静、动负荷交直流混合微电网小信号稳定性分析

Moudud Ahmed, A. Vahidnia, Lasantha Gunaruwan Meegahapola, M. Datta
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引用次数: 8

摘要

大多数对交流和直流微电网进行的稳定性研究都只研究了微电网中静态负载的稳定性。动态负荷的电压和频率依赖性对微电网的稳定性影响很大。因此,在动态负荷存在的情况下,电压和频率的微小变化会对微电网的稳定性产生重大影响。因此,考虑微电网的动负荷进行稳定性研究是十分必要的。此外,如果微电网以独立模式运行,稳定性问题将变得更加严重。本文利用MATLAB/Simulink开发的状态空间和动态仿真模型,对静态和动态负载下交直流混合微电网的小信号稳定性进行了表征。本文对影响微网稳定性的动态负荷关键参数进行了研究。随后,通过特征值分析和时域仿真研究了交直流混合微电网的小信号稳定性。本征灵敏度分析表明,感应电机转子电阻对交直流混合微电网的临界模式的参与最大。此外,由于动态负载的存在,电压源变换器的控制器增益可能需要重新调整。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small signal stability analysis of a hybrid AC/DC microgrid with static and dynamic loads
Majority of the stability studies conducted on AC and DC microgrids have investigated stability with only static loads in the microgrid. Dynamic loads significantly influence the stability of mirogrids due to their voltage and frequency dependent nature. Therefore, small variation in voltage and frequency can make significant impact on the stability of the microgrid with the presence of dynamic loads. Thus, it is imperative to consider the dynamic loads in the microgrid for stability studies. Moreover, stability issues become more severe if the microgrid is operated in the standalone mode. This paper characterises the small-signal stability of a hybrid AC/DC microgrid with static and dynamic loads using state-space and dynamic simulation models developed in MATLAB/Simulink. This study investigates the critical parameters of the dynamic load which significantly affect the stability of the microgrid. Subsequently, eigenvalue analysis and time-domain simulations have been carried out to investigate the small-signal stability of the hybrid AC/DC microgrid. Eigen-sensitivity analysis has revealed that induction machine rotor resistance has the highest participation on the critical modes of the hybrid AC/DC microgrid. Additionally, the controller gains of the voltage source converters may require re-tuning due to the presence of dynamic loads.
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