the home gateway 300 to be in an open state when the distance between the signal transceiver 200 and the home gateway 300 is less than or equal to the preset value.
  • the structure and working principle of the signal processor 100 are the same as those of the home gateway-based signal processor 100 shown in FIG. 6 to FIG. 8 , and details are not described herein again.
  • the home gateway 300 when the user is close to the home gateway 300 and the distance reaches a preset value, the home gateway 300 is automatically turned on, and the user is away from the home gateway 300. When the distance reaches the preset value, the home gateway 300 is automatically shut down. From the perspective of low carbon, environmental protection and energy saving, it can greatly save electricity and energy without affecting users' use.
  • the home gateway 300 includes an autonomous switch enablement module 301 for causing the signal processor 100 to validate or disable the control function of the home gateway 300.
  • the autonomous switch enable module 301 can be externally or built in the home gateway 300 to control the autonomous switch function of the home gateway 300.
  • the signal processor 100 is connected to the home gateway 300.
  • the control signal is valid, otherwise it is invalid.
  • the user can set the autonomous switch enable module 301 through the page, or set a hardware button and an indicator light on the home gateway 300, and manually set the autonomous switch enable module 301 through the hardware button.
  • the switch function has been turned on, and the indicator light is off, indicating that the auto switch function has been turned off; the auto switch function can be turned off or on, or from on to off by long pressing the hardware button for a preset time such as 5 seconds or longer.
  • the user can select to enable or disable the autonomous switch function for flexible control.
  • the above description is only the preferred embodiment of the present invention, and is not intended to limit the scope of the invention, and the equivalent structure or equivalent flow transformation made by the specification and the drawings of the present invention may be directly or indirectly applied to other related The technical field is equally included in the scope of patent protection of the present invention.
  • the technical scheme of the invention intelligently realizes the autonomous switch of the home gateway from the perspective of low carbon, environmental protection and energy saving, and greatly saves the power energy without affecting the use of the user.

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  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Computing Systems (AREA)
  • Selective Calling Equipment (AREA)
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  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)

Abstract

本发明揭示了一种家庭网关自主开关的方法,包括步骤:定时检测信号收发器的信号,判断信号收发器与家庭网关的距离;当信号收发器与家庭网关的距离大于一预设值时,控制家庭网关处于关闭状态;当信号收发器与家庭网关的距离小于或等于所述预设值时,控制家庭网关处于开启状态。本发明还提出了对应的装置和系统。本发明提供的一种家庭网关自主开关的方法、装置及系统,从低碳、环保、节能角度出发,在不影响用户使用的前提下,大大节约了电力能源。

Description

家庭网关自主开关的方法、 装置及系统 技术领域
本发明涉及到通信领域, 特别涉及到家庭网关自主开关的方法、 装置 及系统。 背景技术
随着全球信息化的发展, 社会对通信服务的需求增长越来越快, 网络 融合是未来网络发展的趋势。 在网络融合的初期, 以网关为代表的设备发 展促进业务融合是重要的特点, 例如家庭网关。 在国内运营商(例如电信、 移动、 联通等) 以及国外各大运营商的大力推动下, 家庭网关已经进入到 千家万户。 家庭网关作为家庭网络的核心设备, 其发展与数字家庭的产业 发展密不可分, 对数字产业发展产生重大影响, 是实现家庭业务融合的重 要环节。 但通常情况下, 即使在无人使用时, 家庭网关还保持着上电工作 状态。 虽然单个家庭网关耗电量比较小, 但是, 成千上万个家庭网关的耗 电量累加起来, 其浪费的资源是相当巨大的。 发明内容
本发明的主要目的为提供一种家庭网关自主开关的方法、 装置及系统, 旨在节约能源。
本发明提出一种家庭网关自主开关的方法, 包括步驟:
定时检测信号收发器的信号 , 判断信号收发器与家庭网关的距离; 当信号收发器与家庭网关的距离大于一预设值时, 控制家庭网关处于 关闭状态;
当信号收发器与家庭网关的距离小于或等于所述预设值时, 控制家庭 网关处于开启状态。
优选地, 所述定时检测信号收发器的信号, 判断信号收发器与家庭网 关的距离包括:
发送广播报文;
接收所述广播报文的反馈报文;
根据所述反馈报文判断发送该反馈报文的终端是否为与家庭网关对应 的信号收发器。
优选地, 所述根据所述反馈报文判断发送该反馈报文的终端是否为与 家庭网关对应的信号收发器包括:
判断所述反馈报文中是否携带约定标识;
当所述反馈报文中存在所述约定标识时, 则发送该反馈报文的终端为 家庭网关的用户携带的信号收发器。
优选地, 所述当信号收发器与家庭网关的距离大于一预设值时, 控制 家庭网关处于关闭状态包括:
当信号收发器与家庭网关的距离大于所述预设值时, 判断家庭网关的 当前状态;
当家庭网关当前状态为开启时, 发送控制信号关闭家庭网关, 否则不 动作。
优选地, 所述当信号收发器与家庭网关的距离小于或等于所述预设值 时, 控制家庭网关处于开启状态包括:
当信号收发器与家庭网关的距离小于所述预设值时, 判断家庭网关的 当前状态;
当家庭网关当前状态为关闭时, 信发送控制信号开启家庭网关, 否则 不动作。 本发明还提出一种基于家庭网关的信号处理器, 包括: 检测模块, 用于定时检测用户携带的信号收发器的信号, 判断信号收 发器与家庭网关的距离;
第一控制模块, 用于当所述信号收发器与家庭网关的距离大于一预设 值时, 控制家庭网关处于关闭状态;
第二控制模块, 用于当所述信号收发器与家庭网关的距离小于或等于 所述预设值时, 控制家庭网关处于开启状态。
优选地, 所述检测模块包括:
发送单元, 用于发送广播报文;
接收单元, 用于接收所述广播报文的反馈报文;
判断单元, 用于根据所述反馈报文判断发送该反馈报文的终端是否为 与家庭网关对应的信号收发器。
优选地, 所述判断单元具体用于:
判断所述反馈报文中是否携带约定标识; 当所述反馈报文中存在所述 约定标识时, 则发送该反馈报文的终端为家庭网关的用户携带的信号收发 器。
优选地, 所述第一控制模块包括:
判断单元, 用于当所述信号收发器与家庭网关的距离大于所述预设值 时, 判断家庭网关的当前状态;
关闭单元, 用于当家庭网关当前状态为开启时, 发送控制信号关闭家 庭网关, 否则不动作。
优选地, 所述第二控制模块包括:
判断单元, 用于当所述信号收发器与家庭网关的距离小于所述预设值 时, 判断家庭网关的当前状态;
开启单元, 用于当家庭网关当前状态为关闭时, 发送控制信号开启家 庭网关, 否则不动作。 本发明还提出一种家庭网关自主开关的系统, 包括家庭网关、 信号处 理器和信号收发器, 其中, 所述信号处理器包括:
检测模块, 用于定时检测用户携带的信号收发器的信号, 判断信号收 发器与家庭网关的距离;
第一控制模块, 用于当所述信号收发器与家庭网关的距离大于一预设 值时, 控制家庭网关处于关闭状态;
第二控制模块, 用于当所述信号收发器与家庭网关的距离小于或等于 所述预设值时, 控制家庭网关处于开启状态。
优选地, 所述检测模块包括:
发送单元, 用于发送广播报文;
接收单元, 用于接收所述广播报文的反馈报文;
判断单元, 用于根据所述反馈报文判断发送该反馈报文的终端是否为 与家庭网关对应的信号收发器。
优选地, 所述判断单元具体用于:
判断所述反馈报文中是否携带约定标识; 当所述反馈报文中存在所述 约定标识时, 则发送该反馈报文的终端为家庭网关的用户携带的信号收发 器。
优选地, 所述第一控制模块包括:
判断单元, 用于当所述信号收发器与家庭网关的距离大于所述预设值 时, 判断家庭网关的当前状态;
关闭单元, 用于当家庭网关当前状态为开启时, 发送控制信号关闭家 庭网关, 否则不动作。
优选地, 所述第二控制模块包括:
判断单元, 用于当所述信号收发器与家庭网关的距离小于所述预设值 时, 判断家庭网关的当前状态; 开启单元, 用于当家庭网关当前状态为关闭时, 发送控制信号开启家 庭网关, 否则不动作。
优选地, 所述家庭网关包括自主开关使能模块, 用于使所述信号处理 器对所述家庭网关的控制功能生效或失效。 本发明提供的一种家庭网关自主开关的方法、 装置及系统, 当用户靠 近家庭网关, 其距离达一预设值时, 家庭网关自主开启, 而用户远离家庭 网关, 其距离达上述预设值时, 家庭网关自主关闭, 从低碳、 环保、 节能 角度出发, 在不影响用户使用的前提下, 大大节约了电力能源。 附图说明
图 1 为本发明家庭网关自主开关的方法一实施例的流程示意图; 图 2 为本发明家庭网关自主开关的方法一实施例中检测步驟的流程示 意图;
图 3 为本发明家庭网关自主开关的方法一实施例中关闭步驟的流程示 意图;
图 4 为本发明家庭网关自主开关的方法一实施例中开启步驟的流程示 意图;
图 5 为本发明基于家庭网关的信号处理器一实施例的结构示意图; 图 6 为本发明基于家庭网关的信号处理器一实施例中检测模块的结构 示意图;
图 7 为本发明基于家庭网关的信号处理器一实施例中第一控制模块的 结构示意图;
图 8 为本发明基于家庭网关的信号处理器一实施例中第二控制模块的 结构示意图;
图 9 为本发明家庭网关自主开关的系统一实施例中的结构示意图; 图 10为本发明家庭网关自主开关的系统一实施例中家庭网关的结构示 意图。 具体实施方式
应当理解, 此处所描述的具体实施例仅仅用以解释本发明, 并不用于 限定本发明。 参照图 1 , 提出本发明家庭网关自主开关的方法一实施例, 包括: 步驟 S10、定时检测信号收发器的信号,判断信号收发器与家庭网关的 距离;
本实施例中, 信号处理器和信号收发器构成信号处理单元。 信号处理 器放置在家庭网关一侧, 可内置或外置于家庭网关, 当外置于家庭网关时, 信号处理器与家庭网关建立有线或无线连接, 并与至少一个信号收发器配 套使用, 信号收发器为有家庭网关权限的用户随身携带。 信号处理器和信 号收发器的有效距离范围为一预设值如 200m或 300m内, 信号处理器和信 号收发器的供电装置可以是一个扣式电池, 信号处理器的扣式电池还可以 在家庭网关处于上电工作状态时进行充电。 信号收发器可采用手机挂件的 样式, 方便用户携带和使用。 信号处理器与信号收发器是一对多的关系, 可以通过页面设定这种绑定关系。
信号处理器与信号收发器建立无线连接后, 信号处理器检测信号收发 器的信号, 以判断信号处理器与信号收发器的距离, 由于信号处理器与家 庭网关的距离可以忽略不计, 因此信号处理器与信号收发器之间的距离即 为家庭网关与有家庭网关权限的用户之间的距离。
步驟 Sll、 当信号收发器与家庭网关的距离大于一预设值时,控制家庭 网关处于关闭状态;
当信号处理器检测到信号收发器与家庭网关的距离大于一预设值时, 认为有家庭网关权限的用户已远离家庭网关, 信号处理器即对家庭网关进 行控制, 使之处于关闭状态。
步驟 S12、 当信号收发器与家庭网关的距离小于或等于所述预设值时, 控制家庭网关处于开启状态。
当信号处理器检测到信号收发器与家庭网关的距离小于或等于一预设 值时, 认为有家庭网关权限的用户在靠近家庭网关, 信号处理器即对家庭 网关进行控制, 使之处于开启状态。
在上述实施例中, 家庭网关的管理员可通过页面设定一循环时间 T,信 号处理器每隔循环时间 T就对所述信号收发器进行一次检测, 并根据检测 结果对家庭网关进行开或关的控制。
本实施例中, 当用户靠近家庭网关, 其距离小于或等于一预设值时, 家庭网关自主开启, 而用户远离家庭网关, 其距离大于上述预设值时, 家 庭网关自主关闭, 从低碳、 环保、 节能角度出发, 在不影响用户使用的前 提下, 大大节约了电力能源。
参照图 2, 在一实施例中, 步驟 S10可进一步包括:
步驟 S101、 发送广播 4艮文;
步驟 S102、 接收所述广播报文的反馈报文;
信号收发器接收到信号处理器发送的广播报文时, 信号收发器响应一 个反馈报文给信号处理器。
步驟 S103、 根据所述反馈报文判断发送该反馈报文的终端是否为与家 庭网关对应的信号收发器。
信号处理器收到信号收发器的响应信号即反馈报文后, 信号处理器对 该反馈报文进行判断, 根据反馈报文的内容或形式确定发送该反馈报文的 终端是否为家庭网关的用户所携带的信号收发器。
本实施例中, 信号处理器通过发送广播报文识别信号收发器, 降低了 检测的复杂度。
在上述实施例, 步驟 S103可进一步包括:
判断所述反馈报文中是否携带约定标识; 当所述反馈报文中存在所述 约定标识时, 则发送该反馈报文的终端为家庭网关的用户携带的信号收发 器。
信号收发器和信号处理器可事先约定一标识, 该约定标识用于信号处 理器识别信号收发器, 当信号处理器接收到的反馈报文中包括约定标识, 且该约定标识与信号处理器保存的约定标识一致时, 信号处理器认为发送 该反馈报文的终端为家庭网关的用户携带的信号收发器。
本实施例中, 信号处理器通过约定标识对信号收发器进行识别, 简便 灵活。
参照图 3 , 在上述实施例, 步驟 S11可进一步包括:
步驟 Slll、 当信号收发器与家庭网关的距离大于所述预设值时, 判断 家庭网关的当前状态;
当信号处理器检测到家庭网关的所有用户与家庭网关的距离大于约定 的预设值时, 信号处理器首先对家庭网关的状态进行判断。 判断家庭网关 是处于开还是关的状态。
步驟 S112、 当家庭网关当前状态为开启时, 发送控制信号关闭家庭网 关, 否则不动作。
当家庭网关当前状态是开启时, 则信号处理器发送控制信号给家庭网 关, 关闭家庭网关的电源。 如果家庭网关当前状态是关闭, 则信号处理器 不动作。 控制信号可在信号处理器和家庭网关之间进行约定, 如当需要开 启家庭网关时, 输出一个信号状态 "0" , 而关闭家庭网关时, 输出信号状 态 T。
本实施例中, 信号处理器根据家庭网关当前状态, 决定是否进行关闭 操作。
参照图 4, 在上述实施例, 步驟 S12可进一步包括:
步驟 S121、 当信号收发器与家庭网关的距离小于所述预设值时, 判断 家庭网关的当前状态;
当信号处理器检测到家庭网关的至少一用户与家庭网关的距离小于或 等于约定的预设值时, 信号处理器首先对家庭网关的状态进行判断。 判断 家庭网关是处于开还是关的状态。
步驟 S122、 当家庭网关当前状态为关闭时, 发送控制信号开启家庭网 关, 否则不动作。
当家庭网关当前状态是关闭时, 则信号处理器发送控制信号给家庭网 关, 开启家庭网关的电源, 如果家庭网关当前状态是正常工作状态, 则信 号处理器不动作。 控制信号可在信号处理器和家庭网关之间进行约定, 如 当需要开启家庭网关时, 输出一个信号状态 "0" , 而关闭家庭网关时, 输 出信号状态 " 1"。
本实施例中, 信号处理器根据家庭网关当前状态, 决定是否进行开启 电源操作。
需要注意的是, 在上述实施例中, 可设置一自主开关使能模块, 外置 或内置于家庭网关, 对家庭网关的自主开关功能进行控制, 当自主开关使 能模块的自主开关功能生效时, 信号处理器对家庭网关的控制信号有效, 反之则失效。 用户可以通过页面对自主开关使能模块进行设置, 或者在家 庭网关上另设一硬件按键和指示灯, 通过该硬件按键对自主开关使能模块 进行手动设置, 指示灯常亮表示自主开关功能已经开启, 指示灯熄灭表示 自主开关功能已经关闭; 可以通过长按该硬件按键一预设时间如 5秒以上, 来实现自主开关功能由关闭到开启, 或者由开启到关闭。 参照图 5 ,提出本发明基于家庭网关的信号处理器 100—实施例,包括: 检测模块 10, 用于定时检测用户携带的信号收发器的信号, 判断信号 收发器与家庭网关的距离;
第一控制模块 20, 用于当所述信号收发器与家庭网关的距离大于一预 设值时, 控制家庭网关处于关闭状态;
第二控制模块 30, 用于当所述信号收发器与家庭网关的距离小于或等 于所述预设值时, 控制家庭网关处于开启状态。
本实施例中, 信号处理器 100和信号收发器构成信号处理单元。 信号 处理器 100放置在家庭网关一侧, 可内置或外置于家庭网关, 当外置于家 庭网关时, 信号处理器与家庭网关建立有线或无线连接, 并与至少一个信 号收发器配套使用, 信号收发器为有家庭网关权限的用户随身携带。 信号 处理器 100和信号收发器的有效距离范围为一预设值如 200m或 300m内, 信号处理器 100和信号收发器的供电装置可以是一个扣式电池, 信号处理 器 100 的扣式电池还可以在家庭网关处于上电工作状态时进行充电。 信号 收发器可采用手机挂件的样式, 方便用户携带和使用。 信号处理器 100与 信号收发器是一对多的关系, 可以通过页面设定这种绑定关系。
信号处理器 100与信号收发器建立无线连接后, 检测模块 10检测信号 收发器的信号, 以判断信号处理器 100与信号收发器的距离, 由于信号处 理器 100与家庭网关的距离可以忽略不计, 因此信号处理器 100与信号收 发器之间的距离即为家庭网关与有家庭网关权限的用户之间的距离。
当检测模块 10检测到信号收发器与家庭网关的距离大于一预设值时, 认为有家庭网关权限的用户已远离家庭网关, 第一控制模块 20即对家庭网 关进行控制, 使之处于关闭状态。
当检测模块 10检测到信号收发器与家庭网关的距离小于或等于一预设 值时, 认为有家庭网关权限的用户在靠近家庭网关, 第二控制模块 30即对 家庭网关进行控制, 使之处于开启状态。 在上述实施例中, 家庭网关的管理员可通过页面设定一循环时间 T,信 号处理器 100每隔循环时间 T就对所述信号收发器进行一次检测, 并根据 检测结果对家庭网关进行开或关的控制。
本实施例中, 当用户靠近家庭网关, 其距离小于或等于一预设值时, 家庭网关自主开启, 而用户远离家庭网关, 其距离大于上述预设值时, 家 庭网关自主关闭, 从低碳、 环保、 节能角度出发, 在不影响用户使用的前 提下, 大大节约了电力能源。
参照图 6, 在一实施例中, 检测模块 10包括:
发送单元 11 , 用于发送广播报文;
接收单元 12, 用于接收所述广播报文的反馈报文;
判断单元 13 , 用于根据所述反馈报文判断发送该反馈报文的终端是否 为与家庭网关对应的信号收发器。
信号收发器接收到发送单元 11发送的广播报文时, 信号收发器响应一 个反馈报文给信号收发器。
接收单元 12 收到信号收发器的响应信号即反馈报文后, 判断单元 13 对该反馈报文进行判断, 根据反馈报文的内容或形式确定发送该反馈报文 的终端是否为家庭网关的用户所携带的信号收发器。
本实施例中, 信号处理器 100通过发送广播报文识别信号收发器, 降 低了检测的复杂度。
在上述实施例中, 判断单元 13具体用于:
判断所述反馈报文中是否携带约定标识; 当所述反馈报文中存在所述 约定标识时, 则发送该反馈报文的终端为家庭网关的用户携带的信号收发 器。
信号收发器和信号处理器 100可事先约定一标识, 该约定标识用于判 断单元 13识别信号收发器, 当接收单元 12接收到的反馈报文中包括约定 标识, 且该约定标识与判断单元 13保存的约定标识一致时, 判断单元 13 认为发送该反馈报文的终端为家庭网关的用户携带的信号收发器。
本实施例中, 信号处理器 100通过约定标识对信号收发器进行识别, 简便灵活。
参照图 7, 在上述实施例中, 第一控制模块 20包括:
判断单元 21 , 用于当所述信号收发器与家庭网关的距离大于所述预设 值时, 判断家庭网关的当前状态;
关闭单元 22, 用于当家庭网关当前状态为开启时, 发送控制信号关闭 家庭网关, 否则不动作。
当检测模块 10检测到家庭网关的所有用户与家庭网关的距离大于约定 的预设值时, 判断单元 21首先对家庭网关的状态进行判断。 判断家庭网关 是处于开还是关的状态。
当家庭网关当前状态是开启时, 则关闭单元 22发送控制信号给家庭网 关, 关闭家庭网关的电源, 如果家庭网关当前状态是关闭, 则关闭单元 22 不动作。 控制信号可在信号处理器 100和家庭网关之间进行约定, 如当需 要开启家庭网关时, 输出一个信号状态 "0" , 而关闭家庭网关时, 输出信 号状态 "1"。
本实施例中, 信号处理器 100根据家庭网关当前状态, 决定是否进行 关闭操作。
参照图 8, 在上述实施例中, 第二控制模块 30包括:
判断单元 31 , 用于当所述信号收发器与家庭网关的距离小于所述预设 值时, 判断家庭网关的当前状态;
开启单元 32 , 用于当家庭网关当前状态为关闭时, 发送控制信号开启 家庭网关, 否则不动作。
当检测模块 10检测到家庭网关的至少一用户与家庭网关的距离小于或 等于约定的预设值时, 判断单元 31首先对家庭网关的状态进行判断。 判断 家庭网关是处于开还是关的状态。
当家庭网关当前状态是关闭时, 则开启单元 32发送控制信号给家庭网 关, 开启家庭网关的电源, 如果家庭网关当前状态是正常工作状态, 则开 启单元 32不动作。 控制信号可在信号处理器和家庭网关之间进行约定, 如 当需要开启家庭网关时, 输出一个信号状态 "0" , 而关闭家庭网关时, 输 出信号状态 " 1"。
本实施例中, 信号处理器 100根据家庭网关当前状态, 决定是否进行 开启电源操作。
需要注意的是, 在上述实施例中, 可设置一自主开关使能模块, 外置 或内置于家庭网关, 对家庭网关的自主开关功能进行控制, 当自主开关使 能模块的自主开关功能生效时, 信号处理器对家庭网关的控制信号有效, 反之则失效。 用户可以通过页面对自主开关使能模块进行设置, 或者在家 庭网关上另设一硬件按键和指示灯, 通过该硬件按键对自主开关使能模块 进行手动设置, 指示灯常亮表示自主开关功能已经开启, 指示灯熄灭表示 自主开关功能已经关闭; 可以通过长按该硬件按键一预设时间如 5秒以上, 来实现自主开关功能由关闭到开启, 或者由开启到关闭。 参照图 9,提出本发明家庭网关自主开关的系统一实施例, 包括家庭网 关 300、 信号处理器 100和信号收发器 200, 所述信号处理器 100包括: 检测模块 10, 用于定时检测用户携带的信号收发器 200的信号, 判断 信号收发器 200与家庭网关 300的距离;
第一控制模块 20, 用于当所述信号收发器 200与家庭网关 300的距离 大于一预设值时, 控制家庭网关 300处于关闭状态;
第二控制模块 30, 用于当所述信号收发器 200与家庭网关 300的距离 小于或等于所述预设值时, 控制家庭网关 300处于开启状态。 本实施例中, 信号处理器 100的结构和工作原理同图 6至图 8所示之 基于家庭网关的信号处理器 100, 此处不再赘述。
本实施例中, 当用户靠近家庭网关 300, 其距离达一预设值时, 家庭网 关 300自主开启, 而用户远离家庭网关 300, 其距离达上述预设值时, 家庭 网关 300 自主关闭, 从低碳、 环保、 节能角度出发, 在不影响用户使用的 前提下, 大大节约了电力能源。
参照图 10, 在一实施例中, 家庭网关 300包括自主开关使能模块 301 , 用于使所述信号处理器 100对所述家庭网关 300的控制功能生效或失效。
自主开关使能模块 301 ,可外置或内置于家庭网关 300,对家庭网关 300 的自主开关功能进行控制, 当自主开关使能模块 301 的自主开关功能生效 时, 信号处理器 100对家庭网关 300的控制信号有效, 反之则失效。 用户 可以通过页面对自主开关使能模块 301进行设置, 或者在家庭网关 300上 另设一硬件按键和指示灯, 通过该硬件按键对自主开关使能模块 301 进行 手动设置, 指示灯常亮表示自主开关功能已经开启, 指示灯熄灭表示自主 开关功能已经关闭; 可以通过长按该硬件按键一预设时间如 5秒以上, 来 实现自主开关功能由关闭到开启, 或者由开启到关闭。
本实施例中, 用户可选择开启或关闭自主开关功能, 进行灵活控制。 以上所述仅为本发明的优选实施例, 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。 工业实用性
本发明技术方案从低碳、 环保、 节能角度出发, 在不影响用户使用的 前提下, 智能地实现家庭网关的自主开关, 大大节约了电力能源。

Claims

权利要求书
1、 一种家庭网关自主开关的方法, 包括步驟:
定时检测信号收发器的信号 , 判断信号收发器与家庭网关的距离; 当信号收发器与家庭网关的距离大于一预设值时, 控制家庭网关处于 关闭状态;
当信号收发器与家庭网关的距离小于或等于所述预设值时, 控制家庭 网关处于开启状态。
2、 如权利要求 1所述的家庭网关自主开关的方法, 其中, 所述定时检 测信号收发器的信号, 判断信号收发器与家庭网关的距离包括:
发送广播报文;
接收所述广播报文的反馈报文;
根据所述反馈报文判断发送该反馈报文的终端是否为与家庭网关对应 的信号收发器。
3、 如权利要求 2所述的家庭网关自主开关的方法, 其中, 所述根据所 述反馈报文判断发送该反馈报文的终端是否为与家庭网关对应的信号收发 器包括:
判断所述反馈报文中是否携带约定标识;
当所述反馈报文中存在所述约定标识时, 则发送该反馈报文的终端为 家庭网关的用户携带的信号收发器。
4、如权利要求 1至 3中任一项所述的家庭网关自主开关的方法,其中, 所述当信号收发器与家庭网关的距离大于一预设值时, 控制家庭网关处于 关闭状态包括: 当信号收发器与家庭网关的距离大于所述预设值时, 判断家庭网关的 当前状态;
当家庭网关当前状态为开启时, 发送控制信号关闭家庭网关, 否则不 动作。
5、如权利要求 1至 3中任一项所述的家庭网关自主开关的方法,其中, 所述当信号收发器与家庭网关的距离小于或等于所述预设值时, 控制家庭 网关处于开启状态包括:
当信号收发器与家庭网关的距离小于所述预设值时, 判断家庭网关的 当前状态;
当家庭网关当前状态为关闭时, 信发送控制信号开启家庭网关, 否则 不动作。
6、 一种基于家庭网关的信号处理器, 包括:
检测模块, 用于定时检测用户携带的信号收发器的信号, 判断信号收 发器与家庭网关的距离;
第一控制模块, 用于当所述信号收发器与家庭网关的距离大于一预设 值时, 控制家庭网关处于关闭状态;
第二控制模块, 用于当所述信号收发器与家庭网关的距离小于或等于 所述预设值时, 控制家庭网关处于开启状态。
7、 如权利要求 6所述的基于家庭网关的信号处理器, 其中, 所述检测 模块包括:
发送单元, 用于发送广播报文;
接收单元, 用于接收所述广播报文的反馈报文;
判断单元, 用于根据所述反馈报文判断发送该反馈报文的终端是否为 与家庭网关对应的信号收发器。
8、 如权利要求 7所述的基于家庭网关的信号处理器, 其中, 所述判断 单元具体用于:
判断所述反馈报文中是否携带约定标识; 当所述反馈报文中存在所述 约定标识时, 则发送该反馈报文的终端为家庭网关的用户携带的信号收发 器。
9、 如权利要求 6至 8中任一项所述的基于家庭网关的信号处理器, 其 中, 所述第一控制模块包括:
判断单元, 用于当所述信号收发器与家庭网关的距离大于所述预设值 时, 判断家庭网关的当前状态;
关闭单元, 用于当家庭网关当前状态为开启时, 发送控制信号关闭家 庭网关, 否则不动作。
10、 如权利要求 6至 8中任一项所述的基于家庭网关的信号处理器, 其中, 所述第二控制模块包括:
判断单元, 用于当所述信号收发器与家庭网关的距离小于所述预设值 时, 判断家庭网关的当前状态;
开启单元, 用于当家庭网关当前状态为关闭时, 发送控制信号开启家 庭网关, 否则不动作。
11、 一种家庭网关自主开关的系统, 该系统包括家庭网关、 信号处理 器和信号收发器, 其中, 所述信号处理器包括:
检测模块, 用于定时检测用户携带的信号收发器的信号, 判断信号收 发器与家庭网关的距离; 第一控制模块, 用于当所述信号收发器与家庭网关的距离大于一预设 值时, 控制家庭网关处于关闭状态;
第二控制模块, 用于当所述信号收发器与家庭网关的距离小于或等于 所述预设值时, 控制家庭网关处于开启状态。
12、 如权利要求 11所述的家庭网关自主开关的系统, 其中, 所述信号 处理器为权利要求 7至 10中任一项所述的基于家庭网关的信号处理器。
13、 如权利要求 11或 12所述的家庭网关自主开关的系统, 其中, 所 述家庭网关包括自主开关使能模块, 用于使所述信号处理器对所述家庭网 关的控制功能生效或失效。
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