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Design and implementation of an embedded home surveillance system with zero alert power using a photovoltaic array

机译:使用光伏阵列的零警报功率嵌入式家庭监控系统的设计和实现

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In this paper we design and implement an embedded home surveillance system with zero alert power using a photovoltaic array. Traditional surveillance systems suffer from an unnecessary waste of power and the shortcomings of memory conditions in the absence of invasion. In this design we use Pyroelectric Infrared sensors (PIR) and pressure sensors as the alert group whose power is supplied by the photovoltaic array in both those windows and doors where an intruder must pass through. These low-power alert sensors wake up the low-power MCU (Micro Controller Unit) which implements the power management for those ultrasonic sensors and PIR sensors located indoors. This state transition method saves a large number of sensors required for the alert power. We also use the Majority Voting Mechanism (MVM) to manage the sensor groups to enhance the probability of multiple sensors sensing. After the MCU sends the sensor signals to the embedded system, the program starts the Web camera. Our sensing experiment shows that we reduce the system's power consumption.
机译:在本文中,我们使用光伏阵列设计并实现了具有零警报功率的嵌入式家庭监控系统。传统的监视系统在没有入侵的情况下遭受不必要的功率浪费和存储条件的缺点。在此设计中,我们使用热释电红外传感器(PIR)和压力传感器作为警报组,其功率由入侵者必须通过的那些窗户和门中的光伏阵列提供。这些低功率警报传感器唤醒了低功率MCU(微控制器单元),该MCU为位于室内的那些超声波传感器和PIR传感器实现了电源管理。这种状态转换方法节省了警报电源所需的大量传感器。我们还使用多数投票机制(MVM)来管理传感器组,以提高多个传感器感测的可能性。 MCU将传感器信号发送到嵌入式系统后,程序将启动网络摄像机。我们的传感实验表明,我们降低了系统的功耗。

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