WO2018028129A1 - 安防监控设备、安防监控系统及安防监控方法 - Google Patents

安防监控设备、安防监控系统及安防监控方法 Download PDF

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Publication number
WO2018028129A1
WO2018028129A1 PCT/CN2016/113448 CN2016113448W WO2018028129A1 WO 2018028129 A1 WO2018028129 A1 WO 2018028129A1 CN 2016113448 W CN2016113448 W CN 2016113448W WO 2018028129 A1 WO2018028129 A1 WO 2018028129A1
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security monitoring
video data
data information
power circuit
human body
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PCT/CN2016/113448
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English (en)
French (fr)
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吴世杰
张静
黄海健
吴文健
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深圳奥尼电子股份有限公司
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Publication of WO2018028129A1 publication Critical patent/WO2018028129A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • H04N7/181Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a plurality of remote sources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast

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  • the invention relates to the technical field of security, in particular to a security monitoring device, a security monitoring system and a security monitoring method.
  • Wired security monitoring equipment needs to be connected to the display terminal by wire and connected to the power supply terminal by wire. Therefore, network wiring and power wiring are required when installing the wired security monitoring device. Therefore, the installation of the wired security monitoring device is inconvenient and the installation efficiency is low.
  • the wireless security monitoring device needs to capture the video data information of the monitoring range and transmit the video data information to the outside through the wireless network, so that the wireless network camera consumes a large amount of power. Therefore, most wireless security monitoring devices are powered by the power adapter. Therefore, the installation of the wireless security monitoring device still requires power wiring, so that the installation of the wireless security monitoring device still has problems such as inconvenient installation and low installation efficiency.
  • the technical problem to be solved by the present invention is to provide a security monitoring device, which is powered by a secondary power supply circuit in a sleep state, a power supply of a main power supply circuit in an awake state, and a sleep state and an awake state when a PIR human body infrared sensor detects a person. Conversion achieves the goal of reducing power consumption and increasing standby time.
  • the battery provides an electrical signal to the main power circuit and the sub-power circuit for supplying power to the main power circuit and the sub-power circuit. Therefore, the security monitoring device of the present invention does not require power wiring, and the installation is convenient and the installation efficiency is achieved. High purpose.
  • the present invention provides a security monitoring device, which includes: a secondary power supply circuit, an MCU, a WIFI module, a PIR human body infrared sensor, a main power supply circuit, and a video information acquisition module.
  • the MCU is respectively connected with the auxiliary power circuit, the PIR human body infrared sensor, the WIFI module, the main power supply circuit, and the video information acquisition module, and the auxiliary power supply circuit is respectively connected with the WIFI module and the PIR human body infrared sensor.
  • the main power circuit is connected to the video information acquisition module, and the video information acquisition module is connected to the WIFI module.
  • the auxiliary power circuit is used to supply power to the MCU, WIFI module and PIR human body infrared sensor.
  • the MCU is used to turn off the main power circuit, and the security monitoring device is in a sleep state.
  • the PIR human body infrared sensor is used to notify the MCU to turn on the main power supply circuit when the human body is detected in the warning area, and the main power supply circuit supplies power to the video information acquisition module, and the security monitoring device changes from the sleep state to the awake state.
  • the video information acquiring module is configured to acquire video data information and send the video data information to the outside via the WIFI module.
  • the MCU is also used to turn off the main power circuit after the video data information is sent, and the security monitoring device switches from the awake state to the sleep state.
  • the video information obtaining module comprises:
  • the camera device is configured to capture video data information when in the awake state.
  • the DSP is configured to acquire video data information from the camera device and buffer the video data information.
  • the camera device employs a real time operating system.
  • it further comprises:
  • a battery for supplying electrical signals to the main power circuit and the sub power circuit.
  • the present invention also provides a security monitoring system, which includes:
  • the security monitoring device described above is configured to convert from a sleep state to an awake state, acquire video data information, and transmit video data information to a server when the human body is detected in the alert zone.
  • the server is configured to receive video data information sent by the security monitoring device and store the video data information.
  • the present invention also provides a security monitoring method, which includes the following steps:
  • the secondary power circuit supplies power to the MCU, WIFI module, and PIR human body infrared sensor.
  • the MCU turns off the main power circuit, and the security monitoring device is in a sleep state.
  • the PIR human body infrared sensor determines whether the human body is detected in the warning zone. If the human body is detected, the wake-up operation is performed, and if the human body is not detected, the sleep state is continued.
  • Wake-up operations include:
  • the PIR human body infrared sensor notifies the MCU to turn on the main power supply circuit, and the main power supply circuit supplies power to the video information acquisition module, and the security monitoring device changes from the sleep state to the awake state.
  • the video information acquisition module acquires video data information and sends the video data information to the outside via the WIFI module.
  • the MCU After the video data information is sent, the MCU turns off the main power circuit, and the security monitoring device wakes up. The state transitions to a sleep state.
  • the step of acquiring the video data information by the video information acquiring module and transmitting the video data information to the outside via the WIFI module comprises:
  • the camera device captures video data information.
  • the DSP acquires video data information from the camera device, buffers the video data information, and outputs the buffered video data information to the outside through the WIFI module.
  • the camera device employs a real time operating system.
  • the battery provides an electrical signal to the main power circuit and the sub power circuit.
  • the security monitoring device of the present invention supplies power between the secondary power supply circuit in the sleep state, the main power supply circuit in the awake state, and the sleep state and the awake state when the PIR human body infrared sensor detects the person.
  • the conversion achieves the technical effect of reducing power consumption and increasing standby time.
  • the image capturing device of the present invention achieves the technical effect of fast starting speed of the camera device by adopting a real-time operating system, thereby shortening the duration of the security monitoring device in the awake state, further reducing the power consumption and increasing the standby time.
  • the battery provides an electrical signal to the main power circuit and the sub-power circuit. Therefore, the security monitoring device of the present invention does not require power wiring, and achieves the technical effect of convenient installation and high installation efficiency.
  • 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 diagram of functional modules of an embodiment of the security monitoring device of FIG. 1.
  • FIG. 3 is a schematic flow chart of an embodiment of a security monitoring method according to the present invention.
  • the security monitoring system includes a security monitoring device 1 and a server 2.
  • the security monitoring device 1 is communicatively coupled to the server 2 via a communication link.
  • the communication link includes a router 3.
  • the router 3 and the server 2 are connected by a wired network or a wireless network.
  • the router 3 and the security monitoring device 1 are connected by wireless network communication.
  • the security monitoring device 1 is used to detect in the security zone In the human body, the sleep state is switched to the awake state, the video data information is acquired, and the video data information is transmitted to the server 2.
  • the server 2 is configured to receive video data information sent by the security monitoring device 1 and store the video data information.
  • the security monitoring device 1 includes a battery 11, a secondary power supply circuit 12, an MCU 13, a WIFI module 14, a PIR human body infrared sensor 15, a main power supply circuit 16, and a video information acquisition module 17.
  • the sub power supply circuit 12 is used for supplying power to the MCU 13, the WIFI module 14, and the PIR human body infrared sensor 15.
  • the MCU 13 is used to turn off the main power circuit 16, and the security monitoring device 1 is in a sleep state.
  • the PIR human body infrared sensor 15 is configured to notify the MCU 13 to turn on the main power circuit 16 when the human body is detected in the guard zone, and the main power circuit 16 supplies power to the video information acquiring module 17, and the security monitoring device 1 transitions from the sleep state to the awake state.
  • the video information obtaining module 17 is configured to acquire video data information and transmit the video data information to the outside via the WIFI module 14.
  • the MCU 13 is further configured to turn off the main power circuit 16 after the transmission of the video data information is completed, and the security monitoring device 1 transitions from the awake state to the sleep state.
  • the battery 11 is used to supply electrical signals to the main power supply circuit 16 and the sub power supply circuit 12 for supplying power to the main power supply circuit 16 and the sub power supply circuit 12.
  • the power consumption of the existing security monitoring device in one hour is compared with the power consumption of the security monitoring device 1 of the embodiment in one hour to illustrate that the power consumption of the security monitoring device 1 of the present embodiment is greatly increased. reduce.
  • the security monitoring device 1 of the embodiment has an operating current of 300 to 400 ⁇ A in the sleep state and an operating current of 150 to 320 mA in the awake state, and the average number of times the security monitoring device 1 is in the awake state is 5 times per hour.
  • the duration of the awake state is 30S. Therefore, the power consumption in one hour is: 30*5S* (150 to 320 mA) + (3600 to 30*5) S* (300 to 400 ⁇ A).
  • the power supply of the auxiliary power circuit 12 in the sleep state, the power supply of the main power circuit 16 in the awake state, and the transition between the sleep state and the awake state when the PIR human body infrared sensor 15 detects the person are achieved, thereby reducing the power consumption and Improve the technical effect of standby time.
  • this embodiment is The over-battery 11 supplies electrical signals to the main power supply circuit 16 and the sub-power supply circuit 12. Therefore, the security monitoring device 1 of the present invention does not require power supply wiring, and achieves the technical effect of convenient installation and high installation efficiency.
  • the video information acquisition module 17 includes an imaging device 171 and a DSP 172. Wherein, when the imaging device 171 is used in the awake state, the video data information is captured.
  • the DSP 172 is for acquiring video data information from the camera 171 and buffering the video data information.
  • the camera device 171 employs a real-time operating system.
  • the existing operating system 171 uses a Linux operating system, that is, a time-sharing operating system, and therefore, the booting speed is slow.
  • the image pickup apparatus 171 of the present embodiment employs a real-time operating system, and therefore, the booting speed is fast. As a result, the duration of the security monitoring device 1 in the awake state is shortened, further reducing the power consumption and increasing the standby time.
  • FIG. 3 illustrates an embodiment of the security monitoring method of the present invention.
  • the security monitoring method includes the following steps:
  • step S1 the auxiliary power circuit supplies power to the MCU, the WIFI module, and the PIR human body infrared sensor.
  • step S2 the MCU turns off the main power circuit, and the security monitoring device is in a sleep state.
  • step S3 the PIR human body infrared sensor determines whether the human body is detected in the warning zone. If the human body is detected, step S4 is performed. If the human body is not detected, step S3 is performed.
  • step S4 the PIR human body infrared sensor notifies the MCU to turn on the main power circuit, and the main power circuit supplies power to the video information acquisition module, and the security monitoring device changes from the sleep state to the awake state.
  • step S5 the video information acquiring module acquires video data information and sends the video data information to the outside through the WIFI module.
  • step S5 includes: capturing, by the camera, video data information.
  • the DSP acquires video data information from the camera device, buffers the video data information, and outputs the buffered video data information to the outside through the WIFI module.
  • the camera device uses a real-time operating system.
  • step S6 the video information acquiring module determines whether the video data information is sent. If the transmission is completed, step S2 is performed. If the transmission is not completed, step S5 is performed.

Abstract

本发明公开了一种安防监控设备、安防监控系统以及安防监控方法。其中,该安防监控设备包括:MCU用于关闭主电源电路,安防监控设备处于休眠状态。副电源电路用于供电给MCU、WIFI模块和PIR人体红外传感器。PIR人体红外传感器用于在警戒区检测到人体时,通知MCU开启主电源电路,主电源电路供电给视频信息获取模块,从休眠状态转换为唤醒状态。视频信息获取模块用于获取视频数据信息并将视频数据信息经WIFI模块发送至外部。MCU还用于视频数据信息发送完成后,关闭主电源电路,从唤醒状态转换为休眠状态。当PIR人体红外传感器检测到人体时实现休眠状态与唤醒状态的转换,达到了降低耗电量以及提升待机时长的技术效果。

Description

安防监控设备、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设备、安防监控系统以及安防监控方法。
背景技术
随着人们生活水平的提高,广大用户对安防的需求也在不断提高。所以近年来有很多企业开始涉足安防市场,市面上出现各种各样的有线安防监控设备和无线安防监控设备。
有线安防监控设备需要通过有线方式连接显示终端以及通过有线方式连接电源端以致安装有线安防监控设备时需要网络布线以及电源布线,因此,有线安防监控设备的安装存在不便捷且安装效率低等问题。同时,无线安防监控设备需要拍摄监控范围的视频数据信息并通过无线网络将该视频数据信息传输至外部以致无线网络摄像机的耗电量大,因此,大多数的无线安防监控设备采用电源适配器供电。因此,无线安防监控设备的安装仍需要电源布线以致无线安防监控设备的安装仍存在安装不便捷且安装效率低等问题。
有鉴于此,实有必要提供一种耗电量低以及安装便捷且安装效率高的安防监控设备以解决现有技术的缺陷。
发明内容
本发明所要解决的技术问题是提供一种安防监控设备,通过休眠状态下副电源电路供电、唤醒状态下主电源电路供电、以及当PIR人体红外传感器检测人时实现休眠状态与唤醒状态之间的转换,达到了降低耗电量以及提升待机时长的目的。此外,电池提供电信号给主电源电路和副电源电路,用于为所述主电源电路和所述副电源电路供电,因此,本发明的安防监控设备无需电源布线,达到了安装便捷且安装效率高的目的。
为了解决上述问题,本发明提供了一种安防监控设备,其包括:副电源电路、MCU、WIFI模块、PIR人体红外传感器、主电源电路和视频信息获取模块。MCU分别与副电源电路、PIR人体红外传感器、WIFI模块、主电源电路、视频信息获取模块连接,副电源电路分别与WIFI模块、PIR人体红外传感器连接, 主电源电路与视频信息获取模块连接,视频信息获取模块与WIFI模块连接。副电源电路用于供电给MCU、WIFI模块和PIR人体红外传感器。MCU用于关闭主电源电路,安防监控设备处于休眠状态。PIR人体红外传感器用于在警戒区检测到人体时,通知MCU开启主电源电路,主电源电路供电给视频信息获取模块,安防监控设备从休眠状态转换为唤醒状态。视频信息获取模块用于获取视频数据信息并将视频数据信息经WIFI模块发送至外部。MCU还用于视频数据信息发送完成后,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。
优选地,视频信息获取模块包括:
摄像装置,用于处于唤醒状态时,拍摄得到视频数据信息。
DSP,用于从摄像装置获取视频数据信息并将视频数据信息进行缓存。
优选地,摄像装置采用实时操作系统。
优选地,其还包括:
电池,用于提供电信号给主电源电路和副电源电路。
为了解决上述问题,本发明还提供了一种安防监控系统,其包括:
上述的安防监控设备,用于在警戒区检测到人体时,从休眠状态转换为唤醒状态、获取视频数据信息并将视频数据信息传输至服务器。
服务器,用于接收安防监控设备发送的视频数据信息并存储视频数据信息。
为了解决上述问题,本发明还提供了一种安防监控方法,其包括如下步骤:
副电源电路供电给MCU、WIFI模块和PIR人体红外传感器。
MCU关闭主电源电路,安防监控设备处于休眠状态。
PIR人体红外传感器判断在警戒区是否检测到人体。若检测到人体,执行唤醒操作,若未检测到人体,继续处于休眠状态。
唤醒操作包括:
PIR人体红外传感器通知MCU开启主电源电路,主电源电路供电给视频信息获取模块,安防监控设备从休眠状态转换为唤醒状态。
视频信息获取模块获取视频数据信息并将视频数据信息经WIFI模块发送至外部。
视频数据信息发送完成后,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。
优选地,视频信息获取模块获取视频数据信息并将视频数据信息经WIFI模块发送至外部的步骤包括:
摄像装置拍摄得到视频数据信息。
DSP从摄像装置获取视频数据信息、将视频数据信息进行缓存并将缓存的视频数据信息经WIFI模块输出至外部。
优选地,摄像装置采用实时操作系统。
优选地,电池提供电信号给主电源电路和副电源电路。
与现有技术相比,首先,本发明的安防监控设备通过休眠状态下副电源电路供电、唤醒状态下主电源电路供电、以及当PIR人体红外传感器检测人时实现休眠状态与唤醒状态之间的转换,达到了降低耗电量以及提升待机时长的技术效果。其次,本发明的摄像装置通过采用实时操作系统,达到了摄像装置开机速度快的技术效果,从而致使安防监控设备处于唤醒状态的时长缩短,进一步的降低了耗电量以及提升了待机时长。最后,电池提供电信号给主电源电路和副电源电路,因此,本发明的安防监控设备无需电源布线,达到了安装便捷且安装效率高的技术效果。
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为图1中的安防监控设备一种实施例的功能模块示意图。
图3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~图2展示了本发明安防监控系统的一种实施例。在本实施例中,如图1所示,该安防监控系统包括安防监控设备1和服务器2。安防监控设备1通过通信链路与服务器2通信连接。其中,该通信链路包括路由器3。路由器3与服务器2之间通过有线网络或无线网络通信连接。路由器3与安防监控设备1之间通过无线网络通信连接。其中,安防监控设备1用于在警戒区检测到 人体时,从休眠状态转换为唤醒状态、获取视频数据信息并将视频数据信息传输至服务器2。服务器2,用于接收安防监控设备1发送的视频数据信息并存储视频数据信息。
具体地,参见图2,该安防监控设备1包括电池11、副电源电路12、MCU13、WIFI模块14、PIR人体红外传感器15、主电源电路16和视频信息获取模块17。其中,副电源电路12用于供电给MCU 13、WIFI模块14和PIR人体红外传感器15。MCU 13用于关闭主电源电路16,安防监控设备1处于休眠状态。PIR人体红外传感器15用于在警戒区检测到人体时,通知MCU 13开启主电源电路16,主电源电路16供电给视频信息获取模块17,安防监控设备1从休眠状态转换为唤醒状态。视频信息获取模块17用于获取视频数据信息并将视频数据信息经WIFI模块14发送至外部。MCU 13还用于视频数据信息发送完成后,关闭主电源电路16,安防监控设备1从唤醒状态转换为休眠状态。其中,电池11用于提供电信号给主电源电路16和副电源电路12,用于为给所述主电源电路16和所述副电源电路12供电。
下面通过现有的安防监控设备一个小时内的耗电量与本实施例的安防监控设备1一个小时内的耗电量的对比,以说明本实施例的安防监控设备1的耗电量大大地降低。
现有的安防监控设备:处于工作状态时,安防监控设备的工作电流为150~320mA,因此,一个小时内的功耗为:(150~320mA)*3600S。
本实施例的安防监控设备1:休眠状态下的工作电流为300~400μA,唤醒状态下的工作电流为150~320mA,一个小时内,安防监控设备1处于唤醒状态的平均次数为5次,每一次唤醒状态的维持时长为30S。因此,一个小时内的功耗为:30*5S*(150~320mA)+(3600~30*5)S*(300~400μA)。
通过上述数据进行简单计算:(150*3600)/[150*150+3450*0.3]≈23。获知现有的安防监控设备一个小时的耗电量至少是本实施例安防监控设备1的23倍以上。
本实施例通过休眠状态下副电源电路12供电、唤醒状态下主电源电路16供电、以及当PIR人体红外传感器15检测人时实现休眠状态与唤醒状态之间的转换,达到了降低耗电量以及提升待机时长的技术效果。此外,本实施例通 过电池11提供电信号给主电源电路16和副电源电路12,因此,本发明的安防监控设备1无需电源布线,达到了安装便捷且安装效率高的技术效果。
为了提升视频信息获取模块17的开启速度,以及进一步的降低安防监控设备1的耗电量以及进一步提升安防监控设备1的待机时长。在本实施例的基础上,在其他实施例中,视频信息获取模块17包括摄像装置171和DSP 172。其中,摄像装置171用于处于唤醒状态时,拍摄得到视频数据信息。DSP 172用于从摄像装置171获取视频数据信息并将视频数据信息进行缓存。其中,摄像装置171采用实时操作系统。
现有的摄像装置171采用的Linux操作系统,即分时操作系统,因此,开机速度慢。但是本实施例的摄像装置171采用的实时操作系统,因此,开机速度快。从而致使安防监控设备1处于唤醒状态的时长缩短,进一步的降低了耗电量以及提升了待机时长。
图3展示了本发明安防监控方法的一种实施例。在本实施例中,该安防监控方法包括如下步骤:
步骤S1,副电源电路供电给MCU、WIFI模块和PIR人体红外传感器。
步骤S2,MCU关闭主电源电路,安防监控设备处于休眠状态。
步骤S3,PIR人体红外传感器判断在警戒区是否检测到人体。若检测到人体,执行步骤S4。若未检测到人体,执行步骤S3。
步骤S4,PIR人体红外传感器通知MCU开启主电源电路,主电源电路供电给视频信息获取模块,安防监控设备从休眠状态转换为唤醒状态。
步骤S5,视频信息获取模块获取视频数据信息并将视频数据信息经WIFI模块发送至外部。本实施例的基础上,在其他实施例中,步骤S5包括:摄像装置拍摄得到视频数据信息。DSP从摄像装置获取视频数据信息、将视频数据信息进行缓存并将缓存的视频数据信息经WIFI模块输出至外部。其中,摄像装置采用实时操作系统。
步骤S6,视频信息获取模块判断视频数据信息是否发送完成。若发送完成,执行步骤S2。若未发送完成,执行步骤S5。
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 (9)

  1. 一种安防监控设备,其特征在于,其包括:主电源电路、副电源电路MCU、WIFI模块、PIR人体红外传感器和视频信息获取模块;所述主电源电路、所述副电源电路、所述PIR人体红外传感器、所述WIFI模块和所述视频信息获取模块都与所述MCU连接,所述副电源电路分别与所述WIFI模块、所述PIR人体红外传感器连接,所述主电源电路与所述视频信息获取模块连接,所述视频信息获取模块与所述WIFI模块连接;所述副电源电路用于供电给MCU、WIFI模块和PIR人体红外传感器;所述MCU用于关闭主电源电路,所述安防监控设备处于休眠状态;所述PIR人体红外传感器用于在警戒区检测到人体时,通知所述MCU开启所述主电源电路,所述主电源电路供电给视频信息获取模块,所述安防监控设备从所述休眠状态转换为唤醒状态;所述视频信息获取模块用于获取视频数据信息并将所述视频数据信息经所述WIFI模块发送至外部;所述MCU还用于在所述视频数据信息发送完成后,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所述休眠状态。
  2. 根据权利要求1所述的安防监控设备,其特征在于,所述视频信息获取模块包括:
    摄像装置,用于拍摄得到视频数据信息;
    DSP,用于从所述摄像装置获取所述视频数据信息并将所述视频数据信息进行缓存。
  3. 根据权利要求2所述的安防监控设备,其特征在于,所述摄像装置采用实时操作系统。
  4. 根据权利要求1所述的安防监控设备,其特征在于,其还包括:
    电池,用于提供电信号给所述主电源电路和所述副电源电路。
  5. 一种安防监控系统,其特征在于,其包括:
    权利要求1~4之一所述安防监控设备,用于在警戒区检测到人体时,从休眠状态转换为唤醒状态、获取视频数据信息并将所述视频数据信息传输至服务器;
    服务器,用于接收所述安防监控设备发送的视频数据信息并存储所述视频数据信息。
  6. 一种安防监控方法,其特征在于,其包括如下步骤:
    副电源电路供电给MCU、WIFI模块和PIR人体红外传感器;
    所述MCU关闭主电源电路,安防监控设备处于休眠状态;
    所述PIR人体红外传感器判断在警戒区是否检测到人体;若检测到人体,执行唤醒操作,若未检测到人体,继续处于所述休眠状态;
    所述唤醒操作包括:
    所述PIR人体红外传感器通知所述MCU开启所述主电源电路,所述主电源电路供电给视频信息获取模块,所述安防监控设备从所述休眠状态转换为唤醒状态;
    所述视频信息获取模块获取视频数据信息并将所述视频数据信息经所述WIFI模块发送至外部;
    所述视频数据信息发送完成后,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所述休眠状态。
  7. 根据权利要求6所述的安防监控方法,其特征在于,所述视频信息获取模块获取视频数据信息并将所述视频数据信息经所述WIFI模块发送至外部的步骤包括:
    摄像装置拍摄得到视频数据信息;
    DSP从所述摄像装置获取所述视频数据信息、将所述视频数据信息进行缓存并将缓存的视频数据信息经所述WIFI模块输出至外部。
  8. 根据权利要求7所述的安防监控方法,其特征在于,所述摄像装置采用实时操作系统。
  9. 根据权利要求6所述的安防监控方法,其特征在于,电池提供电信号给所述主电源电路和所述副电源电路。
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