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Harmonic Stability in Power Electronic-Based Power Systems: Concept, Modeling, and Analysis

机译:电力电子电力系统的谐波稳定性:概念,建模和分析

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摘要

The large-scale integration of power electronicbased systems poses new challenges to the stability and power quality of modern power grids. The wide timescale and frequency-coupling dynamics of electronic power converters tend to bring in harmonic instability in the form of resonances or abnormal harmonics in a wide frequency range. This paper provides a systematic analysis of harmonic stability in the future power-electronic-based power systems. The basic concept and phenomena of harmonic stability are elaborated first. It is pointed out that the harmonic stability is a breed of small-signal stability problems, featuring the waveform distortions at the frequencies above and below the fundamental frequency of the system. The linearized models of converters and system analysis methods are then discussed. It reveals that the linearized models of ac-dc converters can be generalized to the harmonic transfer function, which is mathematically derived from linear time-periodic system theory. Lastly, future challenges on the system modeling and analysis of harmonic stability in large-scale power electronic based power grids are summarized.
机译:电力电子系统的大规模集成对现代电网的稳定性和电能质量提出了新的挑战。电子功率转换器的宽时标和频率耦合动力学趋向于在宽频率范围内以谐振或异常谐波的形式带来谐波不稳定性。本文提供了对未来基于电力电子的电力系统谐波稳定性的系统分析。首先阐述了谐波稳定的基本概念和现象。要指出的是,谐波稳定性是小信号稳定性问题的一种,其特征在于系统基频以上和以下频率处的波形失真。然后讨论了转换器的线性化模型和系统分析方法。结果表明,AC-DC转换器的线性化模型可以推广到谐波传递函数,该函数是从线性时间周期系统理论上数学推导得到的。最后,总结了在大型电力电子电网中系统建模和谐波稳定性分析方面的未来挑战。

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