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Approaches to energy harvesting and energy scavenging for energy autonomous sensors and microinstruments

机译:能量自主传感器和微仪器的能量收集和能量清除方法

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In chemical analysis, there are numerous applications requiring results in (near) real-time and measurement on-site. In many remote or not-easily-accessible locations, measuring analytical systems (e.g., sensors, microinstruments) require energy autonomy for unattended operation over prolonged periods of time. In this paper, energy harvesting and energy scavenging approaches that may be used for this purpose are critically evaluated and two examples of current research are briefly described. One involves energy harvested from a water-stream (by taking advantage of the electrochemical potential difference between the soil adjacent to the stream and the surface water of the stream) and the other, using a self-powering detector of visible light developed on a flexible polymeric substrate.
机译:在化学分析中,有许多应用需要(近)实时和现场测量结果。在许多偏远或不易接近的位置,测量分析系统(例如传感器,微仪器)需要能源自主权,以便长时间无人值守运行。在本文中,对可用于此目的的能量收集和能量清除方法进行了严格评估,并简要描述了当前研究的两个示例。一种涉及从水流中收集能量(通过利用与水相邻的土壤与水的地表水之间的电化学势差),另一种涉及使用在柔性管上产生的可见光自供电探测器聚合物基材。

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