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Comparison of steady state performances of practical large-scale PV configurations

机译:实用大规模PV配置稳态性能的比较

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摘要

The concern regarding global warming and the advancement of power electronic devices have enabled the development of large-scale PVs (e.g. MW and GW range) in power systems. A number of internal layouts of AC collector grids are reported in the literature for the large-scale PV (LSPV). This study comprehensively assesses the static performance of various configurations of large-scale PVs. The PV systems are modeled in DIgSILENT Power Factory in detail. The widely used PV system configurations such as radial, star, ring, multi-ring, and multi-star have been considered in this study. From the results given in this paper, it is apparent that the PV system configuration has significant effects on fault current and active power injection. From the given results, it is evident that the control methods employed in PV systems also influence the steady state performance of the system.
机译:关于全球变暖和电力电子设备进步的关注,使电力系统中的大规模PVS(例如MW和GW范围)的发展能够开发。在大规模PV(LSPV)的文献中报告了AC收集器网格的许多内部布局。本研究全面评估了大规模PVS各种配置的静态性能。 PV系统详细用DigSilent Power Factory建模。在本研究中考虑了广泛使用的PV系统配置,如径向,星形,环,多环和多星级。从本文中给出的结果,显然光伏系统配置对故障电流和有源电力注入具有显着影响。从给定的结果,显然,PV系统中采用的控制方法也影响了系统的稳态性能。

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