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Frequency-dependent source and load impedances in power systems based on power electronic converters

机译:基于电力电子变换器的电力系统中与频率相关的源和负载阻抗

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摘要

Representations of power systems by frequency dependent impedance equivalents is an emerging technique in dynamic analyses of power systems including power electronic converters. The technique has been applied for decades in DC-power systems, and it has been recently adopted to map the impedances in AC systems. In the impedance-based stability analysis, the system is split into a source and load subsystem, both of which are represented by their respective frequency-dependent Norton and Thevenin equivalents. These equivalents can be obtained from analytic calculations, from numeric simulations, or from laboratory setup measurements. This paper will present a comparison of analysis and simulation-based techniques for obtaining the impedance equivalents. Different approaches for extraction of impedance equivalents are found in the literature but a rigorous comparison among the methodologies is still missing. Such comparison is relevant since non validated/verified impedance equivalents and extraction methods can lead to misleading conclusions. This work is attempting to bridge this gap by presenting a comparison of different simulation-based extraction methods and an analytical one.
机译:用频率相关的阻抗等效值表示电力系统是包括电力电子转换器在内的电力系统动态分析中的一种新兴技术。该技术已在直流电源系统中应用了数十年,最近已被采用来绘制交流系统中的阻抗。在基于阻抗的稳定性分析中,系统分为源和负载子系统,二者均由各自的频率相关诺顿和戴维宁等效项表示。这些等效项可以从分析计算,数值模拟或实验室设置测量中获得。本文将对获得阻抗等效值的基于分析和基于仿真的技术进行比较。在文献中发现了不同的提取阻抗等效项的方法,但是仍然缺少方法之间的严格比较。由于未经验证/验证的阻抗等效项和提取方法可能导致误导性结论,因此这种比较非常重要。这项工作试图通过比较不同的基于模拟的提取方法和分析方法来弥补这一差距。

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