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A New Control Technique Based on the Instantaneous Active Current Applied to Shunt Hybrid Power Filters

机译:一种基于瞬时有源电流应用于分流混合动力滤波器的新控制技术

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This paper presents a new indirect current control technique based on the instantaneous active current applied to shunt hybrid power filters (SHPF) to compensate harmonics and the reactive power of a nonlinear load. This method uses a residual signal constructed from the comparison between the supply currents and their desired values. To evaluate its performance, this method is compared to the direct current control technique based on the synchronous frame method. The switch patterns are greatly reduced. The ripples in the supply currents shapes are eliminated and the proportional gain K_(p) is automatically set. While its determination is a hard task using direct methods. A three-phase current controlled voltage source inverter feeds the primary windings of the transformer. The SHPF damps the resonant frequency created by source inductance and power factor correction capacitors to a non-critical value. Simulation results using Power System Blockset Toolbox PSB of Matlab show the performance of the proposed control algorithm with a reduced switch AF circuit and its capability to compensate for harmonics and reactive power.
机译:本文提出了一种基于施加到分流混合电力滤波器(SHPF)的瞬时电流的新型间接电流控制技术,以补偿非线性负载的谐波和无功功率。该方法使用从电源电流和所需值之间的比较构成的残差信号。为了评估其性能,将该方法与基于同步帧方法的直流控制技术进行比较。开关图案大大降低。消除了供电电流形状中的波纹,并且自动设置比例增益K_(P)。虽然其确定是使用直接方法的努力任务。三相电流控制电压源逆变器馈送变压器的初级绕组。 SHPF阻尼通过源电感和功率因数校正电容器产生的谐振频率到非临界值。 MATLAB电源系统块组件箱PSB的仿真结果表明了提出的控制算法具有减少的开关AF电路及其能力来补偿谐波和无功功率的能力。

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