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A Cell-Level Differential Power Processing IC for Concentrating-PV Systems With Bidirectional Hysteretic Current-Mode Control and Closed-Loop Frequency Regulation

机译:具有双向磁滞电流模式控制和闭环频率调节功能的聚光光伏系统的单元级差分功率处理IC

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摘要

This paper describes an integrated power management IC with bidirectional current capability, aimed at compensating differences in output current between series-connected cells in concentrating photovoltaic (CPV) systems. The integrated 3.6-MHz power stage allows building a small-form-factor converter per cell. A hysteretic current-mode controller regulates the bidirectional converter's current to equalize neighboring cell voltages. A phase-locked loop controls the inductor current ripple around the average value to stabilize the switching frequency. The use of hysteretic current-mode control with a novel bidirectional senseFET scheme provides inherent current protection and high reliability. The converter can operate from an input voltage as low as 1.8 V and with an inductor current up to 1.5 A, while achieving a system efficiency above 90% for current mismatches between cells up to 60%. Measurement results show that the converter maximizes the output power of series-connected CPV cells with mismatched output currents.
机译:本文介绍了一种具有双向电流功能的集成电源管理IC,旨在补偿聚光光伏(CPV)系统中串联连接的电池之间的输出电流差异。集成的3.6MHz功率级可为每个单元构建一个小型转换器。磁滞电流模式控制器调节双向转换器的电流,以均衡相邻电池的电压。锁相环将电感器电流纹波控制在平均值附近,以稳定开关频率。磁滞电流模式控制与新颖的双向senseFET方案结合使用可提供固有的电流保护和高可靠性。该转换器可在低至1.8 V的输入电压和高达1.5 A的电感器电流下工作,同时针对高达60%的电池间电流失配,实现90%以上的系统效率。测量结果表明,该转换器在输出电流不匹配的情况下使串联连接的CPV电池的输出功率最大化。

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