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Harvesting energy from human kinesis for indoor environment sensing

机译:从人体运动中收集能量以进行室内环境感知

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A vision of autonomous supply of microelectronic sensors without batteries making them perpetual is a driving force of the research related to ambient energy harvesting. Energy harnessing aims at extracting energy from various ambient energy "pools", which are generally cost- or power-ineffective to be scaled up for full-size, power-plant energy generation schemes supplying energy in electric form. These include - but are not limited to - waste heat, electromagnetic hum, vibrations, light, water and air flow as well as human-generated power, which can be exploited at a miniature scale by energy scavengers. However, in case of taking advantage of energy harvesting strategy for powering up sensors installed inside buildings adaptable energy sources are limited in number, spatial and temporal accessibility as well as available power. The paper explores experimentally an energy harvesting approach to exploit human kinesis in a building interior environment for battery-less supply of a wireless sensor node. The node, fitted with an integrated multi- parameter environmental MEMS-DRIE sensor offers the ability to monitor ambient air properties (pressure, humidity and temperature) and publicize measurement data using cloud-based IoT web service.
机译:没有电池使微电子传感器永久地自动供应的愿景是与环境能量收集相关的研究的驱动力。能量利用的目的是从各种环境能量“池”中提取能量,这些能量池通常在成本或功率上无效,因此无法按比例放大到以电形式提供能量的大型发电厂能量产生方案。这些包括但不限于废热,电磁嗡嗡声,振动,光,水和气流以及人为产生的能量,这些能量可以被能量清除剂以小规模利用。但是,在利用能量收集策略为建筑物内安装的传感器加电的情况下,自适应能源的数量,空间和时间可及性以及可用功率受到限制。本文实验性地探索了一种能量收集方法,以在建筑物内部环境中利用人体运动来为无线传感器节点提供无电池供电。该节点配备了集成的多参数环境MEMS-DRIE传感器,能够使用基于云的IoT Web服务监视环境空气属性(压力,湿度和温度)并公布测量数据。

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