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Photovoltaic Power System with an Interleaving Boost Converter for Battery Charger Applications

机译:具有交错式升压转换器的光伏电源系统,用于电池充电器应用

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摘要

This paper proposes a photovoltaic (PV) power system for battery charger applications. The charger uses an interleaving boost converter with a single-capacitor turn-off snubber to reduce voltage stresses of active switches at turn-off transition. Therefore, active switches of the charger can be operated with zero-voltage transition (ZVT) to decrease switching losses and increase conversion efficiency. In order to draw the maximum power from PV arrays and obtain the optimal power control of the battery charger, a perturbation-and-observation method and microchip are incorporated to implement maximum power point tracking (MPPT) algorithm and power management. Finally, a prototype battery charger is built and implemented. Experimental results have verified the performance and feasibility of the proposed PV power system for battery charger applications.
机译:本文提出了一种用于电池充电器应用的光伏(PV)电源系统。充电器使用交错升压转换器和单电容器关断缓冲器,以减少关断过渡时有源开关的电压应力。因此,充电器的有源开关可以在零电压转换(ZVT)下工作,以减少开关损耗并提高转换效率。为了从光伏阵列中获取最大功率并获得最佳的电池充电器功率控制,将摄动和观测方法与微芯片相结合,以实现最大功率点跟踪(MPPT)算法和功率管理。最后,构建并实现了原型电池充电器。实验结果证明了所提出的用于电池充电器应用的光伏电源系统的性能和可行性。

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