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Boost Converter With Dynamic Input Impedance Matching for Energy Harvesting With Multi-Array Thermoelectric Generators

机译:具有动态输入阻抗匹配的升压转换器,用于多阵列热电发生器的能量收集

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摘要

This paper presents a built-in input matching technique capable of handling a wide variation of multi-array thermoelectric generator (TEG) impedances ranging two decades, from 10 s to 1000 s of ohms. Maximum power point tracking (MPPT) control for a boost converter (BC) is introduced. The analytical expressions derived offer insight on the manner in which MPPT interacts with a BC to achieve best performance. The BC operates in a discontinuous conduction mode under pulse frequency modulation to minimize power consumption and maximize efficiency for light loads. Losses are minimized by implementing a pseudo-zero current switching control via the PMOS switch on/off time, and the output voltage is set using a global clocked comparator. A prototype was fabricated in 0.5 $muhbox{m}$ CMOS where efficiency measurements showed a maximum value of 61.15% for an $R_{TEG} = 33.33 Omega$, and quiescent power consumption was 1 $muhbox{W}$.
机译:本文提出了一种内置的输入匹配技术,该技术能够处理从10 s到1000 s的欧姆范围不等的几十年的多阵列热电发生器(TEG)阻抗变化。引入了升压转换器(BC)的最大功率点跟踪(MPPT)控制。得出的分析表达式可洞悉MPPT与BC相互作用以实现最佳性能的方式。 BC在脉冲频率调制下以不连续导通模式工作,以最小化功耗并最大程度提高轻负载效率。通过PMOS开关接通/断开时间实现伪零电流开关控制,可将损耗降至最低,并使用全局时钟比较器设置输出电压。原型是在0.5μmhbox{m} $ CMOS中制造的,效率测量结果显示,对于$ R_ {TEG} = 33.33Ω,效率最大值为61.15%,静态功耗为1μmhbox{W} $。

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