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Systematic stability analysis, evaluation and testing process, and platform for grid-connected power electronic equipment

机译:系统稳定性分析,评估和测试过程,以及网格连接电力电子设备的平台

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摘要

The proportion of grid-connected power electronic equipment is already large enough to influence the dynamic characteristics of the modern power system. Ensuring the stability of grid-connected power electronic equipment in all relevant situations is one of the foundations for reliable power system operation. In contrast to conventional rotating machines, the stability of power electronic devices mostly depends on the applied control strategy, and a large diversity of different complex control strategies are in practical use. Also, the investigation of stability of such systems needs to take into account the non-linear behaviour of the power electronic equipment. These are the main reasons why the system behavior of grid-connected power electronic equipment cannot be reproduced satisfactorily when aplying a single method of stability analysis, evaluation and testing method. During the last years, faults which led to tripping of converters due to stability problems occurred frequently even though standardized fault compliance tests were performed on these converters. In this paper these stability issues are analyzed. Also, a three-dimensional stability analysis method is suggested in order to comprehensively cover system behavior. The three dimensions are the time/scale dimension, the equipment number dimension and the local or global range of the stability analysis dimension. Based on this three-dimensional framework, this paper proposes a stability evaluation as well as a test process applying a hardware-in-the-loop test concept. Through the verification and testing of the stability of the actual grid-connected power electronic equipment, the method proposed in this paper is verified for up-to-date equipment.
机译:网格连接电力电子设备的比例已经足够大,以影响现代电力系统的动态特性。确保所有相关情况中网格连接电力电子设备的稳定性是可靠的电力系统操作的基础之一。与传统的旋转机器相比,电力电子设备的稳定性主要取决于所应用的控制策略,并且大多数不同的复杂控制策略在实际使用中。此外,对这种系统的稳定性的调查需要考虑电力电子设备的非线性行为。这些是在稳定性分析,评估和测试方法的单一方法时,不能令人满意地再现网格连接电力电子设备的系统行为的主要原因。在过去几年中,即使在这些转换器上执行标准化故障符合测试,通常会发生由于稳定性问题导致转换器跳闸的故障。本文分析了这些稳定性问题。而且,建议旨在全面覆盖系统行为的三维稳定性分析方法。三个维度是时间/比级尺寸,设备数尺寸和稳定性分析尺寸的局部或全局范围。本文基于这一三维框架,提出了一种稳定性评估以及应用硬件循环测试概念的测试过程。通过验证和测试实际电网连接电力电子设备的稳定性,本文提出的方法验证了最新的设备。

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