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A New Approach to Reduce the Non-Linear Characteristics of a Stressed Power System by Using the Normal Form Technique in the Control Design of the Excitation System

机译:一种新的励磁系统控制设计中的正常形式技术来减少压力电力系统的非线性特性

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In this paper, a new approach is presented to reduce the nonlinear characteristics of a stressed power system by reducing its second-order modal interaction through retuning some parameters of the generator excitation system. In order to determine the second-order modal interaction of the system, a new index on nonlinearity is developed using normal form theory. Using the proposed index of nonlinearity, a sensitivity function is formed to indicate the most effective excitation system parameters in the nonlinear behavior of the system. These dominant parameters are tuned to reduce the second-order modal interaction of the system and to reduce the index on nonlinearity. The efficiency of the proposed method is validated using a four-machine two-area test system. Simulation results show that a proper tuning of the excitation controller can reduce the second-order modal interaction of the system and can even improve the transient stability margin of the network.
机译:在本文中,提出了一种通过降低发电机励磁系统的一些参数来降低其二阶模态相互作用来降低压力电力系统的非线性特性。为了确定系统的二阶模态相互作用,使用正常形式理论开发出非线性的新指标。使用所提出的非线性指数,形成灵敏度函数以指示系统的非线性行为中最有效的激励系统参数。这些主导参数被调整以减少系统的二阶模态交互,并降低非线性的索引。使用四台机两区域测试系统验证了所提出的方法的效率。仿真结果表明,励磁控制器的适当调谐可以降低系统的二阶模态交互,甚至可以提高网络的瞬态稳定余量。

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