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Single-Phase Shunt Active Power Filter Using Parabolic PWM for Current Control

机译:使用抛物线PWM进行电流控制的单相并联有源功率滤波器

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Shunt active power filter (SAPF) is the best solution to minimize the problem of harmonics in the power systems, but its effectiveness is strictly dependent on how quickly and accurately its control algorithms can perform. In this paper, parabolic carrier-based pulse-width modulation (PWM) method is applied for current control in a voltage-source converter (VSC) based single phase Shunt Active Power Filter. This technique employs a pair of parabolic PWM carriers (a positive one and a negative one) to determine the switching states of the two switches in a converter phase leg while limiting the current tracking error within nonlinear parabolic band. In addition, PI controller with self-charging technique to regulate the dc-bus voltage of the SAPF. The proposed single phase SAPF can compensate harmonic currents and improve power factor. In this paper, the design concept of the proposed SAPF is verified through Matlab-Simulink simulation study and the results obtained are discussed.
机译:分流有源电力滤波器(SAPF)是最佳解决方案,以最大限度地减少电力系统中谐波的问题,但其有效性严格依赖于其控制算法可以执行的快速和准确性。本文施加抛物线载波的脉冲宽度调制(PWM)方法用于电压源转换器(VSC)的单相分流有源电力滤波器中的电流控制。该技术采用一对抛物线PWM载波(正一个和负面),以确定转换器相位腿中的两个开关的切换状态,同时限制非线性抛物带内的电流跟踪误差。此外,PI控制器采用自充电技术来调节SAPF的直流母线电压。所提出的单相SAPF可以补偿谐波电流并提高功率因数。本文通过Matlab-Simulink仿真研究验证了所提出的SAPF的设计概念,并讨论了所获得的结果。

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