Integrated High-Efficiency Single-Inductor CCM Boost Converter for Multi-Junction PV Energy Harvesting

Qirong Peng, Debashis Mandal, Parisa Mahmoudidaryan, B. Bakkaloglu, S. Kiaei
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Abstract

This paper presents a dual-input, single inductor boost converter operating in continuous conduction mode (CCM) for multi-junction photovoltaic (PV) energy harvesting. The proposed inductor current regulation and inductor time-sharing scheme reduces the cross-regulation between the inputs caused by sharing the CCM converter between multi-junction PV (MJ-PV) sources. The existing hill-climbing maximum power point tracking (MPPT) algorithm is modified for MJ-PV sources to ensure the maximum power point (MPP) operation of both PV sources. A dual-path architecture using hysteresis control is implemented to provide a regulated output voltage. The power switches and control circuits are designed and fabricated in standard 0.18-µm CMOS technology. Measured results show that the proposed converter achieves peak power efficiency of 85%.
用于多结光伏能量收集的集成高效单电感CCM升压变换器
本文提出了一种工作在连续导通模式(CCM)下的双输入、单电感升压变换器,用于多结光伏(PV)能量收集。提出的电感电流调节和电感分时方案减少了多结光伏(MJ-PV)电源共用CCM变换器造成的输入间的交叉调节。针对MJ-PV源,对现有爬坡最大功率点跟踪(MPPT)算法进行了改进,以保证两个光伏源的最大功率点(MPP)运行。采用磁滞控制的双路结构提供一个可调节的输出电压。电源开关和控制电路采用标准的0.18µm CMOS技术设计和制造。实测结果表明,该变换器的峰值功率效率可达85%。
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