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Survey of energy scavenging for wearable and implantable devices

机译:可穿戴设备的能量清除调查

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摘要

This paper reviews state-of-the-art methods of energy harvesting for implantable and wearable devices based on the available mechanical and heat energy sources in the human body. The development of a compatible and sustainable power supply for wearable and implantable devices is a demand to realize their continuous and high-performance operation, minimize the need for external energy sources, and increase the lifetime of the devices. Heat and mechanical movement are two available and reliable energy sources in the human body. Since mechanical and heat energy harvesting methods have been extensively studied over the past decades, researchers focus on developing techniques to integrate these energy harvesters with implantable and wearable electronics. Therefore, energy requirement for wearable and implantable devices, available energy level from the human body, and convenience and feasibility of the implementation are taken into account to provide full or partial power support. This survey aims to present recent findings and developments in the field of energy harvesting from continuous heat source and mechanical movements of the human body. In particular, working principles, technical details, and current status as well as issues and challenges of energy harvesting from human body including thermoelectric, photovoltaic, piezoelectric, electrostatic, electromagnetic, and tribo-electric harvesters are discussed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文评价基于人体中可用的机械和热能源的可植入和可穿戴设备的最先进的能量收集方法。可穿戴和可植入设备的兼容性和可持续电源的开发是一种需要实现其连续和高性能的操作,最大限度地减少对外部能源的需求,并增加器件的寿命。热量和机械运动是人体中有两种可用的和可靠的能源。由于过去几十年来,机械和热能收获方法已被广泛研究,因此研究人员专注于开发与可植入和可穿戴电子产品集成这些能量收割机的技术。因此,考虑了可穿戴设备的能量要求,可植入装置,从人体的可用能量水平以及实施方便和可行性,以提供完整或部分动力支持。该调查旨在从连续热源和人体机械运动的能量收集领域的最近发现和发展。特别是,讨论了从包括热电,光伏电压,压电,电磁,电磁和摩擦收割机的人体能量收集的工作原理,技术细节和现状以及能源收获的问题和挑战。 (c)2019 Elsevier Ltd.保留所有权利。

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