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Nonlinear adaptive excitation controller design for multimachine power systems

机译:多机动力系统的非线性自适应励磁控制器设计

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This paper presents a nonlinear adaptive excitation control scheme to enhance the dynamic stability of multimachine power systems. The proposed controller is designed based on the adaptive backstepping technique where the mechanical power input to the generators and the damping coefficient of each generator are considered as unknown. These unknown quantities are estimated through the adaption laws. The adaption laws are obtained from the formulation of Lyapunov functions which guarantee the convergence of different physical quantities of generators such as the relative speed, terminal voltage, and electrical power output. The proposed scheme is evaluated by applying a three-phase short-circuit fault at one of the key transmission lines in an 11-bus test power system and compared with an existing backstepping controller and conventional power system stabilizer (CPSS). Simulation results show that the proposed scheme is much more effective than existing controllers.
机译:本文提出了一种非线性自适应励磁控制方案,以提高多机电力系统的动态稳定性。所提出的控制器是基于自适应反步技术设计的,其中输入到发电机的机械功率和每个发电机的阻尼系数被认为是未知的。这些未知数量是通过适应定律估算的。自适应律是从李雅普诺夫函数的公式中获得的,这些函数保证了发电机不同物理量(例如相对速度,端电压和电功率输出)的收敛。通过在11总线测试电力系统中的关键传输线之一上施加三相短路故障,并与现有的反推控制器和常规电力系统稳定器(CPSS)进行比较,对提出的方案进行了评估。仿真结果表明,所提出的方案比现有控制器有效得多。

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