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A Modified Least Mean Square Technique for Harmonic Elimination

机译:谐波消除的改进最小均方向技术

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摘要

A modified least mean square (MLMS) technique-based shunt active filter is proposed for selective harmonic elimination in a grid integrated nonlinear system applications. To provide a better and cost-effective solution, a reduced switch voltage source inverter (RSVSI) is used for a three-phase active filter operation. In addition to that, for better power quality, a MLMS technique is applied to separate the positive and negative sequence components from the non-linear load current. The MLMS technique improves its performance by estimating the appropriate current error through an adaptive step size selection. To validate the MATLAB/Simulink designed the proposed approach, different test conditions are presented. From the comparative analysis, the proposed system shows that the implementation of the novel technique leads to a substantial gain in the signal to noise ratio, by which the distribution system reduces the output error and significantly improved the convergence speed through an adaptive harmonic cancellation.
机译:提出了一种改进的最小均方(MLMS)技术的分流器有源滤波器,用于在网格集成非线性系统应用中选择性谐波消除。为了提供更好且经济效益的解决方案,可用于三相有源滤波器操作的减小的开关电压源逆变器(RSVSI)。除此之外,对于更好的功率质量,应用MLMS技术以将正和负序列组分与非线性负载电流分开。通过自适应步长选择估计适当的电流误差,MLMS技术通过估计适当的电流误差来提高其性能。为了验证Matlab / Simulink设计所提出的方法,提出了不同的测试条件。从比较分析中,所提出的系统表明,新颖技术的实现导致信噪比中的大量增益,通过自适应谐波消除,分配系统降低了输出误差并显着提高了收敛速度。

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