防止不稳定Hopf分岔的非线性控制器研究

Sang-Ho Lee, Jong-keun Park, B. Lee
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引用次数: 8

摘要

通过研究负载母线上无功功率需求增加时系统行为的质变,研究了具有负载动力学的电力系统模型。负载是由异步电动机并联组成的恒功率恒阻抗负载。随着负荷的增加,系统的响应经历了亚临界和超临界Hopf、周期倍分岔和鞍节点分岔等多种分岔。后者可能导致系统电压崩溃。采用非线性控制器控制亚临界Hopf分岔,减轻电压崩溃,并应用于韩国电力公司系统,验证了该控制器的有效性。
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A study on the nonlinear controller to prevent unstable Hopf bifurcation
A model of a power system with load dynamics is studied by investigating qualitative changes in its behavior as the reactive power demand at a load bus is increased. The load is composed of induction motors in parallel with the constant power and constant impedance load. The response of the system undergoes various bifurcations such as subcritical and supercritical Hopf, period-doubling and saddle-node bifurcations as the load increased. The latter may lead the system to voltage collapse. A nonlinear controller is used to control the subcritical Hopf bifurcation and hence mitigate voltage collapse and is applied to KEPCO (Korean Electric Power Company) system to show its validity.
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