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A new fuzzy-based current control strategy with fixed switching frequency for improving D-STATCOM performance

机译:一种新的基于模糊的电流控制策略,具有改进D-Statcom性能的固定开关频率

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摘要

In this study, a novel strategy for current control of distribution static compensator (D-STATCOM) based on fuzzy inference system (FIS) is proposed. The D-STATCOM is utilized for compensating a non-linear load drawbacks in power system by injecting compensating currents. The D-STATCOM is connected between the non-linear load and sinusoidal power source. The control system of the D-STATCOM is designed based on the instantaneous power theory. In addition, two other current control strategies consisting of hysteresis current control (HCC) and adaptive hysteresis current control (AHCC), are investigated and implemented. The results of the HCC and the AHCC are compared with the proposed strategy. Comparison between the obtained results showed that the proposed current control strategy is drastically superior to other strategies due to its less harmonic distortion, lower and constant switching frequency, lower transient current peak and more successful reactive power compensation. The effectiveness of the proposed strategy is verified by extensive simulations in MATLAB/Simulink environment.
机译:在这项研究中,提出了一种基于模糊推理系统(FIS)的分布静态补偿器(D-Statcom)的电流控制的新策略。 D-STATCOM用于通过注入补偿电流来补偿电力系统中的非线性负载缺陷。 D-Statcom连接在非线性负载和正弦电源之间。基于瞬时电力理论设计了D-Statcom的控制系统。另外,研究并实施了由滞后电流控制(HCC)和自适应滞后电流控制(AHCC)组成的另外两个电流控制策略。将HCC和AHCC的结果与提出的策略进行比较。所得结果之间的比较表明,由于其谐波失真,较低和恒定的开关频率,较低的瞬态电流峰值和更成功的无功功率补偿,所提出的电流控制策略由于其较小的谐波失真,较低和恒定的开关和更成功的无功补偿而急剧优于其他策略。通过Matlab / Simulink环境的广泛模拟验证了所提出的策略的有效性。

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