Advanced photovoltaic inverter functionality verification using 500kw power hardware-in-loop (PHIL) complete system laboratory testing

B. Mather, M. Kromer, L. Casey
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引用次数: 12

Abstract

With the increasing penetration of distribution connected photovoltaic (PV) systems, more and more PV developers and utilities are interested in easing future PV interconnection concerns by mitigating some of the impacts of PV integration using advanced PV inverter controls and functions. This paper describes the testing of a 500kW PV inverter using Power Hardware-in-Loop (PHIL) testing techniques. The test setup is described and the results from testing the inverter in advanced functionality modes, not commonly used in currently interconnected PV systems, are presented. PV inverter operation under PHIL evaluation that emulated both the DC PV array connection and the AC distribution level grid connection are shown for constant power factor (PF) and constant reactive power (VAr) control modes. The evaluation of these modes was completed under varying degrees of modeled PV variability.
先进的光伏逆变器功能验证使用500kw电源硬件在环(PHIL)完整的系统实验室测试
随着分布式光伏(PV)系统的日益普及,越来越多的光伏开发商和公用事业公司有兴趣通过使用先进的光伏逆变器控制和功能来减轻光伏集成的一些影响,从而缓解未来的光伏互连问题。本文介绍了采用电源半在环测试技术对500kW光伏逆变器进行测试。描述了测试设置,并给出了在当前互联光伏系统中不常用的高级功能模式下测试逆变器的结果。给出了恒功率因数(PF)和恒无功功率(VAr)控制模式下,模拟直流光伏阵列连接和交流配电级电网连接的PHIL评估下PV逆变器的运行情况。这些模式的评估是在不同程度的PV变率下完成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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