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High Performance Harmonic Isolation and Load Voltage Regulation of the Three-phase Series Active Filter Utilizing the Waveform Reconstruction Method

机译:高性能谐波隔离和负载电压调节三相串联有源滤波器利用波形重建方法

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This paper develops the Waveform Reconstruction Method (WRM) for high accuracy and bandwidth signal decomposition of voltage harmonic type (V-type) three-phase diode rectifier load voltage into its harmonic and fundamental components, which are utilized in the Series Active Filter (SAF) control algorithms. The SAF compensated system utilizing WRM provides high performance load harmonic voltage isolation and load voltage regulation at steady-state and during transients compared to the system utilizing the synchronous reference frame based signal decomposition. Additionally, reducing the line current sampling delay in the discrete-time implementation enhances the stability of the SAF. The simulations and experimental studies of a 10 kW three-phase SAF compensated system prove the theory.
机译:本文开发了用于高精度和带宽信号分解的波形重建方法(WRM),电压谐波型(V型)三相二极管整流负载电压进入其谐波和基本组件,用于串联有源滤波器(SAF )控制算法。利用WRM的SAF补偿系统在利用基于同步参考帧的信号分解的系统相比,在稳态和瞬态期间提供高性能负载谐波电压隔离和负载电压调节。另外,减少离散时间实现中的线电流采样延迟,增强了SAF的稳定性。 10 kW三相SAF补偿系统的仿真和实验研究证明了该理论。

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