三相电力电子系统同步参考系阻抗测量与稳定性评估的HiL平台

Qilin Peng, Jiajun Yang, Sandro Guenter, G. Buticchi, N. Tan, P. Wheeler
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引用次数: 0

摘要

近几十年来,随着可再生能源发电普及率的提高,电力电子变流器在现代电力系统中越来越占主导地位。三相并网变流器提供了公用电网和分布式电源(如光伏(PV),风力涡轮机,储能系统等)之间的接口。这些转换器的同步总是通过同步参考帧(SRF)来实现。因此,基于阻抗的SRF稳定性分析成为评估系统稳定性和优化变换器设计的有力工具。然而,精确测量系统阻抗在实践中可能是一项艰巨的任务,特别是对于大容量转换器。本文提出了一种用于SRF阻抗测量的半在环(HiL)平台。因此,测量了有源前端(AFE)转换器的阻抗,并与解析小信号模型进行了比较。结果表明,采用所提出的HiL装置进行测量提供了一种强大而准确的阻抗测量解决方案,无需进行完整的硬件测试。
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HiL Platform for Synchronous Reference Frame Impedance Measurement and Stability Assessment of Three-Phase Power Electronics Systems
As the penetration rate of renewable generation has risen in the last decades, power electronics converters are becoming more and more dominant in modern electrical power systems. Three-phase grid-connected converters provide an interface between the utility grid and distributed power sources such as photovoltaic (PV), wind turbines, energy storage systems, etc. Synchronization of these converters are always achieved through Synchronous Reference Frame (SRF). Thus, impedance-based stability analysis under SRF becomes a powerful tool to assess the system stability and optimize the converter design. However, precise measurement of the system impedance can be a difficult task in practice, particularly for high-capacity converters. In this paper, a hardware-in-the-loop (HiL) platform is proposed for measurement of the SRF impedance. Consequently, the impedance of an Active Front End (AFE) converter is measured and compared with the analytical small-signal model. The results show that measurement with the proposed HiL setup provides a powerful and accurate solution for impedance measurement that precludes the need for complete hardware testing.
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