Power quality improvement by using photovoltaic based shunt active harmonic filter with Z-source inverter converter

B. V. Sai Thrinath, S. Prabhu, B. Meghya Nayak
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引用次数: 4

Abstract

Introduction. The major source of energy for a long time has been fossil fuels, however this has its drawbacks because of their scarcity, exhaustibility, and impossibility of reusing them. Presently, a shunt active harmonic filter-equipped two-stage solar photovoltaic system is showing off its performance shunt active harmonic filter. The global power system has been impacted by current harmonics during the most modern industrial revolution. Novelty. The proposed work is innovative, by adopting the hysteresis modulation mode with Z-source inverter to enhance the performance of the system. Furthermore, the shunt active harmonic filter also get assists in this system for better improvement in the quality of power. Purpose. By incorporating an impedance source inverter and a photovoltaic shunt active harmonic filter methods, harmonic issues are mitigated. Methods. Load compensation is one of the services that the shunt active harmonic filter offers, in addition to harmonic compensation, power factor correction, and many other functions. The current pulse width modulation voltage source inverter method is more expensive, requires two converters owing to its two-stage conversion, has significant switching losses, and has a low rate of the reaction. The new model, in which the voltage source inverter is substituted out for a Z-source inverter converter, has been developed in order to address the problems of the existing system. Results. Rather than using a hybrid of DC-DC and DC-AC converters, the suggested system uses a shunt active harmonic filter that is powered by a photovoltaic source using a Z-source inverter. Utilizing Z-source inverter helps to address the present issues with conventional configurations. Practical value. By using software MATLAB/Simulink, this photovoltaic shunt active harmonic filter technique is analyzed. Shunt active harmonic filter, which produces compensatory current from the reference current obtained as from main supply, is powered by the photovoltaic array.
采用z源逆变变换器的光伏并联有源谐波滤波器改善电能质量
介绍。长期以来,化石燃料一直是能源的主要来源,然而,由于它们的稀缺性、可耗竭性和不可再利用性,这有其缺点。目前,配用并联有源谐波滤波器的两级太阳能光伏系统正在展示其并联有源谐波滤波器的性能。在最现代的工业革命期间,全球电力系统受到电流谐波的影响。新鲜事物。提出的工作具有创新性,采用z源逆变器的迟滞调制方式来提高系统的性能。此外,并联有源谐波滤波器也在该系统中得到了帮助,以更好地改善电力质量。目的。通过结合阻抗源逆变器和光伏并联有源谐波滤波方法,减轻了谐波问题。方法。除谐波补偿、功率因数校正等功能外,负载补偿是并联有源谐波滤波器提供的服务之一。目前的脉宽调制电压源逆变器方法成本较高,由于其两级转换,需要两个变流器,开关损耗大,反应速率低。为了解决现有系统的问题,开发了以电压源逆变器代替z源逆变器的新模型。结果。建议的系统不是使用DC-DC和DC-AC转换器的混合,而是使用并联有源谐波滤波器,该滤波器由使用z源逆变器的光伏电源供电。利用z源逆变器有助于解决目前传统配置的问题。实用价值。利用MATLAB/Simulink软件对光伏并联有源谐波滤波技术进行了分析。并联有源谐波滤波器由光伏阵列供电,从主电源获得的参考电流中产生补偿电流。
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