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A High Step-Up Z-Source DC-DC Converter for Integration of Photovoltaic Panels into DC Microgrid

机译:一种高升压Z源DC-DC转换器,用于将光伏电池集成到DC微电网中

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This paper presents a Z-source-based high step-up DC-DC converter that benefits from high voltage gain, low voltage stress on the semiconductor devices and the capacitors. The switched-capacitor cells are integrated with the conventional Z-source impedance network resulting in a new high step-up DC-DC converter. The proposed converter is suitable for photovoltaic (PV) applications where PV panels are linked to a 400 V DC bus in a DC microgrid. The proposed converter reduces the voltage stress on the diodes and the power switch to less than half the output voltage and achieves a high-voltage gain without imposing a limitation on the duty cycle and requiring a large number of components. The operating principles, the steady-state analysis, and a comparison with other similar high step-up DC-DC converters are presented. The simulation and experimental results validate the performance and the applicability of the proposed converter.
机译:本文介绍了一种基于Z源的高升压DC-DC转换器,其受益于高电压增益,半导体器件和电容器上的低压应力。 开关电容器单元与传统的Z源阻抗网络集成,导致新的高压升压DC-DC转换器。 所提出的转换器适用于光伏(PV)应用,其中PV面板在DC微电池中链接到400 V DC总线。 所提出的转换器将二极管上的电压应力降低到输出电压的小于一半的电压应力,并且在不对占空比上施加限制并且需要大量部件的情况下实现高压增益。 呈现了操作原理,稳态分析和与其他类似的高升压DC-DC转换器的比较。 模拟和实验结果验证了所提出的转换器的性能和适用性。

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