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首页> 外文期刊>Journal of power electronics >Hybrid Fuzzy Pi-Control Scheme for Quasi Multi-Pulse Interline Power Flow Controllers Including the P-Q Decoupling Feature
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Hybrid Fuzzy Pi-Control Scheme for Quasi Multi-Pulse Interline Power Flow Controllers Including the P-Q Decoupling Feature

机译:包含P-Q解耦功能的拟多脉冲线间潮流控制器的混合模糊Pi控制方案

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摘要

Real and reactive power flows on a transmission line interact inherently. This situation degrades power flow controller performance when independent real and reactive power flow regulation is required. In this study, a quasi multi-pulse interline power flow controller (IPFC), consisting of eight six-pulse voltage source converters (VSC) switched at the fundamental frequency is proposed to control real and reactive power flows dynamically on a transmission line in response to a sequence of set-point changes formed by unit-step reference values. It is shown that the proposed hybrid fuzzy-PI commanded IPFC shows better decoupling performance than the parameter optimized PI controllers with analytically calculated feed-forward gains for decoupling. Comparative simulation studies are carried out on a 4-machine 4-bus test power system through a number of case studies. While only the fuzzy inference of the proposed control scheme has been modeled in MATLAB, the power system, converter power circuit, control and calculation blocks have been simulated in PSCAD/EMTDC by interfacing these two packages on-line.
机译:传输线上的有功功率和无功功率固有地相互作用。当需要独立的有功功率和无功功率调节时,这种情况会降低功率控制器的性能。在这项研究中,提出了一个准多脉冲线间功率潮流控制器(IPFC),该控制器由八个在基频处切换的六脉冲电压源转换器(VSC)组成,以动态地控制传输线上的有功和无功功率流,以响应由单位步长参考值形成的一系列设定点变化。结果表明,与具有解析计算的前馈增益的参数优化PI控制器相比,所提出的混合模糊PI指令IPFC具有更好的解耦性能。通过大量案例研究,在4机4总线测试电源系统上进行了比较仿真研究。虽然在MATLAB中仅对提出的控制方案的模糊推理进行了建模,但通过在线连接这两个程序包,在PSCAD / EMTDC中已对电源系统,转换器电源电路,控制和计算模块进行了仿真。

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