Low-Power On-Chip Energy Harvesting: From Interface Circuits Perspective

IF 2.4 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Shuang Song;Dehong Wang;Mengyu Li;Siyao Cao;Feijun Zheng;Kai Huang;Zhichao Tan;Sijun Du;Menglian Zhao
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引用次数: 0

Abstract

Multiple parameter environment monitoring via wireless Internet of Thing sensors is growing rapidly, thanks to low power techniques of the node. More importantly, the ever more complex and highly efficient energy harvesting systems enable long-term continuous monitoring in inaccessible environments without needing to change the battery. This paper reviews existing energy harvesting modalities, including photovoltaic, piezoelectric, pyroelectric, electromagnetic, and vibration, together with circuit techniques of interfacing power management circuits for energy harvesters. Moreover, techniques used to interface with multiple mode energy harvesters to obtain a stable output power with optimal power efficiency are discussed as an emerging direction. The state-of-the-art energy harvesting systems together with future development trends are provided.
低功耗片上能量收集:从接口电路的角度看
得益于节点的低功耗技术,通过无线物联网传感器进行多参数环境监测的技术正在迅速发展。更重要的是,日益复杂和高效的能量收集系统可在无需更换电池的情况下,在无法进入的环境中实现长期连续监测。本文回顾了现有的能量收集模式,包括光伏、压电、热释电、电磁和振动,以及能量收集器电源管理电路的接口技术。此外,作为一个新兴方向,还讨论了用于连接多模式能量收集器的技术,以获得具有最佳功率效率的稳定输出功率。此外,还介绍了最先进的能量收集系统以及未来的发展趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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