A 4.5-to-16μW integrated triboelectric energy-harvesting system based on high-voltage dual-input buck converter with MPPT and 70V maximum input voltage

Inho Park, Junyoung Maeng, Dongju Lim, Minseob Shim, Junwon Jeong, Chulwoo Kim
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引用次数: 23

Abstract

As a newly emerging energy source, a triboelectric nanogenerator (TENG) was introduced in 2012, and various types of energy harvesters and active sensors based on the TENG have since been developed. Although research in the material-engineering field is actively conducted, there is not much research on TENG energy-harvesting circuits in the integrated-circuits field. From the viewpoint of material engineering, much research focuses on the applications and the analysis of instantaneous power. However, topics such as rms maximum power point (MPP), spice modeling, and impedance matching are more important from the circuit designer's viewpoint. This paper presents a TENG energy-harvesting circuit designed as a high-voltage (HV) dual-input (DI) buck converter with MPP tracking (MPPT) based on the proposed MPP analysis for the TENG.
基于MPPT、最大输入电压为70V的高压双输入降压变换器的4.5 ~ 16μ w集成摩擦电能量收集系统
摩擦电纳米发电机(TENG)作为一种新兴的能源,于2012年被引入,并在此基础上开发了各种类型的能量采集器和有源传感器。虽然材料工程领域的研究非常活跃,但集成电路领域对TENG能量收集电路的研究并不多。从材料工程的角度出发,对瞬时功率的应用和分析进行了大量的研究。然而,从电路设计者的角度来看,rms最大功率点(MPP)、spice建模和阻抗匹配等主题更为重要。基于对TENG的MPP分析,提出了一种TENG能量收集电路,设计为具有MPP跟踪(MPPT)的高压双输入降压变换器。
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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