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Transient stability and voltage regulation enhancement via coordinated control of generator excitation and SVC

机译:通过发电机励磁和SVC的协调控制来提高瞬态稳定性和电压调节能力

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This paper focuses on designing the coordinated control of Static Var Compensator (SVC) and generator excitation to achieve both the transient stability and voltage regulation enhancement of power systems. With the help of feedback linearization technique and robust control theory, the nonlinearity of power system, the variation in the system structure, the parameter uncertainties of the plant and the interconnections between generator and SVC are taken into consideration. The resulting controller is capable of stabilizing the overall system and achieving simultaneous transient stability and voltage regulation enhancement under diverse operating conditions. Only local measurements are required. The performance of the controller is evaluated through numeric simulation. Simulation results show that both transient stability and voltage quality can be improved effectively regardless of the system operating points and fault locations.
机译:本文着重设计静态无功补偿器(SVC)和发电机励磁的协调控制,以实现电力系统的暂态稳定和电压调节增强。借助反馈线性化技术和鲁棒控制理论,考虑了电力系统的非线性,系统结构的变化,电厂的参数不确定性以及发电机与SVC之间的互连。最终的控制器能够稳定整个系统,并在不同的工作条件下实现同时的瞬态稳定性和电压调节增强。仅需要本地测量。控制器的性能通过数值模拟进行评估。仿真结果表明,无论系统工作点和故障位置如何,都可以有效地改善瞬态稳定性和电压质量。

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