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Current harmonics compensation with three-phase four-wire shunt hybrid active power filter based on modified DQ theory

机译:基于改进的 D - Q 理论的三相四线并联混合有源电力滤波器的电流谐波补偿

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摘要

This study presents a – current control method with modified phase lock loop to generate the required reference current for shunt hybrid active filter (SHAPF) to improve the power quality. The performance of the proposed controller has been evaluated in terms of harmonic current mitigation and reactive power compensation under different grid conditions. Here, the passive elements of SHAPF have been used for compensation of lower order harmonics and the active part mitigates the higher order harmonics. Proportional–integral controller is considered here for DC-link voltage regulation of the inverter. For verification, the proposed controller of SHAPF is compared with the conventional SHAPF controllers. Extensive simulations of the proposed technique are carried out through MATLAB–SIMULINK environment. A laboratory prototype has been built on dSPACE1104 platform to verify the feasibility of the suggested SHAPF controller. From the simulation and experimental results, the robustness of the proposed SHAPF controller is proved.
机译:这项研究提出了一种具有改进型锁相环的电流控制方法,以产生并联混合有源滤波器(SHAPF)所需的参考电流,从而改善了电能质量。已针对不同电网条件下的谐波电流缓解和无功功率补偿对所提出控制器的性能进行了评估。在这里,SHAPF的无源元件已用于补偿低阶谐波,而有源部分则减轻了高阶谐波。在此考虑比例积分控制器来控制逆变器的直流母线电压。为了进行验证,将拟议的SHAPF控制器与常规SHAPF控制器进行了比较。通过MATLAB–SIMULINK环境对提出的技术进行了广泛的仿真。已在dSPACE1104平台上构建了实验室原型,以验证建议的SHAPF控制器的可行性。通过仿真和实验结果,证明了所提出的SHAPF控制器的鲁棒性。

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