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Dynamic Instability of a Power System Caused by Aggregation of Induction Motor Loads

机译:感应电动机负载的聚集导致电力系统的动态不稳定性

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摘要

Aggregated loads of induction motors are often used in the study of power system dynamic stability. This paper reports the finding that aggregation of the same or similar induction motors may likely cause the dynamic instability. Theoretical analysis is presented in the paper to show that a group of N same induction motors in parallel connection is equivalent to N dynamic independent subsystems. Oscillation modes of one of the equivalent subsystems are affected by the number of induction motors. Hence, when the number of induction motors increases, it is possible that the oscillation modes of the group of induction motors may move toward the right on the complex plane, leading to the dynamic instability in the worst case. The analysis explains why aggregation of induction motors may possibly bring about the risk of power system dynamic instability. In this paper, case studies of an example power system with a cluster of induction motors are presented. Results of modal computation and simulation demonstrate that when the number of induction motors increases, aggregation of the same or similar induction motors leads to the dynamic voltage instability and growing low-frequency electromechanical power oscillations in the test case.
机译:感应电动机的总负载通常用于电力系统动态稳定性的研究中。本文报告发现,相同或相似感应电动机的聚集可能会引起动态不稳定。本文的理论分析表明,一组并联的N个相同的感应电动机等效于N个动态独立子系统。等效子系统之一的振荡模式受感应电动机数量的影响。因此,当感应电动机的数量增加时,这组感应电动机的振荡模式有可能在复杂平面上向右移动,从而在最坏的情况下导致动态不稳定。该分析解释了为什么感应电动机的聚集可能会带来电力系统动态不稳定的风险。在本文中,将对带有感应电动机的示例电源系统进行案例研究。模态计算和仿真结果表明,当感应电动机的数量增加时,相同或相似感应电动机的聚集会导致动态电压不稳定性,并在测试案例中导致低频机电功率振荡增加。

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