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Control Strategies for Load Compensation Using Instantaneous Symmetrical Component Theory Under Different Supply Voltages

机译:不同电源电压下基于瞬时对称分量理论的负载补偿控制策略

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摘要

In this paper, the theory of instantaneous symmetrical components is applied to explore various control strategies of load compensation, under different supply voltages. When the supply voltages are balanced and sinusoidal, all of these strategies converge to the same compensation characteristics. However, when the supply voltages are not balanced sinusoids, these control strategies result in different degrees of compensation in harmonics, power factor, neutral current, and compensator ratings. These control strategies are discussed in detail and a comparative study of their performance in terms of the rms value, total harmonic distortion, power factor of source currents, and compensator ratings is presented. Based on this study, it is possible to select the best strategy to meet the required load compensation characteristics for available supply voltages. A three-phase four-wire distribution system supplying an unbalanced and nonlinear load is considered for simulation study. The detailed simulation results using MATLAB are presented to support the proposed compensation strategies.
机译:在本文中,瞬时对称分量理论被用于探索在不同电源电压下的各种负载补偿控制策略。当电源电压平衡且为正弦波时,所有这些策略都收敛到相同的补偿特性。但是,当电源电压不是平衡的正弦波时,这些控制策略会导致对谐波,功率因数,中性点电流和补偿器额定值的补偿程度不同。对这些控制策略进行了详细讨论,并就均方根值,总谐波失真,源电流的功率因数和补偿器额定值对它们的性能进行了比较研究。根据这项研究,有可能选择最佳策略以满足可用电源电压所需的负载补偿特性。为了进行仿真研究,考虑了提供不平衡和非线性负载的三相四线配电系统。给出了使用MATLAB的详细仿真结果,以支持所提出的补偿策略。

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