Performance Analysis of Three-Phase Shunt Active Power Filter for Harmonic Mitigation

S. D. Yusuf, A. Loko, Jibrin Abdullahi, A. Abdulhamid
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Abstract

Aims: To carried out performance analysis of a shunt active power filter (SAPF) for harmonics mitigation. Study Design: Experimental design through simulation studies using P-Q Theory and proportional integral controller. Place and Duration of Study: Department of Physics, Nasarawa State University Keffi, main campus, Nigeria, between October 2020 and September 2021. Methodology: Primary and secondary data were obtained using AVO Digital Multimeter and manufacturers’ datasheets from Schneider electric website to capture required system parameters, SAPF was designed using a Voltage Source Inverter model to represent the Three-Phase source, and P-Q Theory with PI Control was used for reference current extraction. The SAPF was modeled, designed and simulated using MATLAB-Simulink and analyzed under different nonlinear load conditions and harmonic spectrum to achieve low Total Harmonic Distortion (THD). Results: The THD in the unbalanced system voltages before the application of SAPF was found to be 12.6%, 11.4% and 11.2%, while after the application of SAPF was 2.2%, 2.5% and 2.5% for phase voltages a, b and c respectively. The grid currents indicated THD of 27.2%, 30.9% and 31% before application of SAPF and 2.2%, 2.2% and 2.1% after application. Conclusion: The use of non-linear loads; has adverse effects on the quality of electric power as well as phase voltage and frequency waveforms. The use of SAPF is of vital importance in improving electric power quality for reliable power supply and quality service delivery.
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三相并联有源电力滤波器谐波抑制性能分析
目的:对并联型有源电力滤波器(SAPF)进行谐波抑制性能分析。研究设计:利用P-Q理论和比例积分控制器进行模拟研究,进行实验设计。学习地点和时间:2020年10月至2021年9月,尼日利亚纳萨拉瓦州立大学凯菲主校区物理系。方法:使用AVO数字万用表和施耐德电气网站上的制造商数据表获取一次和二次数据,以捕获所需的系统参数,使用电压源逆变器模型设计SAPF以表示三相源,并使用带PI控制的P-Q理论进行参考电流提取。利用MATLAB-Simulink对SAPF进行了建模、设计和仿真,并在不同的非线性载荷条件和谐波谱下进行了分析,以实现低总谐波失真(THD)。结果:应用SAPF前系统电压不平衡时的THD分别为12.6%、11.4%和11.2%,而应用SAPF后a、b、c相电压的THD分别为2.2%、2.5%和2.5%。栅格电流显示,施SAPF前THD分别为27.2%、30.9%和31%,施SAPF后THD分别为2.2%、2.2%和2.1%。结论:采用非线性荷载;对电能质量以及相位电压和频率波形都有不利影响。SAPF的使用对于提高电能质量,实现可靠的供电和优质的服务提供至关重要。
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