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A Model-Based Approach for Small-Signal Stability Assessment of Unbalanced Power Systems

机译:基于模型的不平衡电力系统小信号稳定性评估方法

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In this paper, a modeling technique for small-signal stability assessment of unbalanced power systems is presented. Since power distribution systems are inherently unbalanced, due to its lines and loads characteristics, and the penetration of distributed generation into these systems is increasing nowadays, such a tool is needed in order to ensure a secure and reliable operation of these systems. The main contribution of this paper is the development of a phasor-based model for the study of dynamic phenomena in unbalanced power systems. Using an assumption on the net torque of the generator, it is possible to precisely define an equilibrium point for the phasor model of the system, thus enabling its linearization around this point, and, consequently, its eigenvalue/eigenvector analysis for small-signal stability assessment. The modeling technique presented here was compared to the dynamic behavior observed in ATP simulations and the results show that, for the generator and controller models used, the proposed modeling approach is adequate and yields reliable and precise results.
机译:本文提出了一种用于不平衡电力系统小信号稳定性评估的建模技术。由于配电系统由于其线路和负载特性而固有地不平衡,并且如今分布式发电渗透到这些系统中的情况正在增加,因此需要这种工具来确保这些系统的安全可靠运行。本文的主要贡献是开发了一种基于相量的模型,用于研究不平衡电力系统中的动态现象。使用发电机净转矩的假设,可以为系统的相量模型精确定义一个平衡点,从而使其在该点附近线性化,从而实现特征值/特征向量分析,以实现小信号稳定性评定。将此处介绍的建模技术与ATP仿真中观察到的动态行为进行了比较,结果表明,对于所使用的发电机和控制器模型,所提出的建模方法是足够的,并且可以得出可靠而精确的结果。

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