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Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters

机译:用于两级光伏串式逆变器的降压部分功率DC-DC转换器

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Photovoltaic (PV) systems composed by two energy conversion stages are attractive from an operation point of view. This is because the maximum power point tracking (MPPT) range is extended, due to the voltage decoupling between the PV system and the dc-link. Nevertheless, the additional dc-dc conversion stage increases the volume, cost and power converter losses. Therefore, central inverters based on a single-stage converter, have been a mainstream solution to interface large-scale PV arrays composed of several strings connected in parallel made by the series connections of PV modules. The concept of partial power converters (PPC), previously reported as a voltage step-up stage, has not addressed in depth for all types of PV applications. In this work, a PPC performing voltage step-down operation is proposed and analyzed. This concept is interesting from the industry point of view, since with the new isolation standards of PV modules are reaching 1500 V, increasing both the size of the string and dc-link voltage for single-stage inverters. Since grid connection remains typically at 690 V, larger strings impose more demanding operation for single-stage central inverters (required to operate at lower modulation indexes and demand higher blocking voltage devices), making the proposed step-down PPC an attractive solution. Theoretical analysis and an experimental test-bench was built in order to validate the PPC concept, the control performance and the improvement of the conversion efficiency. The experimental results corroborate the benefits of using a PPC, in terms of increasing the system efficiency by reducing the processed power of the converter, while not affecting the system performance.
机译:从操作的角度来看,由两个能量转换阶段组成的光伏(PV)系统具有吸引力。这是因为由于光伏系统和直流母线之间的电压去耦,最大功率点跟踪(MPPT)范围得到了扩展。但是,额外的DC-DC转换级会增加体积,成本和功率转换器损耗。因此,基于单级转换器的中央逆变器已成为连接大型PV阵列的主流解决方案,该阵列由由PV模块的串联连接而成的并联连接的多个串组成。部分功率转换器(PPC)的概念以前曾报道为升压阶段,但并未针对所有类型的PV应用进行深入探讨。在这项工作中,提出并分析了执行电压降压操作的PPC。从行业的角度来看,这个概念很有趣,因为随着光伏模块的新隔离标准达到1500 V,单级逆变器的串大小和直流链路电压都增加了。由于电网连接通常保持在690 V,因此较大的串对单级中央逆变器提出了更高的要求(要求以较低的调制指数运行并需要更高的阻断电压器件),从而使拟议的降压PPC成为有吸引力的解决方案。建立了理论分析和实验平台,以验证PPC概念,控制性能和转换效率的提高。实验结果证实了使用PPC的好处,即通过降低转换器的处理功率来提高系统效率,同时又不影响系统性能。

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