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Comparative analysis of stability limitations in weak grid-connected synchronous generator, VSC, and DFIG systems considering the power flow control dynamics

机译:考虑潮流控制动态的弱电网同步发电机,VSC和DFIG系统稳定性局限性的比较分析

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摘要

In the conventional power systems, the synchronous generators (SGs) are known to suffer stability issues under weak grid conditions. Recently, similar problems are observed in the inverter interfaced systems, including the full voltage source converter (VSC)-based high-voltage DC, and partial VSC interfaced doubly fed induction generator (DFIG) systems, but the root causes of these instabilities in reality are not completely understood yet. This study aims to provide a possible unified explanation for the origin of these instability issues. With the experiences of SG's instability mechanism, for the VSC and DFIG systems, the dynamics of outer power flow controls are mainly focused, and the reduced-order models are parallelly presented first. Then, centralised around the active power control loops of these systems for analysis, it is found that an open-loop zero will move to the right half plane with grid strength decrease. The borders for the occurrence of right-half-plane zeros (RHPZs) are analytically derived. Further, a general interpretation regarding these identified RHPZs' limitations, including the adverse phase lag effect on stability and the attraction effect on the stability boundary, is illustrated. In addition, a uniform explanation for the origin of the RHPZs in these systems is also provided. Time-domain simulations are conducted to validate the analysis.
机译:在常规电力系统中,已知同步发电机(SG)在弱电网条件下会遇到稳定性问题。最近,在逆变器接口系统中观察到了类似的问题,包括基于全电压源转换器(VSC)的高压DC和部分VSC接口的双馈感应发电机(DFIG)系统,但实际上这些不稳定的根本原因是尚未完全了解。这项研究旨在为这些不稳定问题的根源提供可能的统一解释。根据SG不稳定机制的经验,对于VSC和DFIG系统,主要关注外部潮流控制的动力学,并且首先并行提出降阶模型。然后,围绕这些系统的有功功率控制环进行分析,发现随着电网强度的降低,开环零将移至右半平面。通过分析得出右半平面零(RHPZ)的边界。此外,说明了有关这些已确定的RHPZ限制的一般解释,包括对稳定性的不利相位滞后效应和对稳定性边界的吸引效应。此外,还提供了有关这些系统中RHPZ来源的统一说明。进行时域仿真以验证分析。

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