Maximum Power Point Tracking Circuit for an Energy Harvester in 130 nm CMOS Technology

A. Hudec, L. Nagy, M. Kovác, V. Stopjaková
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Abstract

This paper presents design of a Maximum Power Point Tracking (MPPT) circuit and its functionality for tuning the maximum power transfer from an energy harvester (EH) unit. Simple and practical “Perturb and Observe” (P&O) algorithm is investigated and implemented. We describe the circuit functionality and the improvements that have been introduced to the original algorithm. The proposed MPPT design is divided into three main blocks. The output signal is being generated by the PWM or PFM block. The tracking speed has been enhanced by implementing a variable step size in the “Tracking Block”. Finally, the overall power consumption of the MPPT circuit itself is controlled by the “Power Management Block”, which manages delivering the clock signal to the rest of the circuit. The RTL code of the proposed MPPT has been created in Verilog, synthesized and placed-and-routed in a general purpose 130 nm CMOS technology.
130nm CMOS技术能量采集器的最大功率点跟踪电路
本文介绍了一种最大功率点跟踪(MPPT)电路的设计及其用于调谐能量采集器(EH)单元的最大功率传输的功能。研究并实现了简单实用的“扰动与观察”(P&O)算法。我们描述了电路的功能和改进,已经引入到原来的算法。提出的MPPT设计分为三个主要模块。输出信号由PWM或PFM模块产生。通过在“跟踪块”中实现可变步长,跟踪速度得到了提高。最后,MPPT电路本身的总功耗由“电源管理模块”控制,该模块负责将时钟信号传递给电路的其余部分。所提出的MPPT的RTL代码已在Verilog中创建,并在通用130纳米CMOS技术中进行合成和放置和路由。
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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