Design and FPGA Implementation of Dual Self-Tuning Filter based Controller for Single Phase Shunt Active Filter

Pavana Gurudas Bhat, Disha R. Shetty, Jayasankar V N, V. U
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引用次数: 3

Abstract

The use of power electronic devices injects harmonics into the grid causing serious power quality problems. To limit the current harmonics in accordance with IEEE Std 519, Shunt Active Power Filter (SAPF) may be used. Instantaneous power theory (pq theory) is widely used for current harmonic mitigation in SAPF. The Low Pass Filter (LPF) is used in pq theory based controllers for fundamental component extraction. The drawbacks of LPF are additional phase delay at the fundamental frequency and presence of lower frequency oscillations. A dual Self-Tuning Filter based controller is proposed to overcome these limitations. The simulation studies under different system conditions are carried out using MATLAB/SIMULINK to verify the effectiveness of the proposed method. The hardware cosimulation using ZedBoard Zynq-7000 Development Board is carried out to validate the simulation results.
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基于双自调谐滤波器的单相并联有源滤波器控制器设计与FPGA实现
电力电子设备的使用向电网注入谐波,造成严重的电能质量问题。为了根据IEEE标准519限制电流谐波,可以使用并联有源电源滤波器(SAPF)。瞬时功率理论(pq理论)被广泛用于SAPF的电流谐波抑制。低通滤波器(LPF)用于基于pq理论的控制器中进行基元提取。LPF的缺点是在基频处存在额外的相位延迟和低频振荡。为了克服这些限制,提出了一种基于双自整定滤波器的控制器。利用MATLAB/SIMULINK进行了不同系统条件下的仿真研究,验证了所提方法的有效性。利用ZedBoard Zynq-7000开发板进行硬件协同仿真,验证仿真结果。
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