WO2019024173A1 - Batch management method for saving power of internet of things terminal devices, and relay device - Google Patents

Batch management method for saving power of internet of things terminal devices, and relay device Download PDF

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WO2019024173A1
WO2019024173A1 PCT/CN2017/100917 CN2017100917W WO2019024173A1 WO 2019024173 A1 WO2019024173 A1 WO 2019024173A1 CN 2017100917 W CN2017100917 W CN 2017100917W WO 2019024173 A1 WO2019024173 A1 WO 2019024173A1
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trigger condition
power saving
parameter
saving mode
terminal device
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PCT/CN2017/100917
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French (fr)
Chinese (zh)
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杜光东
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深圳市盛路物联通讯技术有限公司
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications

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  • Power saving is especially important for equipment with tight power resources or high requirements on battery life.
  • the compliance with the first triggering condition includes: the idle rate of the current application of the Internet of Things terminal is greater than or equal to the first threshold; and the meeting the second triggering condition includes: the usage rate of the processor of the Internet of Things terminal device is less than a second threshold, and the transmission efficiency of the current network connection of the Internet of Things terminal device is greater than a third threshold;
  • the relay device further includes:
  • the third embodiment of the present invention further provides another relay device, including: a receiving device, a sending device, a processor, and a memory;
  • the processor is configured to send the trigger condition set to an IoT terminal device that is covered by the relay device, and a parameter corresponding to each trigger condition in the trigger condition set;
  • the embodiment of the present invention has the following advantages: the relay device receives the trigger condition set set by the user, and determines parameters corresponding to the trigger conditions in the trigger condition set; the Internet of Things terminal device may have At least two levels of energy-saving mode are determined according to different needs; the selection of the energy-saving mode is automatically completed by the IoT device, thus implementing intelligent and flexible power-saving management; in addition, the IoT terminal device covered by the relay device Sending a trigger condition set enables batch configuration of the energy-saving mode and high configuration efficiency.
  • the relay device may be a device that functions as a data forwarding relay in the Internet of Things.
  • the embodiment of the present invention does not uniquely define the specific manifestation of the access device.
  • IoT terminal equipment refers to terminal equipment that uses Internet of Things technology to access the Internet of Things. It can be a mobile phone, a personal computer, or some other special equipment; for example, transportation, agriculture, firearms management, etc.
  • the terminal device in a possible application scenario is not limited to the embodiment of the present invention.
  • the trigger condition set includes at least two predetermined trigger conditions, and each of the trigger conditions corresponds to at least one parameter, and the parameter or a combination of several parameters is used to determine whether a certain power-saving working mode needs to be triggered. .
  • the specific parameters can be determined according to needs. For example, when working periodically, time is used as a parameter, and when this time is reached, the power saving level is raised.
  • the other embodiments are not exhaustive, and the above examples should not be construed as limiting the uniqueness of the embodiments

Abstract

Disclosed in the embodiments of the present invention are a batch management method for saving power of Internet of Things terminal devices, and a relay device. The method comprises: a relay device receiving a trigger condition set configured by a user, the trigger condition set including at least two trigger conditions; receiving a parameter corresponding to each trigger condition of the trigger condition set configured by the user; the relay device sending, to Internet of Things terminal devices covered by the relay device, the trigger condition set and the parameter corresponding to each trigger condition of the trigger condition set; enabling the Internet of Things terminal devices, upon detection of a parameter satisfying the trigger condition corresponding to an effective power saving mode, to acquire configuration information corresponding to the effective power saving mode, and running the Internet of Things terminal devices according to the configuration information. The invention realizes smart and flexible power saving management, and efficient batch configuration in an energy saving mode.

Description

一种批量管理物联网终端设备省电的方法、及中继设备Method for mass managing IoT terminal equipment for power saving, and relay device 技术领域Technical field
本发明涉及电学技术领域,特别涉及一种批量管理物联网终端设备省电的方法、及中继设备。The present invention relates to the field of electrical technologies, and in particular, to a method for mass management of an IoT terminal device for power saving, and a relay device.
背景技术Background technique
省电可指电器在相同的时间内相对消耗电量少。省电的电器在同等功效的情况下用电器功率低,即有效功率高。Power saving can mean that the appliance consumes less power in the same time. The power-saving electrical appliance has low power in the case of the same function, that is, the effective power is high.
对于电能资源紧张或者对续航时间要求高的设备而言,省电会尤为重要。Power saving is especially important for equipment with tight power resources or high requirements on battery life.
以手机的省电技术实现为例,可以如下:Take the implementation of the power-saving technology of the mobile phone as an example, which can be as follows:
设置手机省电模式下的各个配置项,并启动该手机的省电模式;Setting various configuration items in the power saving mode of the mobile phone, and starting the power saving mode of the mobile phone;
当该手机进行一项业务时,判断当前是否处于省电模式;若处于省电模式则根据所设置的省电模式下的配置项进行相关操作;When the mobile phone performs a service, it determines whether it is currently in the power saving mode; if it is in the power saving mode, performs related operations according to the configuration item in the set power saving mode;
若不处于省电模式则根据所设置的一般模式下的配置项进行相关操作。If it is not in the power saving mode, the related operations are performed according to the configuration items in the set general mode.
以上省电方案,由用户设定或者手机在检测到电能不足的情况下提示用户,在用户确认后进入到省电模式,省电模式下会有很多预先的配置项,例如:调低显示屏亮度、降低处理器主频,尽可能关闭非必要的功能项,等;但是采用以上方案,需要人为干预,较为麻烦;另外,对于有些设备而言,人并不一定会与之常常有接触,因此不能及时配置终端设备进入省电模式。The above power saving scheme is set by the user or the mobile phone prompts the user when the detected power is insufficient, and enters the power saving mode after the user confirms, and there are many pre-configuration items in the power saving mode, for example, the display is lowered. Brightness, reduce the processor frequency, close non-essential function items, etc.; but using the above solution requires human intervention, which is more troublesome; in addition, for some devices, people do not necessarily have frequent contact with them. Therefore, the terminal device cannot be configured to enter the power saving mode in time.
基于以上说明可知,以上省电管理技术实现不够灵活和智能,并且适用范围窄。Based on the above description, the above power-saving management technology is not flexible and intelligent, and the scope of application is narrow.
发明内容Summary of the invention
本发明实施例提供了一种批量管理物联网终端设备省电的方法、及中继设备,用于提供智能并且灵活的省电管理。Embodiments of the present invention provide a method for mass management of an IoT terminal device for power saving, and a relay device for providing intelligent and flexible power saving management.
一方面本发明实施例还提供了一种批量管理物联网终端设备省电的方法,包括:On the one hand, an embodiment of the present invention further provides a method for managing power saving of an Internet of Things terminal device in batches, including:
中继设备接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;The relay device receives a trigger condition set set by the user, and includes at least two trigger conditions in the trigger condition set; and receiving, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;使所述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取所述有效省电 模式所对应的配置信息,并依据所述配置信息运行所述物联网终端设备;所述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的配置信息。The relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set; and the IoT terminal device is monitored to be effective. After the parameter corresponding to the trigger condition corresponding to the power saving mode, the effective power saving is obtained. The configuration information corresponding to the mode, and running the IoT terminal device according to the configuration information; the configuration information corresponding to the effective power saving mode is configuration information corresponding to the first power saving mode or the second power saving mode.
所述触发条件集中各触发条件的参数包括:所述触发条件集中包含第一触发条件和第二触发条件,所述第一触发条件对应第一参数,所述第二触发条件对应第二参数。更为具体地,所述第一参数包括:所述物联网终端当前应用程序的空转率;所述第二参数包括:所述物联网终端设备处理器的使用率,所述物联网终端设备当前网络连接的传输效率。所述第一省电模式对应的配置信息包含:应用程序的响应速度参数,处理器主频参数;所述第二省电模式包括:天线功率参数、处理器主频参数。或者其他参数都是可以的,对比本发明实施例不作唯一性限定。The triggering condition set includes a first trigger condition and a second trigger condition, where the first trigger condition corresponds to the first parameter, and the second trigger condition corresponds to the second parameter. More specifically, the first parameter includes: a idling rate of the current application of the Internet of Things terminal; the second parameter includes: a usage rate of the IoT terminal device processor, where the IoT terminal device is currently The transmission efficiency of the network connection. The configuration information corresponding to the first power saving mode includes: a response speed parameter of the application, a processor frequency parameter; and the second power saving mode includes: an antenna power parameter, and a processor frequency parameter. Or other parameters are possible, and are not limited to the embodiments of the present invention.
在一种可选的实现方式中,所述中继设备接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;包括:In an optional implementation manner, the relay device receives a trigger condition set set by a user, and includes at least two trigger conditions in the trigger condition set; and receiving, by the user, the triggers corresponding to the trigger condition set Conditional parameters; including:
所述中继设备接收用户设定的第一触发条件和第二触发条件,接收所述第一触发条件对应第一参数以及所述第二触发条件对应第二参数;Receiving, by the relay device, a first trigger condition and a second trigger condition set by the user, and receiving the first trigger condition corresponding to the first parameter and the second trigger condition corresponding to the second parameter;
在所述物联网设备监测到的所述第一参数符合所述第一触发条件的情况下,所述有效省电模式对应的配置信息为所述第一省电模式对应的配置信息;在所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息,或者,在所述第一参数符合所述第一触发条件并且所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息。The configuration information corresponding to the effective power saving mode is the configuration information corresponding to the first power saving mode, where the first parameter that is detected by the IoT device is consistent with the first triggering condition; When the second parameter is consistent with the second trigger condition, the configuration information corresponding to the effective power saving mode is configuration information corresponding to the second power saving mode, or the first parameter meets the first parameter. In a case where the triggering condition is met and the second parameter is in the second triggering condition, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode.
在一种可选的实现方式中,在所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数之前,所述方法还包括:In an optional implementation manner, before the relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and before the parameters corresponding to the trigger conditions in the trigger condition set, The method further includes:
所述中继设备与所述物联网终端设备建立连接;The relay device establishes a connection with the Internet of Things terminal device;
所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;包括:And the relay device sends the trigger condition set to the IoT terminal device that is covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set;
所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,在所述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。The relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and the trigger condition items in the trigger condition set carry parameters corresponding to the trigger conditions.
在一种可选的实现方式中,在所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集之前,所述方法还包括:In an optional implementation manner, before the sending, by the relay device, the trigger condition set to the IoT terminal device that is covered by the relay device, the method further includes:
接收所述物联网终端设备发送的所述物联网终端设备所支持的配置;Receiving a configuration supported by the Internet of Things terminal device sent by the Internet of Things terminal device;
依据所述物联网终端设备所支持的配置确定分别与所述第一省电模式和所述第二省电模式对应的配置信息。Determining configuration information corresponding to the first power saving mode and the second power saving mode, respectively, according to a configuration supported by the Internet of Things terminal device.
在一种可选的实现方式中,所述方法还包括: In an optional implementation manner, the method further includes:
在所述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给所述物联网终端设备,在所述模式配置指令中携带参数信息;所述参数信息用于使所述物联网终端设备确定所述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。After the IoT terminal device accesses the Internet of Things, forwarding a mode configuration command sent by the access device to the IoT terminal device, where the mode configuration command carries parameter information; the parameter information is used to enable the The IoT terminal device determines that the trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
在一种可选的实现方式中,所述方法还包括:In an optional implementation manner, the method further includes:
所述物联网终端设备监测第一触发条件对应的所述物联网终端当前应用程序的空转率,监测第二触发条件对应的所述物联网终端设备处理器的使用率和所述物联网终端设备当前网络连接的传输效率;The IoT terminal device monitors a idling rate of the current application of the Internet of Things terminal corresponding to the first trigger condition, and monitors a usage rate of the IoT terminal device processor corresponding to the second trigger condition and the Internet of Things terminal device The transmission efficiency of the current network connection;
确定所述物联网终端当前应用程序的空转率符合所述第一触发条件,则确定所述有效省电模式为第一省电模式;确定所述物联网终端设备处理器的使用率和所述物联网终端设备当前网络连接的传输效率符合所述第二触发条件,则确定所述有效省电模式为第二省电模式,或者,确定所述物联网终端当前应用程序的空转率符合所述第一触发条件并且所述物联网终端设备处理器的使用率和所述物联网终端设备当前网络连接的传输效率符合所述第二触发条件,则确定所述有效省电模式为第二省电模式;Determining that the idle rate of the current application of the Internet of Things terminal meets the first trigger condition, determining that the effective power saving mode is the first power saving mode; determining the usage rate of the IoT terminal device processor and the The transmission efficiency of the current network connection of the Internet of Things terminal device is consistent with the second triggering condition, determining that the effective power saving mode is the second power saving mode, or determining that the idle rate of the current application of the Internet of Things terminal conforms to the Determining, by the first triggering condition, that the usage rate of the Internet of Things terminal device processor and the transmission efficiency of the current network connection of the Internet of Things terminal device meet the second triggering condition, determining that the effective power saving mode is the second power saving mode;
所述符合第一触发条件包括:所述物联网终端当前应用程序的空转率大于或等于第一阈值;所述符合所述第二触发条件包括:所述物联网终端设备处理器的使用率小于第二阈值,并且所述物联网终端设备当前网络连接的传输效率大于第三阈值;The compliance with the first triggering condition includes: the idle rate of the current application of the Internet of Things terminal is greater than or equal to the first threshold; and the meeting the second triggering condition includes: the usage rate of the processor of the Internet of Things terminal device is less than a second threshold, and the transmission efficiency of the current network connection of the Internet of Things terminal device is greater than a third threshold;
在使用所述第一省电模式运行所述物联网终端的情况下,按照预定比例降低应用程序的响应速度参数以及处理器主频;In a case where the IoT terminal is operated by using the first power saving mode, the response speed parameter of the application and the processor main frequency are reduced according to a predetermined ratio;
在使用所述第二省电模式运行所述物联网终端的情况下,按照预定比例降低天线功率参数以及处理器主频。In the case of operating the Internet of Things terminal using the second power saving mode, the antenna power parameter and the processor frequency are reduced in accordance with a predetermined ratio.
二方面本发明实施例提供了一种中继设备,包括:The second embodiment of the present invention provides a relay device, including:
接收单元,用于接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;a receiving unit, configured to receive a trigger condition set set by the user, and include at least two trigger conditions in the trigger condition set; and receive, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
发送单元,用于向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;使所述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取所述有效省电模式所对应的配置信息,并依据所述配置信息运行所述物联网终端设备;所述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的配置信息。a sending unit, configured to send the trigger condition set to an IoT terminal device covered by the relay device, and a parameter corresponding to each trigger condition in the trigger condition set; and enable the IoT terminal device to meet the effective condition After the parameter corresponding to the triggering condition corresponding to the power saving mode, obtain configuration information corresponding to the effective power saving mode, and run the IoT terminal device according to the configuration information; configuration information corresponding to the effective power saving mode It is configuration information corresponding to the first power saving mode or the second power saving mode.
在一种可选的实现方式中,所述接收单元,用于接收用户设定的第一触发条件和第二触发条件,接收所述第一触发条件对应第一参数以及所述第二触发条件对应第二参数;In an optional implementation manner, the receiving unit is configured to receive a first trigger condition and a second trigger condition set by a user, and receive the first trigger condition corresponding to the first parameter and the second trigger condition Corresponding to the second parameter;
在所述物联网设备监测到的所述第一参数符合所述第一触发条件的情况 下,所述有效省电模式对应的配置信息为所述第一省电模式对应的配置信息;在所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息,或者,在所述第一参数符合所述第一触发条件并且所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息。The first parameter monitored by the IoT device meets the first trigger condition The configuration information corresponding to the effective power saving mode is configuration information corresponding to the first power saving mode; and when the second parameter meets the second triggering condition, the effective power saving mode corresponds to The configuration information is configuration information corresponding to the second power saving mode, or the first parameter is valid if the first parameter meets the first trigger condition and the second parameter meets the second trigger condition The configuration information corresponding to the power saving mode is configuration information corresponding to the second power saving mode.
在一种可选的实现方式中,所述中继设备还包括:In an optional implementation manner, the relay device further includes:
连接建立单元,用于在所述向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数之前,与所述物联网终端设备建立连接;a connection establishing unit, configured to send the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set, and the Internet of Things terminal device establish connection;
所述发送单元,用于向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,在所述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。The sending unit is configured to send the trigger condition set to the IoT terminal device covered by the relay device, and carry the parameter corresponding to each trigger condition in each trigger condition item in the trigger condition set.
在一种可选的实现方式中,所述中继设备还包括:In an optional implementation manner, the relay device further includes:
通信单元,用于在所述向所述中继设备覆盖下的物联网终端设备发送所述触发条件集之前,接收所述物联网终端设备发送的所述物联网终端设备所支持的配置;a communication unit, configured to receive a configuration supported by the Internet of Things terminal device sent by the Internet of Things terminal device, before sending the trigger condition set to the IoT terminal device covered by the relay device;
信息确定单元,用于依据所述物联网终端设备所支持的配置确定分别与所述第一省电模式和所述第二省电模式对应的配置信息。The information determining unit is configured to determine configuration information corresponding to the first power saving mode and the second power saving mode, respectively, according to a configuration supported by the Internet of Things terminal device.
在一种可选的实现方式中,所述发送单元,还用于在所述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给所述物联网终端设备,在所述模式配置指令中携带参数信息;所述参数信息用于使所述物联网终端设备确定所述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。In an optional implementation manner, the sending unit is further configured to: after the Internet of Things terminal device accesses the Internet of Things, forward a mode configuration instruction sent by the access device to the Internet of Things terminal device, where The parameter configuration command carries parameter information, and the parameter information is used to enable the IoT terminal device to determine that the trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
三方面本发明实施例还提供了另一种中继设备,包括:接收设备、发送设备、处理器以及存储器;The third embodiment of the present invention further provides another relay device, including: a receiving device, a sending device, a processor, and a memory;
其中,所述处理器,用于接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;The processor is configured to receive a trigger condition set set by a user, and include at least two trigger conditions in the trigger condition set; and receive, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;使所述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取所述有效省电模式所对应的配置信息,并依据所述配置信息运行所述物联网终端设备;所述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的配置信息。Sending, to the IoT terminal device covered by the relay device, the trigger condition set, and a parameter corresponding to each trigger condition in the trigger condition set; and causing the IoT terminal device to monitor that the effective power saving mode is met After the parameter corresponding to the trigger condition is obtained, the configuration information corresponding to the effective power saving mode is obtained, and the Internet of Things terminal device is operated according to the configuration information; and the configuration information corresponding to the effective power saving mode is the first power saving Configuration information corresponding to the mode or the second power saving mode.
在一种可选的实现方式中,所述处理器,用于接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;包括: In an optional implementation manner, the processor is configured to receive a trigger condition set set by a user, and include at least two trigger conditions in the trigger condition set; and receive the triggering condition set corresponding to the user setting Parameters for each trigger condition; including:
接收用户设定的第一触发条件和第二触发条件,接收所述第一触发条件对应第一参数以及所述第二触发条件对应第二参数;Receiving a first trigger condition and a second trigger condition set by the user, and receiving the first trigger condition corresponding to the first parameter and the second trigger condition corresponding to the second parameter;
在所述物联网设备监测到的所述第一参数符合所述第一触发条件的情况下,所述有效省电模式对应的配置信息为所述第一省电模式对应的配置信息;在所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息,或者,在所述第一参数符合所述第一触发条件并且所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息。The configuration information corresponding to the effective power saving mode is the configuration information corresponding to the first power saving mode, where the first parameter that is detected by the IoT device is consistent with the first triggering condition; When the second parameter is consistent with the second trigger condition, the configuration information corresponding to the effective power saving mode is configuration information corresponding to the second power saving mode, or the first parameter meets the first parameter. In a case where the triggering condition is met and the second parameter is in the second triggering condition, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode.
在一种可选的实现方式中,所述处理器,还用于在所述向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数之前,与所述物联网终端设备建立连接;In an optional implementation manner, the processor is further configured to send, according to the IoT terminal device that is covered by the relay device, the trigger condition set, and corresponding to each trigger in the trigger condition set Establishing a connection with the IoT terminal device before the parameter of the condition;
所述处理器,用于向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;包括:The processor is configured to send the trigger condition set to an IoT terminal device that is covered by the relay device, and a parameter corresponding to each trigger condition in the trigger condition set;
向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,在所述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。Sending the trigger condition set to the IoT terminal device covered by the relay device, and carrying the parameter corresponding to each trigger condition in each trigger condition item in the trigger condition set.
在一种可选的实现方式中,所述处理器,还用于在所述向所述中继设备覆盖下的物联网终端设备发送所述触发条件集之前,接收所述物联网终端设备发送的所述物联网终端设备所支持的配置;In an optional implementation, the processor is further configured to: before the sending, by the IoT terminal device that is covered by the relay device, the triggering condition set, send the IoT terminal device to send The configuration supported by the IoT terminal device;
依据所述物联网终端设备所支持的配置确定分别与所述第一省电模式和所述第二省电模式对应的配置信息。Determining configuration information corresponding to the first power saving mode and the second power saving mode, respectively, according to a configuration supported by the Internet of Things terminal device.
在一种可选的实现方式中,所述处理器,还用于在所述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给所述物联网终端设备,在所述模式配置指令中携带参数信息;所述参数信息用于使所述物联网终端设备确定所述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。In an optional implementation, the processor is further configured to: after the Internet of Things terminal device accesses the Internet of Things, forward a mode configuration command sent by the access device to the Internet of Things terminal device, where The parameter configuration command carries parameter information, and the parameter information is used to enable the IoT terminal device to determine that the trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
从以上技术方案可以看出,本发明实施例具有以下优点:中继设备接收到用户设定的触发条件集,并确定了对应所述触发条件集中各触发条件的参数;物联网终端设备可以有至少两级节能模式,根据不同的需求来确定;节能模式的选择由物联网设备自动完成,因此实现了智能并且灵活的省电管理;另外,由中继设备向其覆盖下的物联网终端设备发送触发条件集,可以实现节能模式的批量配置,配置效率高。As can be seen from the foregoing technical solutions, the embodiment of the present invention has the following advantages: the relay device receives the trigger condition set set by the user, and determines parameters corresponding to the trigger conditions in the trigger condition set; the Internet of Things terminal device may have At least two levels of energy-saving mode are determined according to different needs; the selection of the energy-saving mode is automatically completed by the IoT device, thus implementing intelligent and flexible power-saving management; in addition, the IoT terminal device covered by the relay device Sending a trigger condition set enables batch configuration of the energy-saving mode and high configuration efficiency.
附图说明DRAWINGS
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简要介绍,显而易见地,下面描述中的附图仅 仅是本发明的一些实施例,对于本领域的普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly described below. Obviously, the drawings in the following description only It is only some embodiments of the present invention, and other drawings can be obtained from those skilled in the art without any inventive labor.
图1为本发明实施例方法流程示意图;1 is a schematic flowchart of a method according to an embodiment of the present invention;
图2为本发明实施例系统结构示意图;2 is a schematic structural diagram of a system according to an embodiment of the present invention;
图3为本发明实施例中继设备结构示意图;3 is a schematic structural diagram of a relay device according to an embodiment of the present invention;
图4为本发明实施例中继设备结构示意图;4 is a schematic structural diagram of a relay device according to an embodiment of the present invention;
图5为本发明实施例中继设备结构示意图;FIG. 5 is a schematic structural diagram of a relay device according to an embodiment of the present invention;
图6为本发明实施例中继设备结构示意图;6 is a schematic structural diagram of a relay device according to an embodiment of the present invention;
图7为本发明实施例中继设备结构示意图。FIG. 7 is a schematic structural diagram of a relay device according to an embodiment of the present invention.
具体实施方式Detailed ways
为了使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明作进一步地详细描述,显然,所描述的实施例仅仅是本发明一部份实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本发明保护的范围。The present invention will be further described in detail with reference to the accompanying drawings, in which . All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present invention without creative efforts are within the scope of the present invention.
本发明实施例提供了一种批量管理物联网终端设备省电的方法,如图1所示,还可以参考图2所示的系统结构图,上述方法包括:An embodiment of the present invention provides a method for power-saving management of an Internet of Things terminal device in batches. As shown in FIG. 1 , reference may also be made to the system structure diagram shown in FIG. 2 , where the foregoing method includes:
101:中继设备接收用户设定的触发条件集,在上述触发条件集中包含至少两种触发条件;接收用户设定的对应上述触发条件集中各触发条件的参数;101: The relay device receives a trigger condition set set by the user, and includes at least two trigger conditions in the trigger condition set; and receiving, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
在本实施例中,中继设备可以是在物联网中起到数据转发中继的功能的设备,本发明实施例对接入设备的具体表现形式不作唯一性限定。物联网终端设备,是指具有采用物联网技术接入物联网的终端设备,具体可以是手机,个人电脑,也可以是其他的一些专用设备;例如:交通、农业、枪械管理、等等各种可能的应用场景下的终端设备,对此本发明实施例不作唯一性限定。触发条件集,包含至少两种的预定的触发条件,每一种触发条件,会对应到至少一种参数,这个参数或者几个参数的组合用于确定是否需要触发某一种省电的工作模式。具体的参数可以依据需要来确定,例如:以周期性工作的时候,时间作为参数,每当到达这个时间时,提升省电级别。或者其他的参数,本发明实施例对此无法穷举,以上举例不应理解为对本发明实施例的唯一性限定。In this embodiment, the relay device may be a device that functions as a data forwarding relay in the Internet of Things. The embodiment of the present invention does not uniquely define the specific manifestation of the access device. IoT terminal equipment refers to terminal equipment that uses Internet of Things technology to access the Internet of Things. It can be a mobile phone, a personal computer, or some other special equipment; for example, transportation, agriculture, firearms management, etc. The terminal device in a possible application scenario is not limited to the embodiment of the present invention. The trigger condition set includes at least two predetermined trigger conditions, and each of the trigger conditions corresponds to at least one parameter, and the parameter or a combination of several parameters is used to determine whether a certain power-saving working mode needs to be triggered. . The specific parameters can be determined according to needs. For example, when working periodically, time is used as a parameter, and when this time is reached, the power saving level is raised. The other embodiments are not exhaustive, and the above examples should not be construed as limiting the uniqueness of the embodiments of the present invention.
102:上述中继设备向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数;使上述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取上述有效省电模式所对应的配置信息,并依据上述配置信息 运行上述物联网终端设备;上述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的配置信息。Step 102: The foregoing relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set; and the foregoing IoT terminal device monitors that the effective power saving mode is met. After the corresponding parameter corresponding to the trigger condition, obtaining the configuration information corresponding to the effective power saving mode, and according to the foregoing configuration information And running the foregoing IoT terminal device; the configuration information corresponding to the effective power saving mode is configuration information corresponding to the first power saving mode or the second power saving mode.
在物联网终端设备一侧的执行过程可以如下:物联网终端设备监测触发条件集所对应的参数;确定上述触发条件集所对应的参数所符合的触发条件,为目标触发条件,并确定与上述目标触发条件所对应的省电模式为有效省电模式;物联网终端设备可以监测的参数很多,不过在本实施例中,可以仅检测预定的各触发条件所对应的参数,然后再判断这些参数或者参数的组合,是否符合了某一个触发条件;基于此,可以预见的是,一个触发条件或者几个触发条件的组合会对应到一种省电模式。有效省电模式,是物联网终端设备确定的,将要采用的省电模式,一种省电模式可以对应到一种特定的配置信息,在这种配置信息中配置了具体如何省电的参数,例如:处理器所采用的主频、屏幕的亮度、运行的应用等等;可以理解的是,省电的等级要求越高,那么配置信息所控制物联网终端设备运行时的功率将会越低。The execution process on the IoT terminal device side may be as follows: the IoT terminal device monitors a parameter corresponding to the trigger condition set; determines a trigger condition that the parameter corresponding to the trigger condition set meets, is a target trigger condition, and determines the above The power-saving mode corresponding to the target triggering condition is an effective power-saving mode; the parameters that the Internet of Things terminal device can monitor are many, but in this embodiment, only the parameters corresponding to the predetermined triggering conditions may be detected, and then the parameters are determined. Or whether the combination of parameters meets a certain trigger condition; based on this, it can be foreseen that a trigger condition or a combination of several trigger conditions corresponds to a power saving mode. The effective power saving mode is determined by the IoT terminal device, and the power saving mode to be adopted, and a power saving mode can correspond to a specific configuration information, and specific parameters for how to save power are configured in the configuration information. For example: the main frequency used by the processor, the brightness of the screen, the running application, etc.; it can be understood that the higher the power saving level requirement, the lower the power of the IoT terminal device controlled by the configuration information will be. .
上述预定触发条件集中包含第一触发条件和第二触发条件,上述第一触发条件对应第一参数,上述第二触发条件对应第二参数。更为具体地,上述第一参数包括:上述物联网终端当前应用程序的空转率;上述第二参数包括:上述物联网终端设备处理器的使用率,上述物联网终端设备当前网络连接的传输效率。上述第一省电模式对应的配置信息包含:应用程序的响应速度参数,处理器主频参数;上述第二省电模式包括:天线功率参数、处理器主频参数。或者其他参数都是可以的,对比本发明实施例不作唯一性限定。The predetermined triggering condition set includes a first triggering condition and a second triggering condition, where the first triggering condition corresponds to the first parameter, and the second triggering condition corresponds to the second parameter. More specifically, the first parameter includes: a idling rate of the current application of the Internet of Things terminal; the second parameter includes: a usage rate of the processor of the Internet of Things terminal device, and a transmission efficiency of the current network connection of the Internet of Things terminal device . The configuration information corresponding to the first power saving mode includes: a response speed parameter of the application, a processor frequency parameter, and the second power saving mode includes: an antenna power parameter and a processor frequency parameter. Or other parameters are possible, and are not limited to the embodiments of the present invention.
从以上技术方案可以看出,本发明实施例具有以下优点:中继设备接收到用户设定的触发条件集,并确定了对应上述触发条件集中各触发条件的参数;物联网终端设备可以有至少两级节能模式,根据不同的需求来确定;节能模式的选择由物联网设备自动完成,因此实现了智能并且灵活的省电管理;另外,由中继设备向其覆盖下的物联网终端设备发送触发条件集,可以实现节能模式的批量配置,配置效率高。It can be seen from the foregoing technical solutions that the embodiment of the present invention has the following advantages: the relay device receives the set of trigger conditions set by the user, and determines parameters corresponding to the trigger conditions in the trigger condition set; the Internet of Things terminal device may have at least The two-level energy-saving mode is determined according to different needs; the selection of the energy-saving mode is automatically completed by the IoT device, thus implementing intelligent and flexible power-saving management; in addition, the relay device sends the IoT terminal device under its coverage The trigger condition set can implement batch configuration of the energy-saving mode, and the configuration efficiency is high.
在一种可选的实现方式中,本发明实施例还提供了触发条件集的举例说明,如下:上述中继设备接收用户设定的触发条件集,在上述触发条件集中包含至少两种触发条件;接收用户设定的对应上述触发条件集中各触发条件的参数;包括:In an optional implementation, the embodiment of the present invention further provides an example of a trigger condition set, where the relay device receives a set of trigger conditions set by a user, and includes at least two trigger conditions in the trigger condition set. Receiving a parameter set by the user corresponding to each trigger condition in the above trigger condition set;
上述中继设备接收用户设定的第一触发条件和第二触发条件,接收上述第一触发条件对应第一参数以及上述第二触发条件对应第二参数;The relay device receives the first trigger condition and the second trigger condition set by the user, and receives the first trigger condition corresponding to the first parameter and the second trigger condition corresponding to the second parameter;
在上述物联网设备监测到的上述第一参数符合上述第一触发条件的情况下,上述有效省电模式对应的配置信息为上述第一省电模式对应的配置信息; 在上述第二参数符合上述第二触发条件的情况下,上述有效省电模式对应的配置信息为上述第二省电模式对应的配置信息,或者,在上述第一参数符合上述第一触发条件并且上述第二参数符合上述第二触发条件的情况下,上述有效省电模式对应的配置信息为上述第二省电模式对应的配置信息。The configuration information corresponding to the effective power saving mode is configuration information corresponding to the first power saving mode, where the first parameter that is detected by the foregoing IoT device meets the first triggering condition; When the second parameter meets the second trigger condition, the configuration information corresponding to the effective power saving mode is configuration information corresponding to the second power saving mode, or the first parameter meets the first trigger condition and When the second parameter meets the second trigger condition, the configuration information corresponding to the effective power saving mode is configuration information corresponding to the second power saving mode.
在本实施例中“第一”和“第二”仅仅是为了区分两个相同技术术语,例如区分两个参数,区分两个触发条件,等;不应将“第一”和“第二”理解为有其他任何技术性限定,后续实施例中不再一一说明。In the present embodiment, "first" and "second" are merely used to distinguish two identical technical terms, such as distinguishing two parameters, distinguishing between two trigger conditions, and the like; "first" and "second" should not be used. It is understood that there are any other technical limitations, which will not be described one by one in the following embodiments.
基于前述举例,不同的参数可以对应到不同的触发条件,不同的参数相应地,又可以对应到针对这些不同的参数所设定的省电模式,省电模式将会对应到自己所需的配置参数。例如:无线收发数据量这个参数,如果该参数很低,那么为了省电,相应的配置参数可以配置天线的功率。配置天线的功率可以直接降低天线的功率,或者,让天线处于间歇式工作的模式而不是一直处于固定的功率进行工作。Based on the foregoing examples, different parameters may correspond to different trigger conditions, and different parameters may correspondingly correspond to power saving modes set for these different parameters, and the power saving mode will correspond to the configuration required by itself. parameter. For example, the parameter of wireless data transmission and reception, if the parameter is very low, in order to save power, the corresponding configuration parameter can configure the power of the antenna. Configuring the power of the antenna can directly reduce the power of the antenna, or allow the antenna to operate in an intermittent mode rather than always at a fixed power.
在一种可选的实现方式中,本发明实施例还提供了由中继设备来配置省电模式的具体实现方案,并在触发条件集中下发与触发条件对应的参数,如下:在上述中继设备向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数之前,上述方法还包括:In an optional implementation manner, the embodiment of the present invention further provides a specific implementation scheme for configuring a power saving mode by the relay device, and sends a parameter corresponding to the trigger condition in the trigger condition set, as follows: The method further includes: before the device sends the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set, the method further includes:
上述中继设备与上述物联网终端设备建立连接;The foregoing relay device establishes a connection with the foregoing Internet of Things terminal device;
上述中继设备向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数;包括:The relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set;
上述中继设备向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,在上述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。The relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and the trigger condition items in the trigger condition set carry parameters corresponding to the trigger conditions.
在本实施例中,由中继设备来下发配置信息,在物联网这一特定的应用场景下,中继设备的覆盖范围会非常大,如果物联网终端设备采用人工配置的方式,如果有配置信息的修改,那么将会极为麻烦;例如:安装在山上,用于管理树林的物联网终端设备,如果人工配置,那么工作人员将需要翻山越岭,效率将会极低;而采用在接入设备配置的方式,则可以快速完成集中式配置,大大提高了效率;而且配置将会极灵活。In this embodiment, the configuration information is delivered by the relay device. In the specific application scenario of the Internet of Things, the coverage of the relay device may be very large, if the IoT terminal device is manually configured, if any Modification of configuration information, it will be extremely troublesome; for example: installed on the mountain, IoT terminal equipment used to manage the forest, if manually configured, then the staff will need to over the mountain, the efficiency will be extremely low; By entering the device configuration mode, the centralized configuration can be completed quickly, which greatly improves the efficiency; and the configuration will be extremely flexible.
在一种可选的实现方式中,基于由中继设备下发配置信息的这一具体实现方案,本发明实施例还提供了避免不必要配置信息被下发导致可能出现的冲突或者其他问题,具体如下:在上述中继设备向上述中继设备覆盖下的物联网终端设备发送上述触发条件集之前,上述方法还包括:In an optional implementation manner, the embodiment of the present invention further provides a collision or other problem that may occur due to the unnecessary configuration information being sent, based on the specific implementation of the configuration information delivered by the relay device. Specifically, the method further includes: before the foregoing relay device sends the trigger condition set to the IoT terminal device that is covered by the relay device, the method further includes:
接收上述物联网终端设备发送的上述物联网终端设备所支持的配置;Receiving a configuration supported by the foregoing Internet of Things terminal device sent by the foregoing Internet of Things terminal device;
依据上述物联网终端设备所支持的配置确定分别与上述第一省电模式和上述第二省电模式对应的配置信息。 The configuration information corresponding to the first power saving mode and the second power saving mode, respectively, is determined according to the configuration supported by the foregoing Internet of Things terminal device.
在本实施例中,由终端设备主动上报自己所支持的配置,那么中继设备可以针对终端设备所支持的配置来下发配置信息,从而保证配置信息能够被准确地执行,避免了不必要配置信息被下发导致可能出现的冲突或者其他问题。In this embodiment, the terminal device actively reports the configuration supported by the terminal device, and the relay device can deliver the configuration information for the configuration supported by the terminal device, thereby ensuring that the configuration information can be accurately executed and unnecessary configuration is avoided. Information is sent out to cause possible conflicts or other problems.
在一种可选的实现方式中,本发明实施例还提供了在自动进行省电模式的选择之外,由网络侧对物联网终端设备进行省电模式控制的方案,具体如下:上述方法还包括:In an optional implementation manner, the embodiment of the present invention further provides a solution for performing power saving mode control on the Internet of Things terminal device by the network side in addition to automatically selecting the power saving mode, as follows: include:
在上述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给上述物联网终端设备,在上述模式配置指令中携带参数信息;上述参数信息用于使上述物联网终端设备确定上述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。After the Internet of Things terminal device accesses the Internet of Things, the mode configuration command sent by the access device is forwarded to the IoT terminal device, and the parameter configuration command carries parameter information; the parameter information is used to determine the IoT terminal device. The trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
在本实施例中,物联网设备的工作模式可以受到网络侧的控制,例如:在某些应用场景下,物联网设备会为网络侧设备提供必要的数据采集服务,但是网络侧设备现在并不需要这些数据了,这时候如果物联网设备仍然处于较高功耗的工作状态下,将会导致能源的浪费,此时网络侧设备可以下发配置指令使物理网设备进入较为省电的模式,或者指定的省电模式。从而更灵活的实现对省电模式的控制。In this embodiment, the working mode of the IoT device can be controlled by the network side. For example, in some application scenarios, the IoT device provides the necessary data collection service for the network side device, but the network side device is not currently If you need these data, if the IoT device is still in a higher power consumption state, it will lead to waste of energy. At this time, the network side device can send configuration commands to make the physical network device enter a more power-saving mode. Or the specified power saving mode. Thereby more flexible control of the power saving mode.
基于前述说明可知,本发明实施例提供的是多种省电模式的物联网终端设备,基于物联网终端设备自动选择省电模式的方案,由于监测到的参数的变化会导致物联网终端设备自动切换省电模式。Based on the foregoing description, the embodiments of the present invention provide a variety of power-saving mode IoT terminal devices, based on the scenario that the IoT terminal device automatically selects the power-saving mode, and the monitored parameter changes may cause the IoT terminal device to automatically Switch the power saving mode.
用户通过中继设备的人机交互接口,为中继设备下的所有物联网终端设备一次性批量设置第一触发条件和第二触发条件,上述第一触发条件用于激活预设的第一省电模式;上述第二触发条件用于激活预设的第二省电模式;当物联网终端设备的运行状态达到上述第一触发条件和/或上述第二触发条件时,控制上述物联网终端设备切换至上述第一省电模式或上述第二省电模式。The user manually sets a first trigger condition and a second trigger condition for all the IoT terminal devices under the relay device through the human-machine interaction interface of the relay device, where the first trigger condition is used to activate the preset first province. The second triggering condition is used to activate the preset second power saving mode; and when the operating state of the Internet of Things terminal device reaches the first triggering condition and/or the second triggering condition, the foregoing Internet of Things terminal device is controlled. Switching to the first power saving mode or the second power saving mode described above.
在本发明实施例中,触发条件与省电模式之间存在对应关系,触发条件与监测的参数之间也存在对应关系。In the embodiment of the present invention, there is a corresponding relationship between the trigger condition and the power saving mode, and there is also a corresponding relationship between the trigger condition and the monitored parameter.
本发明实施例提供了一种中继设备,如图3所示,包括:An embodiment of the present invention provides a relay device, as shown in FIG. 3, including:
接收单元301,用于接收用户设定的触发条件集,在上述触发条件集中包含至少两种触发条件;接收用户设定的对应上述触发条件集中各触发条件的参数;The receiving unit 301 is configured to receive a trigger condition set set by the user, and include at least two trigger conditions in the trigger condition set; and receive, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
发送单元302,用于向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数;使上述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取上述有效省电模式所对应的配置信息,并依据上述配置信息运行上述物联网终端设备;上述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的 配置信息。The sending unit 302 is configured to send the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set; and enable the IoT terminal device to monitor that the effective power saving mode is met After the corresponding parameter of the triggering condition is obtained, obtaining the configuration information corresponding to the effective power saving mode, and running the foregoing Internet of Things terminal device according to the configuration information; the configuration information corresponding to the effective power saving mode is the first power saving mode or Corresponding to the second power saving mode Configuration information.
在本实施例中,中继设备可以是在物联网中起到数据转发中继的功能的设备,本发明实施例对接入设备的具体表现形式不作唯一性限定。物联网终端设备,是指具有采用物联网技术接入物联网的终端设备,具体可以是手机,个人电脑,也可以是其他的一些专用设备;例如:交通、农业、枪械管理、等等各种可能的应用场景下的终端设备,对此本发明实施例不作唯一性限定。触发条件集,包含至少两种的预定的触发条件,每一种触发条件,会对应到至少一种参数,这个参数或者几个参数的组合用于确定是否需要触发某一种省电的工作模式。具体的参数可以依据需要来确定,例如:以周期性工作的时候,时间作为参数,每当到达这个时间时,提升省电级别。或者其他的参数,本发明实施例对此无法穷举,以上举例不应理解为对本发明实施例的唯一性限定。In this embodiment, the relay device may be a device that functions as a data forwarding relay in the Internet of Things. The embodiment of the present invention does not uniquely define the specific manifestation of the access device. IoT terminal equipment refers to terminal equipment that uses Internet of Things technology to access the Internet of Things. It can be a mobile phone, a personal computer, or some other special equipment; for example, transportation, agriculture, firearms management, etc. The terminal device in a possible application scenario is not limited to the embodiment of the present invention. The trigger condition set includes at least two predetermined trigger conditions, and each of the trigger conditions corresponds to at least one parameter, and the parameter or a combination of several parameters is used to determine whether a certain power-saving working mode needs to be triggered. . The specific parameters can be determined according to needs. For example, when working periodically, time is used as a parameter, and when this time is reached, the power saving level is raised. The other embodiments are not exhaustive, and the above examples should not be construed as limiting the uniqueness of the embodiments of the present invention.
在物联网终端设备一侧的执行过程可以如下:物联网终端设备监测触发条件集所对应的参数;确定上述触发条件集所对应的参数所符合的触发条件,为目标触发条件,并确定与上述目标触发条件所对应的省电模式为有效省电模式;物联网终端设备可以监测的参数很多,不过在本实施例中,可以仅检测预定的各触发条件所对应的参数,然后再判断这些参数或者参数的组合,是否符合了某一个触发条件;基于此,可以预见的是,一个触发条件或者几个触发条件的组合会对应到一种省电模式。有效省电模式,是物联网终端设备确定的,将要采用的省电模式,一种省电模式可以对应到一种特定的配置信息,在这种配置信息中配置了具体如何省电的参数,例如:处理器所采用的主频、屏幕的亮度、运行的应用等等;可以理解的是,省电的等级要求越高,那么配置信息所控制物联网终端设备运行时的功率将会越低。The execution process on the IoT terminal device side may be as follows: the IoT terminal device monitors a parameter corresponding to the trigger condition set; determines a trigger condition that the parameter corresponding to the trigger condition set meets, is a target trigger condition, and determines the above The power-saving mode corresponding to the target triggering condition is an effective power-saving mode; the parameters that the Internet of Things terminal device can monitor are many, but in this embodiment, only the parameters corresponding to the predetermined triggering conditions may be detected, and then the parameters are determined. Or whether the combination of parameters meets a certain trigger condition; based on this, it can be foreseen that a trigger condition or a combination of several trigger conditions corresponds to a power saving mode. The effective power saving mode is determined by the IoT terminal device, and the power saving mode to be adopted, and a power saving mode can correspond to a specific configuration information, and specific parameters for how to save power are configured in the configuration information. For example: the main frequency used by the processor, the brightness of the screen, the running application, etc.; it can be understood that the higher the power saving level requirement, the lower the power of the IoT terminal device controlled by the configuration information will be. .
上述预定触发条件集中包含第一触发条件和第二触发条件,上述第一触发条件对应第一参数,上述第二触发条件对应第二参数。更为具体地,上述第一参数包括:上述物联网终端当前应用程序的空转率;上述第二参数包括:上述物联网终端设备处理器的使用率,上述物联网终端设备当前网络连接的传输效率。上述第一省电模式对应的配置信息包含:应用程序的响应速度参数,处理器主频参数;上述第二省电模式包括:天线功率参数、处理器主频参数。或者其他参数都是可以的,对比本发明实施例不作唯一性限定。The predetermined triggering condition set includes a first triggering condition and a second triggering condition, where the first triggering condition corresponds to the first parameter, and the second triggering condition corresponds to the second parameter. More specifically, the first parameter includes: a idling rate of the current application of the Internet of Things terminal; the second parameter includes: a usage rate of the processor of the Internet of Things terminal device, and a transmission efficiency of the current network connection of the Internet of Things terminal device . The configuration information corresponding to the first power saving mode includes: a response speed parameter of the application, a processor frequency parameter, and the second power saving mode includes: an antenna power parameter and a processor frequency parameter. Or other parameters are possible, and are not limited to the embodiments of the present invention.
从以上技术方案可以看出,本发明实施例具有以下优点:中继设备接收到用户设定的触发条件集,并确定了对应上述触发条件集中各触发条件的参数;物联网终端设备可以有至少两级节能模式,根据不同的需求来确定;节能模式的选择由物联网设备自动完成,因此实现了智能并且灵活的省电管理;另外, 由中继设备向其覆盖下的物联网终端设备发送触发条件集,可以实现节能模式的批量配置,配置效率高。It can be seen from the foregoing technical solutions that the embodiment of the present invention has the following advantages: the relay device receives the set of trigger conditions set by the user, and determines parameters corresponding to the trigger conditions in the trigger condition set; the Internet of Things terminal device may have at least The two-level energy-saving mode is determined according to different needs; the selection of the energy-saving mode is automatically completed by the IoT device, thus achieving intelligent and flexible power-saving management; The triggering condition set is sent by the relay device to the IoT terminal device under the coverage, and the energy saving mode can be configured in batches with high configuration efficiency.
在一种可选的实现方式中,本发明实施例还提供了触发条件集的举例说明,如下:上述接收单元301,用于接收用户设定的第一触发条件和第二触发条件,接收上述第一触发条件对应第一参数以及上述第二触发条件对应第二参数;In an optional implementation manner, the embodiment of the present invention further provides an example of a trigger condition set, as follows: the receiving unit 301 is configured to receive a first trigger condition and a second trigger condition set by a user, and receive the foregoing. The first trigger condition corresponds to the first parameter and the second trigger condition corresponds to the second parameter;
在上述物联网设备监测到的上述第一参数符合上述第一触发条件的情况下,上述有效省电模式对应的配置信息为上述第一省电模式对应的配置信息;在上述第二参数符合上述第二触发条件的情况下,上述有效省电模式对应的配置信息为上述第二省电模式对应的配置信息,或者,在上述第一参数符合上述第一触发条件并且上述第二参数符合上述第二触发条件的情况下,上述有效省电模式对应的配置信息为上述第二省电模式对应的配置信息。The configuration information corresponding to the effective power saving mode is the configuration information corresponding to the first power saving mode, and the second parameter meets the foregoing, where the first parameter that is detected by the foregoing IoT device meets the first trigger condition. In the case of the second triggering condition, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode, or the first parameter meets the first trigger condition and the second parameter meets the foregoing In the case of the two triggering conditions, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode.
在本实施例中“第一”和“第二”仅仅是为了区分两个相同技术术语,例如区分两个参数,区分两个触发条件,等;不应将“第一”和“第二”理解为有其他任何技术性限定,后续实施例中不再一一说明。In the present embodiment, "first" and "second" are merely used to distinguish two identical technical terms, such as distinguishing two parameters, distinguishing between two trigger conditions, and the like; "first" and "second" should not be used. It is understood that there are any other technical limitations, which will not be described one by one in the following embodiments.
基于前述举例,不同的参数可以对应到不同的触发条件,不同的参数相应地,又可以对应到针对这些不同的参数所设定的省电模式,省电模式将会对应到自己所需的配置参数。例如:无线收发数据量这个参数,如果该参数很低,那么为了省电,相应的配置参数可以配置天线的功率。配置天线的功率可以直接降低天线的功率,或者,让天线处于间歇式工作的模式而不是一直处于固定的功率进行工作。Based on the foregoing examples, different parameters may correspond to different trigger conditions, and different parameters may correspondingly correspond to power saving modes set for these different parameters, and the power saving mode will correspond to the configuration required by itself. parameter. For example, the parameter of wireless data transmission and reception, if the parameter is very low, in order to save power, the corresponding configuration parameter can configure the power of the antenna. Configuring the power of the antenna can directly reduce the power of the antenna, or allow the antenna to operate in an intermittent mode rather than always at a fixed power.
在一种可选的实现方式中,本发明实施例还提供了由中继设备来配置省电模式的具体实现方案,并在触发条件集中下发与触发条件对应的参数,如下:如图4所示,上述中继设备还包括:In an optional implementation manner, the embodiment of the present invention further provides a specific implementation scheme for configuring a power saving mode by the relay device, and sends a parameter corresponding to the triggering condition in the trigger condition set, as follows: As shown, the above relay device further includes:
连接建立单元401,用于在上述向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数之前,与上述物联网终端设备建立连接;The connection establishing unit 401 is configured to establish a connection with the Internet of Things terminal device before sending the trigger condition set to the IoT terminal device covered by the relay device and the parameter corresponding to each trigger condition in the trigger condition set.
上述发送单元302,用于向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,在上述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。The sending unit 302 is configured to send the trigger condition set to the Internet of Things terminal device covered by the relay device, and carry a parameter corresponding to each trigger condition in each trigger condition item in the trigger condition set.
在本实施例中,由中继设备来下发配置信息,在物联网这一特定的应用场景下,中继设备的覆盖范围会非常大,如果物联网终端设备采用人工配置的方式,如果有配置信息的修改,那么将会极为麻烦;例如:安装在山上,用于管理树林的物联网终端设备,如果人工配置,那么工作人员将需要翻山越岭,效率将会极低;而采用在接入设备配置的方式,则可以快速完成集中式配置,大大提高了效率;而且配置将会极灵活。In this embodiment, the configuration information is delivered by the relay device. In the specific application scenario of the Internet of Things, the coverage of the relay device may be very large, if the IoT terminal device is manually configured, if any Modification of configuration information, it will be extremely troublesome; for example: installed on the mountain, IoT terminal equipment used to manage the forest, if manually configured, then the staff will need to over the mountain, the efficiency will be extremely low; By entering the device configuration mode, the centralized configuration can be completed quickly, which greatly improves the efficiency; and the configuration will be extremely flexible.
在一种可选的实现方式中,基于由中继设备下发配置信息的这一具体实现 方案,本发明实施例还提供了避免不必要配置信息被下发导致可能出现的冲突或者其他问题,具体如下:如图5所示,上述中继设备还包括:In an optional implementation manner, the specific implementation is based on sending configuration information by the relay device. The solution, the embodiment of the present invention further provides a collision or other problem that may be caused by the unnecessary configuration information being sent, as follows: As shown in FIG. 5, the foregoing relay device further includes:
通信单元501,用于在上述向上述中继设备覆盖下的物联网终端设备发送上述触发条件集之前,接收上述物联网终端设备发送的上述物联网终端设备所支持的配置;The communication unit 501 is configured to receive, before the sending of the trigger condition set to the Internet of Things terminal device covered by the relay device, the configuration supported by the Internet of Things terminal device sent by the Internet of Things terminal device;
信息确定单元502,用于依据上述物联网终端设备所支持的配置确定分别与上述第一省电模式和上述第二省电模式对应的配置信息。The information determining unit 502 is configured to determine configuration information corresponding to the first power saving mode and the second power saving mode, respectively, according to the configuration supported by the foregoing Internet of Things terminal device.
在本实施例中,由终端设备主动上报自己所支持的配置,那么中继设备可以针对终端设备所支持的配置来下发配置信息,从而保证配置信息能够被准确地执行,避免了不必要配置信息被下发导致可能出现的冲突或者其他问题。In this embodiment, the terminal device actively reports the configuration supported by the terminal device, and the relay device can deliver the configuration information for the configuration supported by the terminal device, thereby ensuring that the configuration information can be accurately executed and unnecessary configuration is avoided. Information is sent out to cause possible conflicts or other problems.
在一种可选的实现方式中,本发明实施例还提供了在自动进行省电模式的选择之外,由网络侧对物联网终端设备进行省电模式控制的方案,具体如下:上述发送单元302,还用于在上述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给上述物联网终端设备,在上述模式配置指令中携带参数信息;上述参数信息用于使上述物联网终端设备确定上述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。In an optional implementation manner, the embodiment of the present invention further provides a solution for performing power saving mode control on the Internet of Things terminal device by the network side in addition to automatically selecting the power saving mode, as follows: 302. The method further includes: after the Internet of Things terminal device accesses the Internet of Things, forwarding a mode configuration command sent by the access device to the IoT terminal device, where the mode configuration command carries parameter information; the parameter information is used to enable the foregoing The IoT terminal device determines that the trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
在本实施例中,物联网设备的工作模式可以受到网络侧的控制,例如:在某些应用场景下,物联网设备会为网络侧设备提供必要的数据采集服务,但是网络侧设备现在并不需要这些数据了,这时候如果物联网设备仍然处于较高功耗的工作状态下,将会导致能源的浪费,此时网络侧设备可以下发配置指令使物理网设备进入较为省电的模式,或者指定的省电模式。从而更灵活的实现对省电模式的控制。In this embodiment, the working mode of the IoT device can be controlled by the network side. For example, in some application scenarios, the IoT device provides the necessary data collection service for the network side device, but the network side device is not currently If you need these data, if the IoT device is still in a higher power consumption state, it will lead to waste of energy. At this time, the network side device can send configuration commands to make the physical network device enter a more power-saving mode. Or the specified power saving mode. Thereby more flexible control of the power saving mode.
本发明实施例还提供了另一种中继设备,包括:接收设备601、发送设备602、处理器603以及存储器604;The embodiment of the present invention further provides another relay device, including: a receiving device 601, a sending device 602, a processor 603, and a memory 604;
其中,上述处理器603,用于接收用户设定的触发条件集,在上述触发条件集中包含至少两种触发条件;接收用户设定的对应上述触发条件集中各触发条件的参数;The processor 603 is configured to receive a trigger condition set set by the user, and include at least two types of trigger conditions in the trigger condition set; and receive, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数;使上述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取上述有效省电模式所对应的配置信息,并依据上述配置信息运行上述物联网终端设备;上述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的配置信息。Transmitting, to the IoT terminal device covered by the relay device, the trigger condition set, and the parameter corresponding to each trigger condition in the trigger condition set; and correspondingly, the foregoing IoT terminal device meets a trigger condition corresponding to meeting the effective power saving mode Obtaining the configuration information corresponding to the foregoing effective power saving mode, and running the foregoing Internet of Things terminal device according to the configuration information; the configuration information corresponding to the effective power saving mode is the first power saving mode or the second power saving mode Corresponding configuration information.
在本实施例中,中继设备可以是在物联网中起到数据转发中继的功能的设备,本发明实施例对接入设备的具体表现形式不作唯一性限定。物联网终端设备,是指具有采用物联网技术接入物联网的终端设备,具 体可以是手机,个人电脑,也可以是其他的一些专用设备;例如:交通、农业、枪械管理、等等各种可能的应用场景下的终端设备,对此本发明实施例不作唯一性限定。触发条件集,包含至少两种的预定的触发条件,每一种触发条件,会对应到至少一种参数,这个参数或者几个参数的组合用于确定是否需要触发某一种省电的工作模式。具体的参数可以依据需要来确定,例如:以周期性工作的时候,时间作为参数,每当到达这个时间时,提升省电级别。或者其他的参数,本发明实施例对此无法穷举,以上举例不应理解为对本发明实施例的唯一性限定。In this embodiment, the relay device may be a device that functions as a data forwarding relay in the Internet of Things. The embodiment of the present invention does not uniquely define the specific manifestation of the access device. IoT terminal equipment refers to a terminal device that uses the Internet of Things technology to access the Internet of Things. The body may be a mobile phone, a personal computer, or some other special equipment; for example, a terminal device in various possible application scenarios, such as transportation, agriculture, firearms management, and the like, which is not limited by the embodiment of the present invention. The trigger condition set includes at least two predetermined trigger conditions, and each of the trigger conditions corresponds to at least one parameter, and the parameter or a combination of several parameters is used to determine whether a certain power-saving working mode needs to be triggered. . The specific parameters can be determined according to needs. For example, when working periodically, time is used as a parameter, and when this time is reached, the power saving level is raised. The other embodiments are not exhaustive, and the above examples should not be construed as limiting the uniqueness of the embodiments of the present invention.
在物联网终端设备一侧的执行过程可以如下:物联网终端设备监测触发条件集所对应的参数;确定上述触发条件集所对应的参数所符合的触发条件,为目标触发条件,并确定与上述目标触发条件所对应的省电模式为有效省电模式;物联网终端设备可以监测的参数很多,不过在本实施例中,可以仅检测预定的各触发条件所对应的参数,然后再判断这些参数或者参数的组合,是否符合了某一个触发条件;基于此,可以预见的是,一个触发条件或者几个触发条件的组合会对应到一种省电模式。有效省电模式,是物联网终端设备确定的,将要采用的省电模式,一种省电模式可以对应到一种特定的配置信息,在这种配置信息中配置了具体如何省电的参数,例如:处理器所采用的主频、屏幕的亮度、运行的应用等等;可以理解的是,省电的等级要求越高,那么配置信息所控制物联网终端设备运行时的功率将会越低。The execution process on the IoT terminal device side may be as follows: the IoT terminal device monitors a parameter corresponding to the trigger condition set; determines a trigger condition that the parameter corresponding to the trigger condition set meets, is a target trigger condition, and determines the above The power-saving mode corresponding to the target triggering condition is an effective power-saving mode; the parameters that the Internet of Things terminal device can monitor are many, but in this embodiment, only the parameters corresponding to the predetermined triggering conditions may be detected, and then the parameters are determined. Or whether the combination of parameters meets a certain trigger condition; based on this, it can be foreseen that a trigger condition or a combination of several trigger conditions corresponds to a power saving mode. The effective power saving mode is determined by the IoT terminal device, and the power saving mode to be adopted, and a power saving mode can correspond to a specific configuration information, and specific parameters for how to save power are configured in the configuration information. For example: the main frequency used by the processor, the brightness of the screen, the running application, etc.; it can be understood that the higher the power saving level requirement, the lower the power of the IoT terminal device controlled by the configuration information will be. .
上述预定触发条件集中包含第一触发条件和第二触发条件,上述第一触发条件对应第一参数,上述第二触发条件对应第二参数。更为具体地,上述第一参数包括:上述物联网终端当前应用程序的空转率;上述第二参数包括:上述物联网终端设备处理器的使用率,上述物联网终端设备当前网络连接的传输效率。上述第一省电模式对应的配置信息包含:应用程序的响应速度参数,处理器主频参数;上述第二省电模式包括:天线功率参数、处理器主频参数。或者其他参数都是可以的,对比本发明实施例不作唯一性限定。The predetermined triggering condition set includes a first triggering condition and a second triggering condition, where the first triggering condition corresponds to the first parameter, and the second triggering condition corresponds to the second parameter. More specifically, the first parameter includes: a idling rate of the current application of the Internet of Things terminal; the second parameter includes: a usage rate of the processor of the Internet of Things terminal device, and a transmission efficiency of the current network connection of the Internet of Things terminal device . The configuration information corresponding to the first power saving mode includes: a response speed parameter of the application, a processor frequency parameter, and the second power saving mode includes: an antenna power parameter and a processor frequency parameter. Or other parameters are possible, and are not limited to the embodiments of the present invention.
从以上技术方案可以看出,本发明实施例具有以下优点:中继设备接收到用户设定的触发条件集,并确定了对应上述触发条件集中各触发条件的参数;物联网终端设备可以有至少两级节能模式,根据不同的需求来确定;节能模式的选择由物联网设备自动完成,因此实现了智能并且灵活的省电管理;另外,由中继设备向其覆盖下的物联网终端设备发送触发条件集,可以实现节能模式的批量配置,配置效率高。It can be seen from the foregoing technical solutions that the embodiment of the present invention has the following advantages: the relay device receives the set of trigger conditions set by the user, and determines parameters corresponding to the trigger conditions in the trigger condition set; the Internet of Things terminal device may have at least The two-level energy-saving mode is determined according to different needs; the selection of the energy-saving mode is automatically completed by the IoT device, thus implementing intelligent and flexible power-saving management; in addition, the relay device sends the IoT terminal device under its coverage The trigger condition set can implement batch configuration of the energy-saving mode, and the configuration efficiency is high.
在一种可选的实现方式中,本发明实施例还提供了触发条件集的举例说明,如下:上述处理器603,用于接收用户设定的触发条件集,在上述触发条件集中 包含至少两种触发条件;接收用户设定的对应上述触发条件集中各触发条件的参数;包括:In an optional implementation manner, the embodiment of the present invention further provides an example of a trigger condition set, as follows: the processor 603 is configured to receive a trigger condition set set by a user, where the trigger condition set is The method includes at least two types of triggering conditions; and receiving, by the user, a parameter corresponding to each triggering condition in the foregoing triggering condition set;
接收用户设定的第一触发条件和第二触发条件,接收上述第一触发条件对应第一参数以及上述第二触发条件对应第二参数;Receiving a first trigger condition and a second trigger condition set by the user, and receiving the first trigger condition corresponding to the first parameter and the second trigger condition corresponding to the second parameter;
在上述物联网设备监测到的上述第一参数符合上述第一触发条件的情况下,上述有效省电模式对应的配置信息为上述第一省电模式对应的配置信息;在上述第二参数符合上述第二触发条件的情况下,上述有效省电模式对应的配置信息为上述第二省电模式对应的配置信息,或者,在上述第一参数符合上述第一触发条件并且上述第二参数符合上述第二触发条件的情况下,上述有效省电模式对应的配置信息为上述第二省电模式对应的配置信息。The configuration information corresponding to the effective power saving mode is the configuration information corresponding to the first power saving mode, and the second parameter meets the foregoing, where the first parameter that is detected by the foregoing IoT device meets the first trigger condition. In the case of the second triggering condition, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode, or the first parameter meets the first trigger condition and the second parameter meets the foregoing In the case of the two triggering conditions, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode.
在本实施例中“第一”和“第二”仅仅是为了区分两个相同技术术语,例如区分两个参数,区分两个触发条件,等;不应将“第一”和“第二”理解为有其他任何技术性限定,后续实施例中不再一一说明。In the present embodiment, "first" and "second" are merely used to distinguish two identical technical terms, such as distinguishing two parameters, distinguishing between two trigger conditions, and the like; "first" and "second" should not be used. It is understood that there are any other technical limitations, which will not be described one by one in the following embodiments.
基于前述举例,不同的参数可以对应到不同的触发条件,不同的参数相应地,又可以对应到针对这些不同的参数所设定的省电模式,省电模式将会对应到自己所需的配置参数。例如:无线收发数据量这个参数,如果该参数很低,那么为了省电,相应的配置参数可以配置天线的功率。配置天线的功率可以直接降低天线的功率,或者,让天线处于间歇式工作的模式而不是一直处于固定的功率进行工作。Based on the foregoing examples, different parameters may correspond to different trigger conditions, and different parameters may correspondingly correspond to power saving modes set for these different parameters, and the power saving mode will correspond to the configuration required by itself. parameter. For example, the parameter of wireless data transmission and reception, if the parameter is very low, in order to save power, the corresponding configuration parameter can configure the power of the antenna. Configuring the power of the antenna can directly reduce the power of the antenna, or allow the antenna to operate in an intermittent mode rather than always at a fixed power.
在一种可选的实现方式中,本发明实施例还提供了由中继设备来配置省电模式的具体实现方案,并在触发条件集中下发与触发条件对应的参数,如下:上述处理器603,还用于在上述向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数之前,与上述物联网终端设备建立连接;In an optional implementation manner, the embodiment of the present invention further provides a specific implementation scheme for configuring a power saving mode by the relay device, and sends a parameter corresponding to the trigger condition in the trigger condition set, as follows: 603. The method is further configured to establish a connection with the foregoing Internet of Things terminal device before sending the foregoing trigger condition set to the IoT terminal device covered by the relay device and the parameter corresponding to each trigger condition in the trigger condition set.
上述处理器603,用于向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,以及对应上述触发条件集中各触发条件的参数;包括:The processor 603 is configured to send the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set;
向上述中继设备覆盖下的物联网终端设备发送上述触发条件集,在上述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。The triggering condition set is sent to the IoT terminal device covered by the relay device, and each trigger condition item in the trigger condition set carries a parameter corresponding to each trigger condition.
在本实施例中,由中继设备来下发配置信息,在物联网这一特定的应用场景下,中继设备的覆盖范围会非常大,如果物联网终端设备采用人工配置的方式,如果有配置信息的修改,那么将会极为麻烦;例如:安装在山上,用于管理树林的物联网终端设备,如果人工配置,那么工作人员将需要翻山越岭,效率将会极低;而采用在接入设备配置的方式,则可以快速完成集中式配置,大大提高了效率;而且配置将会极灵活。In this embodiment, the configuration information is delivered by the relay device. In the specific application scenario of the Internet of Things, the coverage of the relay device may be very large, if the IoT terminal device is manually configured, if any Modification of configuration information, it will be extremely troublesome; for example: installed on the mountain, IoT terminal equipment used to manage the forest, if manually configured, then the staff will need to over the mountain, the efficiency will be extremely low; By entering the device configuration mode, the centralized configuration can be completed quickly, which greatly improves the efficiency; and the configuration will be extremely flexible.
在一种可选的实现方式中,基于由中继设备下发配置信息的这一具体实现方案,本发明实施例还提供了避免不必要配置信息被下发导致可能出现的冲突 或者其他问题,具体如下:上述处理器603,还用于在上述向上述中继设备覆盖下的物联网终端设备发送上述触发条件集之前,接收上述物联网终端设备发送的上述物联网终端设备所支持的配置;In an optional implementation manner, the embodiment of the present invention further provides a conflict that may occur due to unnecessary configuration information being sent, based on the specific implementation of the configuration information delivered by the relay device. Or the other problem is as follows: the processor 603 is further configured to receive the foregoing Internet of Things terminal device sent by the Internet of Things terminal device before sending the trigger condition set to the Internet of Things terminal device covered by the relay device Supported configuration;
依据上述物联网终端设备所支持的配置确定分别与上述第一省电模式和上述第二省电模式对应的配置信息。The configuration information corresponding to the first power saving mode and the second power saving mode, respectively, is determined according to the configuration supported by the foregoing Internet of Things terminal device.
在本实施例中,由终端设备主动上报自己所支持的配置,那么中继设备可以针对终端设备所支持的配置来下发配置信息,从而保证配置信息能够被准确地执行,避免了不必要配置信息被下发导致可能出现的冲突或者其他问题。In this embodiment, the terminal device actively reports the configuration supported by the terminal device, and the relay device can deliver the configuration information for the configuration supported by the terminal device, thereby ensuring that the configuration information can be accurately executed and unnecessary configuration is avoided. Information is sent out to cause possible conflicts or other problems.
在一种可选的实现方式中,本发明实施例还提供了在自动进行省电模式的选择之外,由网络侧对物联网终端设备进行省电模式控制的方案,具体如下:上述处理器603,还用于在上述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给上述物联网终端设备,在上述模式配置指令中携带参数信息;上述参数信息用于使上述物联网终端设备确定上述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。In an optional implementation manner, the embodiment of the present invention further provides a solution for performing power saving mode control on the Internet of Things terminal device by the network side in addition to automatically selecting the power saving mode, as follows: 603. The method further includes: after the Internet of Things terminal device accesses the Internet of Things, forwarding a mode configuration command sent by the access device to the foregoing Internet of Things terminal device, where the mode configuration command carries parameter information; the parameter information is used to enable the foregoing The IoT terminal device determines that the trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
在本实施例中,物联网设备的工作模式可以受到网络侧的控制,例如:在某些应用场景下,物联网设备会为网络侧设备提供必要的数据采集服务,但是网络侧设备现在并不需要这些数据了,这时候如果物联网设备仍然处于较高功耗的工作状态下,将会导致能源的浪费,此时网络侧设备可以下发配置指令使物理网设备进入较为省电的模式,或者指定的省电模式。从而更灵活的实现对省电模式的控制。In this embodiment, the working mode of the IoT device can be controlled by the network side. For example, in some application scenarios, the IoT device provides the necessary data collection service for the network side device, but the network side device is not currently If you need these data, if the IoT device is still in a higher power consumption state, it will lead to waste of energy. At this time, the network side device can send configuration commands to make the physical network device enter a more power-saving mode. Or the specified power saving mode. Thereby more flexible control of the power saving mode.
图7是本发明实施例提供的一种中继设备,该中继设备700可因配置或性能不同而产生比较大的差异,可以包括一个或一个以上中央处理器(central processing units,CPU)722(例如,一个或一个以上处理器)和存储器732,一个或一个以上存储应用程序742或数据744的存储介质730(例如一个或一个以上海量存储设备)。其中,存储器732和存储介质730可以是短暂存储或持久存储。存储在存储介质730的程序可以包括一个或一个以上模块(图示没标出),每个模块可以包括对中继设备中的一系列指令操作。更进一步地,中央处理器722可以设置为与存储介质730通信,在中继设备700上执行存储介质730中的一系列指令操作。FIG. 7 is a relay device according to an embodiment of the present invention. The relay device 700 may generate a large difference due to different configurations or performances, and may include one or more central processing units (CPUs) 722. (eg, one or more processors) and memory 732, one or more storage media 730 that store application 742 or data 744 (eg, one or one storage device in Shanghai). Among them, the memory 732 and the storage medium 730 may be short-term storage or persistent storage. The program stored on storage medium 730 may include one or more modules (not shown), each of which may include a series of instruction operations in the relay device. Still further, central processor 722 can be configured to communicate with storage medium 730, executing a series of instruction operations in storage medium 730 on relay device 700.
中继设备700还可以包括一个或一个以上电源726,一个或一个以上有线或无线网络接口750,一个或一个以上输入输出接口758,和/或,一个或一个以上操作系统741,例如Windows ServerTM,Mac OS XTM,UnixTM,LinuxTM,FreeBSDTM等等。 Relay device 700 may also include one or more power sources 726, one or more wired or wireless network interfaces 750, one or more input and output interfaces 758, and/or one or more operating systems 741, such as Windows ServerTM, Mac OS XTM, UnixTM, LinuxTM, FreeBSDTM and more.
上述实施例中由中继设备所执行的步骤可以基于该图7所示的中继设备结构。 The steps performed by the relay device in the above embodiment may be based on the relay device structure shown in FIG.
值得注意的是,上述中继设备实施例中,所包括的各个单元只是按照功能逻辑进行划分的,但并不局限于上述的划分,只要能够实现相应的功能即可;另外,各功能单元的具体名称也只是为了便于相互区分,并不用于限制本发明的保护范围。It should be noted that, in the foregoing embodiment of the relay device, each unit included is only divided according to functional logic, but is not limited to the foregoing division, as long as the corresponding function can be implemented; The specific names are also for convenience of distinguishing from each other and are not intended to limit the scope of the present invention.
另外,本领域普通技术人员可以理解实现上述各方法实施例中的全部或部分步骤是可以通过程序来指令相关的硬件完成,相应的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。In addition, those skilled in the art can understand that all or part of the steps in implementing the foregoing method embodiments may be performed by a program to instruct related hardware, and the corresponding program may be stored in a computer readable storage medium. The storage medium may be a read only memory, a magnetic disk or an optical disk or the like.
以上仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明实施例揭露的技术范围内,可轻易想到的变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应该以权利要求的保护范围为准。 The above is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the embodiments of the present invention. All should be covered by the scope of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims (10)

  1. 一种批量管理物联网终端设备省电的方法,其特征在于,包括:A method for mass management of an IoT terminal device for power saving, comprising:
    中继设备接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;The relay device receives a trigger condition set set by the user, and includes at least two trigger conditions in the trigger condition set; and receiving, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
    所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;使所述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取所述有效省电模式所对应的配置信息,并依据所述配置信息运行所述物联网终端设备;所述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的配置信息。The relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set; and the IoT terminal device is monitored to be effective. After the parameter corresponding to the triggering condition corresponding to the power saving mode, obtain configuration information corresponding to the effective power saving mode, and run the IoT terminal device according to the configuration information; configuration information corresponding to the effective power saving mode It is configuration information corresponding to the first power saving mode or the second power saving mode.
  2. 根据权利要求1所述方法,其特征在于,所述中继设备接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;包括:The method according to claim 1, wherein the relay device receives a trigger condition set set by a user, and includes at least two trigger conditions in the trigger condition set; and the corresponding trigger condition set corresponding to the receiving user setting Parameters for each trigger condition; including:
    所述中继设备接收用户设定的第一触发条件和第二触发条件,接收所述第一触发条件对应第一参数以及所述第二触发条件对应第二参数;Receiving, by the relay device, a first trigger condition and a second trigger condition set by the user, and receiving the first trigger condition corresponding to the first parameter and the second trigger condition corresponding to the second parameter;
    在所述物联网设备监测到的所述第一参数符合所述第一触发条件的情况下,所述有效省电模式对应的配置信息为所述第一省电模式对应的配置信息;在所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息,或者,在所述第一参数符合所述第一触发条件并且所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息。The configuration information corresponding to the effective power saving mode is the configuration information corresponding to the first power saving mode, where the first parameter that is detected by the IoT device is consistent with the first triggering condition; When the second parameter is consistent with the second trigger condition, the configuration information corresponding to the effective power saving mode is configuration information corresponding to the second power saving mode, or the first parameter meets the first parameter. In a case where the triggering condition is met and the second parameter is in the second triggering condition, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode.
  3. 根据权利要求1所述方法,其特征在于,在所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数之前,所述方法还包括:The method according to claim 1, wherein the triggering condition set is sent by the relay device to the Internet of Things terminal device covered by the relay device, and parameters corresponding to the triggering conditions in the triggering condition set are Previously, the method further includes:
    所述中继设备与所述物联网终端设备建立连接;The relay device establishes a connection with the Internet of Things terminal device;
    所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;包括:And the relay device sends the trigger condition set to the IoT terminal device that is covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set;
    所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,在所述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。The relay device sends the trigger condition set to the IoT terminal device covered by the relay device, and the trigger condition items in the trigger condition set carry parameters corresponding to the trigger conditions.
  4. 根据权利要求3或所述方法,其特征在于,在所述中继设备向所述中继设备覆盖下的物联网终端设备发送所述触发条件集之前,所述方法还包括:The method according to claim 3 or 2, wherein the method further comprises: before the relay device sends the trigger condition set to the IoT terminal device covered by the relay device, the method further comprises:
    接收所述物联网终端设备发送的所述物联网终端设备所支持的配置;Receiving a configuration supported by the Internet of Things terminal device sent by the Internet of Things terminal device;
    依据所述物联网终端设备所支持的配置确定分别与所述第一省电模式和所述第二省电模式对应的配置信息。 Determining configuration information corresponding to the first power saving mode and the second power saving mode, respectively, according to a configuration supported by the Internet of Things terminal device.
  5. 根据权利要求1所述方法,其特征在于,所述方法还包括:The method of claim 1 wherein the method further comprises:
    在所述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给所述物联网终端设备,在所述模式配置指令中携带参数信息;所述参数信息用于使所述物联网终端设备确定所述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。After the IoT terminal device accesses the Internet of Things, forwarding a mode configuration command sent by the access device to the IoT terminal device, where the mode configuration command carries parameter information; the parameter information is used to enable the The IoT terminal device determines that the trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
  6. 一种中继设备,其特征在于,包括:A relay device, comprising:
    接收单元,用于接收用户设定的触发条件集,在所述触发条件集中包含至少两种触发条件;接收用户设定的对应所述触发条件集中各触发条件的参数;a receiving unit, configured to receive a trigger condition set set by the user, and include at least two trigger conditions in the trigger condition set; and receive, by the user, a parameter corresponding to each trigger condition in the trigger condition set;
    发送单元,用于向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数;使所述物联网终端设备在监测到满足有效省电模式对应的触发条件所对应的参数后,获取所述有效省电模式所对应的配置信息,并依据所述配置信息运行所述物联网终端设备;所述有效省电模式对应的配置信息为第一省电模式或者第二省电模式所对应的配置信息。a sending unit, configured to send the trigger condition set to an IoT terminal device covered by the relay device, and a parameter corresponding to each trigger condition in the trigger condition set; and enable the IoT terminal device to meet the effective condition After the parameter corresponding to the triggering condition corresponding to the power saving mode, obtain configuration information corresponding to the effective power saving mode, and run the IoT terminal device according to the configuration information; configuration information corresponding to the effective power saving mode It is configuration information corresponding to the first power saving mode or the second power saving mode.
  7. 根据权利要求6所述中继设备,其特征在于,The relay device according to claim 6, wherein
    所述接收单元,用于接收用户设定的第一触发条件和第二触发条件,接收所述第一触发条件对应第一参数以及所述第二触发条件对应第二参数;The receiving unit is configured to receive a first trigger condition and a second trigger condition set by the user, and receive the first trigger condition corresponding to the first parameter and the second trigger condition corresponding to the second parameter;
    在所述物联网设备监测到的所述第一参数符合所述第一触发条件的情况下,所述有效省电模式对应的配置信息为所述第一省电模式对应的配置信息;在所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息,或者,在所述第一参数符合所述第一触发条件并且所述第二参数符合所述第二触发条件的情况下,所述有效省电模式对应的配置信息为所述第二省电模式对应的配置信息。The configuration information corresponding to the effective power saving mode is the configuration information corresponding to the first power saving mode, where the first parameter that is detected by the IoT device is consistent with the first triggering condition; When the second parameter is consistent with the second trigger condition, the configuration information corresponding to the effective power saving mode is configuration information corresponding to the second power saving mode, or the first parameter meets the first parameter. In a case where the triggering condition is met and the second parameter is in the second triggering condition, the configuration information corresponding to the effective power saving mode is the configuration information corresponding to the second power saving mode.
  8. 根据权利要求6所述中继设备,其特征在于,所述中继设备还包括:The relay device according to claim 6, wherein the relay device further comprises:
    连接建立单元,用于在所述向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,以及对应所述触发条件集中各触发条件的参数之前,与所述物联网终端设备建立连接;a connection establishing unit, configured to send the trigger condition set to the IoT terminal device covered by the relay device, and the parameter corresponding to each trigger condition in the trigger condition set, and the Internet of Things terminal device establish connection;
    所述发送单元,用于向所述中继设备覆盖下的物联网终端设备发送所述触发条件集,在所述触发条件集中的各项触发条件项中携带与各触发条件对应的参数。The sending unit is configured to send the trigger condition set to the IoT terminal device covered by the relay device, and carry the parameter corresponding to each trigger condition in each trigger condition item in the trigger condition set.
  9. 根据权利要求8或所述中继设备,其特征在于,所述中继设备还包括:The relay device according to claim 8 or 2, wherein the relay device further comprises:
    通信单元,用于在所述向所述中继设备覆盖下的物联网终端设备发送所述触发条件集之前,接收所述物联网终端设备发送的所述物联网终端设备所支持的配置;a communication unit, configured to receive a configuration supported by the Internet of Things terminal device sent by the Internet of Things terminal device, before sending the trigger condition set to the IoT terminal device covered by the relay device;
    信息确定单元,用于依据所述物联网终端设备所支持的配置确定分别与所述第一省电模式和所述第二省电模式对应的配置信息。 The information determining unit is configured to determine configuration information corresponding to the first power saving mode and the second power saving mode, respectively, according to a configuration supported by the Internet of Things terminal device.
  10. 根据权利要求6所述中继设备,其特征在于,The relay device according to claim 6, wherein
    所述发送单元,还用于在所述物联网终端设备接入物联网后,转发接入设备发送的模式配置指令给所述物联网终端设备,在所述模式配置指令中携带参数信息;所述参数信息用于使所述物联网终端设备确定所述模式配置指令所携带的参数信息所符合的触发条件为有效省电模式所对应的触发条件。 The sending unit is further configured to: after the Internet of Things terminal device accesses the Internet of Things, forward a mode configuration command sent by the access device to the IoT terminal device, where the mode configuration command carries parameter information; The parameter information is used to enable the IoT terminal device to determine that the trigger condition that the parameter information carried by the mode configuration command meets is a trigger condition corresponding to the effective power saving mode.
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