基于频率分析的环境物联网低功耗唤醒系统

Manon Fourniol, V. Gies, V. Barchasz, E. Kussener, H. Barthélemy, R. Vauché, H. Glotin
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引用次数: 18

摘要

本文提出了一种基于频率分析的低功耗唤醒系统,用于环境和军事物联网。它旨在连续检测嵌入式系统输入声信号中特定甚高频的存在。这可以用于检测特定的动物物种,并触发记录系统或产生警报。用于有害物种检测,这有助于节省收成或保护严格的自然保护区。它还可以用于检测特定限制区域内无人机的存在。这种声学低功耗唤醒系统使用一个简单的16位微控制器(MCU),非常强调系统的低功耗管理,在单个标准1.2Ah - 12V铅电池上具有至少一年的连续检测目标。为此,充分利用模拟和数字混合的低功耗MCU模块。它们包括比较器,计时器和Microchip MCU上的一个特殊装置,称为电荷时间测量单元(CTMU)。这是一种驱动的恒流源,用于以非常低的功率和算法成本进行频率转换。这种基于频率分析的低功耗唤醒系统优化了低功耗模式,功耗为0.56mW,在一个标准的1.2Ah - 12v铅电池上,电池寿命约为3年。
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Low-Power Wake-Up System based on Frequency Analysis for Environmental Internet of Things
Being used in for environmental and military Internet of Things (IoT), a low power wake-up system based on frequency analysis is presented in this paper. It aims at detecting continuously the presence of specific very high frequencies in the input acoustic signal of an embedded system. This can be used for detecting specific animal species, and for triggering a recording system or generating alerts. Used for harmful species detection, this helps to save harvests or to protect strict nature reserves. It can also be used for detecting the presence of drones in a specific restricted area.This acoustic low power wake-up system uses a simple 16 bits micro-controller (MCU), with a strong emphasis on the low power management of the system, having a target of continuous detection for at least one year on a single standard 1.2Ah - 12V lead battery. For that, it makes the most of mixed analog and digital low power MCU modules. They are including comparators, timers and a special one present on Microchip MCU, called Charge Time Measurement Unit (CTMU). This is a driven constant current source for making time to frequency conversions at a very low power and algorithmic cost.Optimizing low power modes, this low power wake-up system based on frequency analysis has a power consumption of 0.56mW, leading to approximately 3 years of battery life on a single standard 1.2Ah - 12Vlead cell.
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