商用光伏逆变器使用下垂控制提供电压支持服务的可行性和性能评估

P. Vergara, T. T. Mai, Andrew Burstein, P. Nguyen
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引用次数: 8

摘要

与配电系统连接的光伏发电系统的激增带来了许多运营挑战,其中过电压问题被认为是最关键的问题。在所有可用于处理这些过电压问题的策略中,考虑到其分布式和易于实现的特性,在光伏逆变器本地实施的策略似乎更有前途。本文介绍了商用光伏逆变器在EDS中缓解过电压事件的可行性和性能评估。为此,在商用逆变器中实现了一种基于有功和无功下垂的电压控制策略。为了评估光伏逆变器在吸收无功功率时的效率以及与配电网的相互作用,进行了实时电力硬件在环(PHIL)实验室测试。所得结果表明,无功功率的变化对光伏逆变器的效率影响不明显。此外,光伏逆变器也做出了相应的响应,根据所实施的电压控制策略,成功地提供了预期的电压支持服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility and Performance Assessment of Commercial PV Inverters Operating with Droop Control for Providing Voltage Support Services
The proliferation of PV generation systems connected to electrical distribution systems (EDSs) brings many operational challenges, and within them, over-voltage issues are regarded as the most critical. Among all the strategies available to handle these over-voltage issues, those implemented locally at the PV inverters seem to be the more promising, considering their distributed and easy-to-implement features. In this paper, the feasibility and performance assessment of a commercial PV inverter for mitigating over-voltage events in an EDS is presented. To do this, an active and reactive droop-based voltage control strategy is implemented in a commercial inverter. Realtime power hardware-in-the-loop (PHIL) laboratory tests were performed to assess the PV inverter's efficiency when absorbing reactive power, as well as its interaction with the distribution grid. According to the obtained results, the PV inverter's efficiency was not noticeably affected by the changes in reactive power. Additionally, the PV inverter responded accordingly, following the voltage control strategy implemented, providing successfully the expected voltage support services.
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