考虑复相量域无限频率耦合效应的等效电路建模

Yuancan Xu, Yandong Chen, Wenhua Wu, Shixiang Cao, Fei Yang
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引用次数: 1

摘要

本文提出了一种复值相域导纳建模技术,用于考虑无限阶频率耦合的单相并网电压源变换器系统的等效电路建模和动态稳定性分析。其基础是旋转相量域导纳模型的对称结构,其复值导纳分量可以捕捉频率耦合效应。然后,通过详细分析耦合现象的机理,建立了考虑IOFC的等效电路模型(ECM)。所提出的ECM模型提供了一个深刻的物理识别来说明IOFC效应。此外,该模型为单输入单输出(SISO),便于测量和分析。发现高阶耦合频率分量由低阶耦合频率分量产生,其影响随阶数的增加而减小,为模型阶数截断提供了指导。进一步分析了栅格刚度、锁相环带宽和参考电流的影响。这些结果表明,当电网刚度较弱、锁相环带宽较宽或参考电流较大时,系统更容易出现不稳定,频率耦合现象更容易观察到。最后,通过实验验证了所建立的模型和动力稳定性分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Equivalent Circuit Modeling Considered Infinite Frequencies Coupling Effects in Complex Phasor Domain
This article presents a complex-valued phasor domain admittance modeling technique for the equivalent circuit modeling and dynamic stability analysis of a single-phase grid-tied voltage-source converters system considering infinite-order frequency-coupling (IOFC). The basis is the symmetric structure of admittance model in rotating phasor domain, whose complex-valued admittance component can capture the frequency coupling effect. Thereafter, the equivalent circuit model (ECM) considering IOFC is established by analyzing the mechanism of coupling phenomena in detail. The proposed ECM model provides an insightful physical recognition to illustrate IOFC effect. Besides, the model is single-input and single-output (SISO), which facilitates measurement and analysis. It is found that high-order coupled frequency components are produced by low-order coupled frequency components, and its impact declines with the increase of order, which provides instruction for model order truncation. Further on, the influences of grid stiffness, phase-locked-loop bandwidth, and reference current are analyzed. These results show that the system is more likely to be unstable and the frequency coupling phenomenon is easier to be observed when the system is under weaker grid stiffness, wider PLL bandwidth, or larger reference current. Finally, experiments verified the established model and dynamic stability analysis.
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