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A Novel Control Strategy for Static Excitation System Based On Three-phase Current Source Converter

机译:基于三相电流源转换器的静电激励系统新型控制策略

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In modern power system, increasing pressures of system stability have become more and more serious. Because excitation systems are one of the most effective and economical ways contribute to effective control of voltage, increasing attention has been focused on the effects of excitation control. To satisfy the needs of modern power system, excitation system based on full-controlled devices is proposed to be used in synchronous generator excitation, and a new decoupled control technique is adopted to design a controller for current source converter based excitation system in this paper. Then, the modified Heffron-Phllips mathematical model of synchronous generator based on this new type of excitation system is discussed, which helps to explicate the principle of reactive power injector in the new excitation system and its design strategy. Also, the crucial function of reactive power injector that could provide more damping to the system is explained. The simulation results are presented to demonstrate the correctness and effectiveness of the proposed approaches, and its advantage over the conventional excitation system.
机译:在现代电力系统中,系统稳定的增加压力变得越来越严重。由于励磁系统是最有效和最经济的方法之一有助于有效控制电压,越来越多的关注一直集中在励磁控制的效果。为了满足现代电力系统的需要,基于全控设备的励磁系统,提出了在同步发电机的励磁被使用,并采用了新的去耦控制技术本文以设计为电流源转换器基于励磁系统的控制器。然后,讨论了基于这种新型励磁系统的同步发电机的改进的Heffron-Phllips数学模型,这有助于阐明新型激励系统中的无功功率喷射器的原理及其设计策略。而且,解释了可以提供更多阻尼对系统的无功功率喷射器的关键函数。提出了仿真结果以证明所提出的方法的正确性和有效性,以及其优于传统激励系统的优势。

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