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Differential power processing architecture for increased energy production and reliability of photovoltaic systems

机译:差分功率处理架构,可提高能量产生和光伏系统的可靠性

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Conventional energy conversion architectures in photovoltaic (PV) systems are often forced to trade off conversion efficiency and power production. This paper introduces a power processing architecture that enables each PV element to operate at its maximum power point (MPP) while only processing a small fraction of the total power produced. This is accomplished by providing only the mismatch in the MPP current of a set of series-connected PV elements. The differential power processing architecture increases overall conversion efficiency and overcomes the challenges of unmatched MPPs (due to partial shading, damage, manufacturing tolerances, etc.). Local control of the differential converters enables distributed protection and monitoring. The reliability analysis included in this paper shows significantly increased overall system reliability. Simulation and experimental results are included to demonstrate the benefits of this approach.
机译:光伏(PV)系统中的常规能量转换架构通常被迫权衡转换效率和发电量。本文介绍了一种功率处理架构,该架构可使每个PV元件以其最大功率点(MPP)运行,而仅处理总发电量的一小部分。这仅通过提供一组串联连接的PV元件的MPP电流不匹配来实现。差分功率处理架构提高了整体转换效率,并克服了MPP无与伦比的挑战(由于部分阴影,损坏,制造公差等)。差分转换器的本地控制可实现分布式保护和监控。本文包含的可靠性分析表明,整体系统的可靠性大大提高。仿真和实验结果也包括在内,以证明这种方法的好处。

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