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Parameters optimization of excitation system based on extended Heffron-Philips model

机译:基于扩展Heffron-Philips模型的励磁系统参数优化

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Control mode and control parameters of the excitation system play an important role in the security and stability operation of generator and even power grid. It is shown in some generator oscillation accidents without system fault in industrial enterprises that there have exciter stability problems in industrial power plants. In this paper, an extended Heffron-Philips model considering Var and power factor excitation system was established to analyze such the excitation system stability problem. And then with the system characteristics matrix system characteristics root will be carried out to study the principle factors on excitation system stability. A parameter optimal method for excitation system considering local power system small signal stability was proposed based on system root locus. The mechanism of abnormal oscillation without system fault occurred in actual industrial power grid was analyzed and the excitation control parameter was redesigned using the proposed method, which was verified by simulation results.
机译:励磁系统的控制方式和控制参数在发电机乃至电网的安全稳定运行中起着重要作用。在工业企业发生的一些无系统故障的发电机振荡事故中,表明工业发电厂存在励磁机稳定性问题。本文建立了一个考虑了无功和功率因数励磁系统的扩展Heffron-Philips模型来分析这种励磁系统的稳定性问题。然后以系统特征为基础,对系统特征根进行根研究,以研究影响励磁系统稳定性的主要因素。提出了一种基于系统根轨迹的考虑局部电力系统小信号稳定性的励磁系统参数优化方法。分析了实际工业电网中不发生系统故障的异常振荡的机理,并用所提出的方法重新设计了励磁控制参数,并通过仿真结果进行了验证。

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