基于PMU的电力系统动态等效建模鲁棒性增强方法

Peng Wang, Zhenyuan Zhang, Qi Huang, Weijen Lee
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引用次数: 3

摘要

随着广域测量技术的成熟,基于PMU的动态等效建模方法(PDM)在大型电力系统建模中得到了广泛的应用。然而,传统的“基于事件的”PDM等效模型可能面临严重的鲁棒性问题:尽管衍生等效模型在其来源的记录事件下显示出良好的系统行为再现能力,但它们可能无法很好地应对其他可能的干扰。为了提高等效模型的鲁棒性,提出了一种新的电力系统动态等效建模方法。基于相干性识别结果,将等效系统内的发电机聚合成不同的相干子群,并用多机等效模型表示。关键参数的选择可以缩小识别参数的尺度,避免了等效模型的多重解。此外,为了充分考虑不同系统事件下PMU的测量结果,提出了一种多目标参数辨识算法。此外,还进行了混合动力学仿真,使每个等效子模型可以单独识别。最后,在中国实际电网中验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approach to Enhance the Robustness on PMU based Power System Dynamic Equivalent Modeling
Due to the maturity of wide area measurement technology, PMU based Dynamic Equivalent Modeling Method (PDM) has been wildly used in large scale power system modeling. However, traditional “event-based” PDM equivalent model may face serious robustness issues: though derived equivalent models show the good ability on reproduction of the system behaviors under recorded events where they derived from, they may not work well for other possible disturbances. In this paper, to improve the robustness of equivalent model, a novel method on dynamic equivalent modeling of power system is proposed. Based on the result of coherency identification, generators inside the equivalent system can be aggregated into different coherent subgroups and represented by multi-machine equivalent model. Key parameter selection, which can shrink the scale of identified parameters, is designed to avoid multiple solutions of the equivalent model. Moreover, a multiobjective parameter identification algorithm is developed to fully consider the PMU measurements in different system events. In addition, hybrid dynamic simulation is performed so that each equivalent sub-model can be identified separately. Finally, the efficiency of the proposed method is verified in an actual power grids in China.
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