← 返回 JSSC 论文列表
📄 下载 JSSC 原文 PDF
JSSC 2020第7期Power Management0.5-µmEnergy HarvestingNeural Network Accelerator

A Reconfigurable and Exte ndable Single-Inductor Single-Path Three-Switch Converter for Indoor Photovoltaic Energy Harvesting Peng-Chang Huang , Student Member , IEEE

提出一种可重构和可扩展的单电感三开关转换器,用于室内光伏能量收集。
0.5-µm CMOS, 1.24-mm² chip area, 95.0% peak efficiency (1P3S), 210 nA quiescent current (1P3S)
单电感光伏能量收集可重构转换器高效率低静态电流
单路径三开关(1P3S)转换器设计
可重构控制器实现多种配置
优化的开关尺寸和导通时间提高效率
Abstract
This article proposes a single-path three-switch (1P3S) single-inductor dual-input dual-output (SIDIDO) con- verter to manage power among a photovoltaic (PV) module, battery, and load for indoor PV energy harvesting. For low duty-cycle applications, the 1P3S converter increases efficiency in the PV-to-battery-to-load path by eliminating inductor-sharing power switches. This article also proposes a reconfigurable controller to achieve reconfigurability and extendibility that the 1P3S converter can be reconfigured as a dual-path three-switch (2P3S) SIDIDO converter, combined as a dual-path six-switch (2P6S) SIDIDO converter, or extended as a paralleled-1P3S converter for high energy efficiency in various applications with different PV and load power profiles. To identify each converter’s advantageous applications, the efficiencies of the 1P3S, reconfigured 2P3S, and combined 2P6S converters were analyzed under dynamic PV and load powers. The chip is fabricated in the 0.5- µm CMOS process with a 1.24-mm 2 chip area. The measured peak efficiencies for the 1P3S, 2P3S, and 2P6S converters are 95.0%, 95.2%, and 90.0%, respectively, while the measured quiescent currents are 210, 130, and 140 nA, respectively. Compared with th e state-of-the-art 2P3S and 2P6S converters, the reconfigured 2P3S and combined 2P6S converters with the proposed IC, respectively, achieve higher efficiency through appropriate switch sizes and ON-time optimizations.