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WO2018028130A1 - 安防监控系统及安防监控方法 - Google Patents

安防监控系统及安防监控方法 Download PDF

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Publication number
WO2018028130A1
WO2018028130A1 PCT/CN2016/113449 CN2016113449W WO2018028130A1 WO 2018028130 A1 WO2018028130 A1 WO 2018028130A1 CN 2016113449 W CN2016113449 W CN 2016113449W WO 2018028130 A1 WO2018028130 A1 WO 2018028130A1
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WIPO (PCT)
Prior art keywords
module
security monitoring
server
data information
video data
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Ceased
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PCT/CN2016/113449
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English (en)
French (fr)
Inventor
吴世杰
钟永建
黄海健
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SHENZHEN AONI ELECTRONIC CO Ltd
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SHENZHEN AONI ELECTRONIC CO Ltd
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Publication of WO2018028130A1 publication Critical patent/WO2018028130A1/zh
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
    • G05B19/0428Safety, monitoring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/24Pc safety
    • G05B2219/24024Safety, surveillance

Definitions

  • the invention relates to the technical field of security, in particular to a security monitoring system and a security monitoring method.
  • the security monitoring device when the security monitoring device is in a non-working state, the security monitoring device is in a dormant state.
  • the sleep state When an external wake-up request is received, the sleep state is switched to the awake state, thereby achieving the purpose of reducing the power consumption of the security monitoring device.
  • the security monitoring device when the security monitoring device is in the dormant state, if the communication connection between the security monitoring device and the remote device is unstable, the security monitoring device cannot immediately receive the request command sent by the remote device, so that the remote device cannot be processed immediately. Request.
  • the present invention provides a security monitoring system, which includes:
  • a mobile terminal for generating a wakeup and acquisition request.
  • a server that is in communication with the mobile terminal.
  • a gateway device that is in communication with the server.
  • the security monitoring device includes a low power working module and a normal working module, and the low power working module is in communication connection with the gateway device.
  • the low-power working module receives the wake-up and acquisition request forwarded by the server and the gateway device
  • the normal working module is started, the normal working module communicates with the server, acquires audio and video data information, and transmits the audio and video data information to the mobile terminal via the server. .
  • the gateway device comprises a first Bluetooth module and a first WIFI module electrically connected to the first Bluetooth module, the first Bluetooth module is in communication connection with the low power consumption working module, and the first WIFI module is in communication connection with the server.
  • the low power consumption working module comprises a secondary power supply circuit, a second bluetooth module and an MCU electrically connected to the second bluetooth module.
  • the secondary power circuit is used to supply power to the second Bluetooth module and the MCU, and the second Bluetooth The module is in communication with the first Bluetooth module.
  • the normal working module comprises a main power circuit, a DSP, a camera device and a second WIFI module.
  • the main power circuit is used for supplying power to the DSP, the camera device and the second WIFI module, and the DSP is electrically connected to the camera device and the second WIFI module respectively.
  • the MCU turns on the main power circuit, the main power circuit supplies power to the DSP, the camera device and the second WIFI module, the second WIFI module communicates with the server, the camera device acquires audio and video data information, and the DSP slave camera device The audio and video data information is obtained and transmitted to the mobile terminal via the second WIFI module and the server.
  • the present invention also provides a security monitoring method, which is applied to a security monitoring system, which comprises a mobile terminal, a server, a gateway device and a security monitoring device which are sequentially connected in communication, and the security monitoring device includes low power consumption.
  • a security monitoring system which comprises a mobile terminal, a server, a gateway device and a security monitoring device which are sequentially connected in communication, and the security monitoring device includes low power consumption.
  • the security monitoring method includes the following steps:
  • the low-power working module is operated, and the security monitoring device is in a sleep state.
  • the mobile terminal generates a wake-up and acquisition request, and the wake-up and acquisition request is transmitted to the low-power working module via the server and the gateway device.
  • the low-power working module When the low-power working module receives the wake-up and acquisition request, it runs the normal working module, the normal working module communicates with the server, and the security monitoring device changes from the sleep state to the awake state.
  • the normal working module acquires audio and video data information, and the audio and video data information is transmitted to the mobile terminal via the server.
  • the gateway device comprises a first WIFI module and a first Bluetooth module electrically connected thereto, and the first WIFI module is in communication connection with the server.
  • the low power working module includes a secondary power circuit, a second Bluetooth module, and an MCU.
  • the steps of running the low-power working module and the security monitoring device is in a sleep state include:
  • the auxiliary power supply circuit supplies power to the second Bluetooth module and the MCU, the MCU is electrically connected to the second Bluetooth module, the second Bluetooth module is in communication with the first Bluetooth module, and the security monitoring device is in a sleep state.
  • the mobile terminal generates a wake-up and acquisition request
  • the steps of the wake-up and acquisition request transmitted to the low-power working module by the server and the gateway device include:
  • the mobile terminal generates a wake-up and acquisition request, and the wake-up and acquisition request is transmitted to the MCU via the server, the first WIFI module, the first Bluetooth module, and the second Bluetooth module.
  • the normal working module comprises a main power circuit, a DSP, a camera device and a second WIFI module.
  • the low-power working module runs a normal working module, and the normal working module communicates with the server, and the steps of the security monitoring device transitioning from the sleep state to the awake state include:
  • the MCU When the MCU receives the wakeup and acquisition request, it turns on the main power circuit.
  • the main power circuit supplies power to the DSP, the camera device and the second WIFI module, and the second WIFI module communicates with the server, and the security monitoring device changes from the sleep state to the awake state.
  • the normal working module acquires audio and video data information
  • the step of transmitting the audio and video data information to the mobile terminal via the server includes:
  • the camera device acquires audio and video data information.
  • the DSP acquires audio and video data information from the camera device, and the audio and video data information is transmitted to the mobile terminal via the second WIFI module and the server.
  • the normal working module acquires audio and video data information, and after the step of transmitting the audio and video data information to the mobile terminal via the server, the method includes:
  • the MCU turns off the main power circuit, and the security monitoring device switches from the awake state to the sleep state.
  • the gateway device of the present invention serves as a communication bridge between the security monitoring device and the server.
  • the gateway device and the security monitoring device are always in a communication connection state; on the other hand, the gateway device and the server are always in a communication connection state. Therefore, when the security monitoring device is in a dormant state, the security monitoring device and the server do not appear. The disconnection of the communication connection, thus improving the stability of the communication connection between the security monitoring device and the server.
  • FIG. 1 is a schematic structural diagram of a frame of an embodiment of a security monitoring system according to the present invention.
  • FIG. 2 is a schematic flow chart of an embodiment of a security monitoring method according to the present invention.
  • FIG. 1 illustrates an embodiment of the security monitoring system of the present invention.
  • the security monitoring system includes a mobile terminal 1, a server 2, a gateway device 3, and a security monitoring device 4.
  • the security monitoring device 4 includes a low power working module 41 and a normal working module 42.
  • the gateway device 3 is communicatively coupled to the server 2 and the gateway device 3 is communicatively coupled to the low power consumption module 41.
  • the mobile terminal 1 is used to generate a wakeup and acquisition request.
  • the normal working module 42 is started, and the normal working module 42 is communicably connected with the server 2.
  • the normal working module 42 acquires audio and video data information and transmits the audio and video data information to the mobile terminal 1 via the server 2.
  • the gateway device 3 of this embodiment serves as a communication bridge between the security monitoring device 4 and the server 2.
  • the gateway device 3 and the security monitoring device 4 maintain the communication connection state all the time.
  • the gateway device 3 and the server 2 maintain the communication connection state at all times. Therefore, when the security monitoring device 4 is in the sleep state, the security monitoring device 4 and the server There is also no disconnection of the communication connection between the two, and therefore, the stability of the communication connection between the security monitoring device 4 and the server 2 is improved.
  • the gateway device 3 includes a first Bluetooth module 31 and a first WIFI module 32 electrically connected to the first Bluetooth module 31.
  • the low power operation module 41 includes a sub power supply circuit 411, a second Bluetooth module 412, and an MCU 413 electrically connected to the second Bluetooth module 412.
  • the normal working module 42 includes a main power circuit 421, a DSP 423, an imaging device 422, and a second WIFI module 424.
  • the DSP 423 is electrically connected to the camera 422 and the second WIFI module 424, respectively.
  • the secondary power supply circuit 411 is configured to supply power to the second Bluetooth module 412 and the MCU 413.
  • the second Bluetooth module 412 is in communication with the first Bluetooth module 31, and the security monitoring device 4 is in a sleep state.
  • the first Bluetooth module 31 is in communication with the second Bluetooth module 412 and the first WIFI module 32 is in communication with the server 2. Therefore, when the security monitoring device 4 is in the sleep state, the security monitoring device 4 still maintains a stable communication connection with the server 2.
  • the MCU 413 When receiving the wake-up and acquisition request transmitted by the server 2, the first WIFI module 32, the first Bluetooth module 31, and the second Bluetooth module 412, the MCU 413 turns on the main power circuit 421, and the main power circuit 421 supplies power to the DSP 423 and the camera. 422 and the second WIFI module 424, the second WIFI module 424 is in communication with the server 2, and the security monitoring device 4 transitions from the sleep state to the awake state.
  • the camera 422 acquires audio and video data information
  • the DSP 423 acquires audio and video data information from the camera 422 and transmits it to the mobile terminal 1 via the second WIFI module 424 and the server 2.
  • the first Bluetooth module 31 and the second Bluetooth module 412 maintain the communication connection between the security monitoring device 4 and the gateway device 3, and the power consumption is low because the Bluetooth module is used for communication connection. The power consumption of the security monitoring device 4 is further reduced.
  • the security monitoring device 4 further includes a battery, and the battery is electrically connected to the auxiliary power circuit 411 and the main power circuit 421, respectively.
  • the security monitoring device 4 of the embodiment is powered by a battery and communicates by using a wireless network. Therefore, power wiring and network wiring are not required, and therefore, the technical effects of more convenient installation and more convenient use are provided.
  • FIG. 2 illustrates an embodiment of the security monitoring method of the present invention.
  • the security monitoring method is applied to the security monitoring system described in the above embodiment.
  • the security monitoring system includes a mobile terminal, a server, a gateway device, and a security monitoring device.
  • the gateway device includes a first Bluetooth module and a first WIFI module electrically connected to the first Bluetooth module.
  • the security monitoring device includes a low power working module and a normal working module.
  • the low power working module includes a secondary power circuit, a second Bluetooth module, and an MCU electrically connected to the second Bluetooth module.
  • the normal working module includes a main power circuit, a DSP, a camera device, and a second WIFI module, and the DSP is electrically connected to the camera device and the second WIFI module, respectively.
  • the security monitoring method includes the following steps:
  • step S1 the low power consumption working module is operated, and the security monitoring device is in a sleep state.
  • the step S1 specifically includes: the secondary power supply circuit supplies power to the second bluetooth module and the MCU, the MCU and the second bluetooth module are electrically connected, the second bluetooth module is in communication with the first bluetooth module, and the security monitoring device is in a dormant state.
  • step S2 the mobile terminal generates a wake-up and acquisition request, and the wake-up and acquisition request is transmitted to the low-power working module via the server and the gateway device.
  • Step S2 specifically includes: the mobile terminal generates a wake-up and acquisition request, and the wake-up and acquisition request is transmitted to the MCU through the server, the first WIFI module, the first Bluetooth module, and the second Bluetooth module.
  • step S3 when the low-power working module receives the wake-up and acquisition request, the normal working module is operated, the normal working module is connected with the server, and the security monitoring device is switched from the sleep state to the awake state.
  • Step S3 specifically includes: when the MCU receives the wake-up and acquisition request, the main power circuit is turned on. The main power circuit supplies power to the DSP, the camera device and the second WIFI module, and the second WIFI module communicates with the server, and the security monitoring device changes from the sleep state to the awake state.
  • step S4 the normal working module acquires audio and video data information, and the audio and video data information is transmitted to the mobile terminal via the server.
  • Step S4 specifically includes: the camera device acquires audio and video data information. DSP from the camera The image device acquires audio and video data information, and the audio and video data information is transmitted to the mobile terminal via the second WIFI module and the server.
  • step S5 after the audio and video data information is transmitted, the MCU turns off the main power circuit, and the security monitoring device changes from the awake state to the sleep state.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Alarm Systems (AREA)

Abstract

一种安防监控系统及安防监控方法。其中,该安防监控系统包括:移动终端(1),用于生成唤醒及获取请求;服务器(2),其与移动终端(1)通信连接;网关设备(3),其与服务器(2)通信连接;安防监控设备(4),其包括低功耗工作模块(41)和正常工作模块(42),低功耗工作模块(41)与网关设备(3)通信连接;低功耗工作模块(41)接收到经服务器(2)、网关设备(3)转发的唤醒及获取请求时,启动正常工作模块(42),正常工作模块(42)与服务器(2)通信连接、获取音视频数据信息并经服务器(2)将音视频数据信息传输至移动终端(1)。网关设备(3)作为安防监控设备(4)与服务器(2)的通信桥梁,提升了安防监控设备(4)与服务器(2)之间的通信连接的稳定性。

Description

安防监控系统及安防监控方法 技术领域
本发明涉及安防技术领域,尤其涉及一种安防监控系统及安防监控方法。
背景技术
为了降低现有的安防监控设备的耗电量,因此,当安防监控设备处于非工作状态时,致使该安防监控设备处于休眠状态。当接收到外部的唤醒请求时,从休眠状态转换为唤醒状态,从而达到降低安防监控设备耗电量的目的。
但是,当安防监控设备处于休眠状态时,若安防监控设备与远端设备的通信连接不稳定,则导致安防监控设备不能即时接收到远端设备发送的请求指令,从而不能即时处理远端设备发送的请求。
有鉴于此,实有必要提供一种安防监控设备处于休眠状态时,安防监控设备与远端设备的通信连接稳定的安防监控系统以解决现有技术的缺陷。
发明内容
本发明的目的在于提供一种安防监控系统,以解决现有的安防监控设备处于休眠状态时,安防监控设备与远端设备的通信连接不稳定的技术问题。
为了解决上述问题,本发明提供了一种安防监控系统,其包括:
移动终端,用于生成唤醒及获取请求。
服务器,其与移动终端通信连接。
网关设备,其与服务器通信连接。
安防监控设备,其包括低功耗工作模块和正常工作模块,低功耗工作模块与网关设备通信连接。低功耗工作模块接收到经服务器、网关设备转发的唤醒及获取请求时,启动正常工作模块,正常工作模块与服务器通信连接、获取音视频数据信息并经服务器将音视频数据信息传输至移动终端。
优选地,网关设备包括第一蓝牙模块和与第一蓝牙模块电性连接的第一WIFI模块,第一蓝牙模块与低功耗工作模块通信连接,第一WIFI模块与服务器通信连接。
优选地,低功耗工作模块包括副电源电路、第二蓝牙模块和与第二蓝牙模块电性连接的MCU。副电源电路用于供电给第二蓝牙模块和MCU,第二蓝牙 模块与第一蓝牙模块通信连接。MCU接收到经服务器、第一WIFI模块、第一蓝牙模块、第二蓝牙模块传输的唤醒及获取请求时,启动正常工作模块。
优选地,正常工作模块包括主电源电路、DSP、摄像装置和第二WIFI模块。主电源电路用于供电给DSP、摄像装置和第二WIFI模块,DSP分别与摄像装置、第二WIFI模块电性连接。MCU接收到唤醒及获取请求时,开启主电源电路,主电源电路供电给DSP、摄像装置和第二WIFI模块,第二WIFI模块与服务器通信连接,摄像装置获取音视频数据信息,DSP从摄像装置获取音视频数据信息并经第二WIFI模块、服务器将其传输至移动终端。
为了解决上述问题,本发明还提供了一种安防监控方法,其应用于安防监控系统,安防监控系统包括依次通信连接的移动终端、服务器、网关设备和安防监控设备,安防监控设备包括低功耗工作模块和正常工作模块。该安防监控方法包括如下步骤:
运行低功耗工作模块,安防监控设备处于休眠状态。
移动终端生成唤醒及获取请求,唤醒及获取请求经服务器、网关设备传输至低功耗工作模块。
低功耗工作模块接收到唤醒及获取请求时,运行正常工作模块,正常工作模块与服务器通信连接,安防监控设备从休眠状态转换为唤醒状态。
正常工作模块获取音视频数据信息,音视频数据信息经服务器传输至移动终端。
优选地,网关设备包括第一WIFI模块和与之电性连接的第一蓝牙模块,第一WIFI模块与服务器通信连接。低功耗工作模块包括副电源电路、第二蓝牙模块和MCU。运行低功耗工作模块,安防监控设备处于休眠状态的步骤包括:
副电源电路供电给第二蓝牙模块和MCU,MCU与第二蓝牙模块电性连接,第二蓝牙模块与第一蓝牙模块通信连接,安防监控设备处于休眠状态。
优选地,移动终端生成唤醒及获取请求,唤醒及获取请求经服务器、网关设备传输至低功耗工作模块的步骤包括:
移动终端生成唤醒及获取请求,唤醒及获取请求经服务器、第一WIFI模块、第一蓝牙模块、第二蓝牙模块传输至MCU。
优选地,正常工作模块包括主电源电路、DSP、摄像装置和第二WIFI模块。 低功耗工作模块接收到唤醒及获取请求时,运行正常工作模块,正常工作模块与服务器通信连接,安防监控设备从休眠状态转换为唤醒状态的步骤包括:
MCU接收到唤醒及获取请求时,开启主电源电路。
主电源电路供电给DSP、摄像装置和第二WIFI模块,第二WIFI模块与服务器通信连接,安防监控设备从休眠状态转换为唤醒状态。
优选地,正常工作模块获取音视频数据信息,音视频数据信息经服务器传输至移动终端的步骤包括:
摄像装置获取音视频数据信息。
DSP从摄像装置获取音视频数据信息,音视频数据信息经第二WIFI模块、服务器传输至移动终端。
优选地,正常工作模块获取音视频数据信息,音视频数据信息经服务器传输至移动终端的步骤之后,包括:
音视频数据信息传输完成后,MCU关闭主电源电路,安防监控设备从唤醒状态转换为休眠状态。
与现有技术相比,本发明的网关设备作为安防监控设备与服务器的通信桥梁。一方面,网关设备与安防监控设备一直处于通信连接状态,另一方面,网关设备与服务器一直保持通信连接状态,因此,安防监控设备处于休眠状态时,安防监控设备与服务器之间也不会出现通信连接断开的状况,因此,提升了安防监控设备与服务器之间的通信连接的稳定性。
附图说明
图1为本发明安防监控系统一种实施例的框架结构示意图。
图2为本发明安防监控方法一种实施例的流程示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用来限定本发明。
图1展示了本发明安防监控系统的一种实施例。在本实施例中,该安防监控系统包括移动终端1、服务器2、网关设备3和安防监控设备4。其中,该安防监控设备4包括低功耗工作模块41和正常工作模块42。
网关设备3与服务器2通信连接且网关设备3与低功耗工作模块41通信连接。移动终端1用于生成唤醒及获取请求。低功耗工作模块41接收到经服务器2、网关设备3转发的唤醒及获取请求时,启动正常工作模块42,正常工作模块42与服务器2通信连接。正常工作模块42获取音视频数据信息并经服务器2将音视频数据信息传输至移动终端1。
本实施例的网关设备3作为安防监控设备4与服务器2的通信桥梁。一方面,网关设备3与安防监控设备4一直保持通信连接状态,另一方面,网关设备3与服务器2一直保持通信连接状态,因此,安防监控设备4处于休眠状态时,安防监控设备4与服务器2之间也不会出现通信连接断开的状况,因此,提升了安防监控设备4与服务器2之间的通信连接的稳定性。
为了进一步的降低安防监控设备4的耗电量。在上述实施例的基础上,其他实施例中,网关设备3包括第一蓝牙模块31和与第一蓝牙模块31电性连接的第一WIFI模块32。低功耗工作模块41包括副电源电路411、第二蓝牙模块412和与第二蓝牙模块412电性连接的MCU 413。正常工作模块42包括主电源电路421、DSP 423、摄像装置422和第二WIFI模块424,DSP 423分别与摄像装置422、第二WIFI模块424电性连接。
副电源电路411用于供电给第二蓝牙模块412和MCU 413,第二蓝牙模块412与第一蓝牙模块31通信连接,安防监控设备4处于休眠状态。第一蓝牙模块31与第二蓝牙模块412通信连接且第一WIFI模块32与服务器2通信连接,因此,安防监控设备4处于休眠状态时,安防监控设备4仍与服务器2保持稳定的通信连接。
MCU 413接收到经服务器2、第一WIFI模块32、第一蓝牙模块31、第二蓝牙模块412传输的唤醒及获取请求时,开启主电源电路421,主电源电路421供电给DSP 423、摄像装置422和第二WIFI模块424,第二WIFI模块424与服务器2通信连接,安防监控设备4从休眠状态转换为唤醒状态。
摄像装置422获取音视频数据信息,DSP 423从摄像装置422获取音视频数据信息并经第二WIFI模块424、服务器2将其传输至移动终端1。
本实施例通过第一蓝牙模块31和第二蓝牙模块412保持安防监控设备4与网关设备3的通信连接,由于采用蓝牙模块进行通信连接时耗电量低,因此, 进一步地降低了安防监控设备4的耗电量。
为了安防监控设备4的安装以及使用更加便捷。在上述实施例的基础上,其他实施例中,安防监控设备4还包括电池,该电池分别与副电源电路411、主电源电路421电性连接。
本实施例的安防监控设备4采用电池供电且采用无线网络进行通信,因此,不需要电源布线以及网络布线,因此,具有安装更加便捷、使用更加便捷等技术效果。
图2展示了本发明安防监控方法的一种实施例。在本实施例中,该安防监控方法应用于上述实施例描述的安防监控系统。该安防监控系统包括移动终端、服务器、网关设备和安防监控设备。其中,网关设备包括第一蓝牙模块和与第一蓝牙模块电性连接的第一WIFI模块。该安防监控设备包括低功耗工作模块和正常工作模块。低功耗工作模块包括副电源电路、第二蓝牙模块和与第二蓝牙模块电性连接的MCU。正常工作模块包括主电源电路、DSP、摄像装置和第二WIFI模块,DSP分别与摄像装置、第二WIFI模块电性连接。该安防监控方法包括如下步骤:
步骤S1,运行低功耗工作模块,安防监控设备处于休眠状态。步骤S1具体包括:副电源电路供电给第二蓝牙模块和MCU,MCU与第二蓝牙模块电性连接,第二蓝牙模块与第一蓝牙模块通信连接,安防监控设备处于休眠状态。
步骤S2,移动终端生成唤醒及获取请求,唤醒及获取请求经服务器、网关设备传输至低功耗工作模块。步骤S2具体包括:移动终端生成唤醒及获取请求,唤醒及获取请求经服务器、第一WIFI模块、第一蓝牙模块、第二蓝牙模块传输至MCU。
步骤S3,低功耗工作模块接收到唤醒及获取请求时,运行正常工作模块,正常工作模块与服务器通信连接,安防监控设备从休眠状态转换为唤醒状态。步骤S3具体包括:MCU接收到唤醒及获取请求时,开启主电源电路。主电源电路供电给DSP、摄像装置和第二WIFI模块,第二WIFI模块与服务器通信连接,安防监控设备从休眠状态转换为唤醒状态。
步骤S4,正常工作模块获取音视频数据信息,音视频数据信息经服务器传输至移动终端。步骤S4具体包括:摄像装置获取音视频数据信息。DSP从摄 像装置获取音视频数据信息,音视频数据信息经第二WIFI模块、服务器传输至移动终端。
步骤S5,音视频数据信息传输完成后,MCU关闭主电源电路,安防监控设备从唤醒状态转换为休眠状态。
以上对发明的具体实施方式进行了详细说明,但其只作为范例,本发明并不限制与以上描述的具体实施方式。对于本领域的技术人员而言,任何对该发明进行的等同修改或替代也都在本发明的范畴之中,因此,在不脱离本发明的精神和原则范围下所作的均等变换和修改、改进等,都应涵盖在本发明的范围内。

Claims (10)

  1. 一种安防监控系统,其特征在于,其包括:
    移动终端,用于生成唤醒及获取请求;
    服务器,其与所述移动终端通信连接;
    网关设备,其与所述服务器通信连接;
    安防监控设备,其包括低功耗工作模块和正常工作模块,所述低功耗工作模块与所述网关设备通信连接;所述低功耗工作模块接收到经所述服务器、所述网关设备转发的所述唤醒及获取请求时,启动所述正常工作模块,所述正常工作模块与所述服务器通信连接、获取音视频数据信息并经所述服务器将所述音视频数据信息传输至所述移动终端。
  2. 根据权利要求1所述的安防监控系统,其特征在于,所述网关设备包括第一蓝牙模块和与所述第一蓝牙模块电性连接的第一WIFI模块,所述第一蓝牙模块与所述低功耗工作模块通信连接,所述第一WIFI模块与所述服务器通信连接。
  3. 根据权利要求2所述的安防监控系统,其特征在于,所述低功耗工作模块包括副电源电路、第二蓝牙模块和与所述第二蓝牙模块电性连接的MCU;所述副电源电路用于供电给所述第二蓝牙模块和所述MCU,所述第二蓝牙模块与所述第一蓝牙模块通信连接;所述MCU接收到经所述服务器、所述第一WIFI模块、所述第一蓝牙模块、所述第二蓝牙模块传输的所述唤醒及获取请求时,启动所述正常工作模块。
  4. 根据权利要求3所述的安防监控系统,其特征在于,所述正常工作模块包括主电源电路、DSP、摄像装置和第二WIFI模块;所述主电源电路用于供电给所述DSP、所述摄像装置和第二WIFI模块,所述DSP分别与所述摄像装置、所述第二WIFI模块电性连接;所述MCU接收到所述唤醒及获取请求时,开启所述主电源电路,所述主电源电路供电给所述DSP、所述摄像装置和所述第二WIFI模块,所述第二WIFI模块与所述服务器通信连接,所述摄像装置获取所述音视频数据信息,所述DSP从所述摄像装置获取所述音视频数据信息并经所述第二WIFI模块、所述服务器将其传输至所述移动终端。
  5. 一种安防监控方法,其应用于所述安防监控系统,所述安防监控系统包 括依次通信连接的移动终端、服务器、网关设备和安防监控设备,所述安防监控设备包括低功耗工作模块和正常工作模块,其特征在于,包括如下步骤:
    所述低功耗工作模块开启工作,所述安防监控设备处于休眠状态;
    所述移动终端生成唤醒及获取请求,所述唤醒及获取请求经所述服务器、所述网关设备传输至所述低功耗工作模块;
    所述低功耗工作模块接收到所述唤醒及获取请求时,运行所述正常工作模块,所述正常工作模块与所述服务器通信连接,所述安防监控设备从休眠状态转换为唤醒状态;
    所述正常工作模块获取音视频数据信息,所述音视频数据信息经所述服务器传输至所述移动终端。
  6. 根据权利要求5所述的安防监控方法,其特征在于,所述网关设备包括第一WIFI模块和与之电性连接的第一蓝牙模块,所述第一WIFI模块与所述服务器通信连接;所述低功耗工作模块包括副电源电路、第二蓝牙模块和MCU;运行所述低功耗工作模块,所述安防监控设备处于休眠状态的步骤包括:
    所述副电源电路供电给所述第二蓝牙模块和所述MCU,所述MCU与所述第二蓝牙模块电性连接,所述第二蓝牙模块与所述第一蓝牙模块通信连接,所述安防监控设备处于休眠状态。
  7. 根据权利要求6所述的安防监控方法,其特征在于,所述移动终端生成唤醒及获取请求,所述唤醒及获取请求经所述服务器、所述网关设备传输至所述低功耗工作模块的步骤包括:
    所述移动终端生成唤醒及获取请求,所述唤醒及获取请求经所述服务器、所述第一WIFI模块、所述第一蓝牙模块、所述第二蓝牙模块传输至所述MCU。
  8. 根据权利要求7所述的安防监控方法,其特征在于,所述正常工作模块包括主电源电路、DSP、摄像装置和第二WIFI模块;所述低功耗工作模块接收到所述唤醒及获取请求时,运行所述正常工作模块,所述正常工作模块与所述服务器通信连接,所述安防监控设备从休眠状态转换为唤醒状态的步骤包括:
    所述MCU接收到所述唤醒及获取请求时,开启所述主电源电路;
    所述主电源电路供电给所述DSP、所述摄像装置和所述第二WIFI模块,所述第二WIFI模块与所述服务器通信连接,所述安防监控设备从休眠状态转 换为唤醒状态。
  9. 根据权利要求8所述的安防监控方法,其特征在于,所述正常工作模块获取音视频数据信息,所述音视频数据信息经所述服务器传输至所述移动终端的步骤包括:
    所述摄像装置获取所述音视频数据信息;
    所述DSP从所述摄像装置获取所述音视频数据信息,所述音视频数据信息经所述第二WIFI模块、所述服务器传输至所述移动终端。
  10. 根据权利要求8所述的安防监控方法,其特征在于,所述正常工作模块获取音视频数据信息,所述音视频数据信息经所述服务器传输至所述移动终端的步骤之后,包括:
    所述音视频数据信息传输完成后,所述MCU关闭所述主电源电路,所述安防监控设备从所述唤醒状态转换为休眠状态。
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