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Statistical data analysis for harmonic reduction in 3Ø -fragmented source using novel fuzzy digital logic switching technique

机译:使用新颖的模糊数字逻辑切换技术的统计数据分析,用于减少3Ø碎片源中的谐波

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Purpose The purpose of this paper is to analyze the Luo super boost converter coupled fragmented source inversion system (LC-FSIS) and the progress of a controller structure for energy stored. The inversion system is characterized by a diode arm structure and can be easily amassed into a conversion system for high/medium- power conversion systems. Design/methodology/approach The investigation is based on the practice of a simplified circuit established as common anode/common cathode, where all the diodes in each arm are connected to a renewable DC voltage source. In this proposed work, a novel fuzzy digital logic switching technique (FDLST) for three-phase fragmented source inversion (FSI) for enhancement in power excellence is measured to enterprise the novel fuzzy digital logic switching technique to authorize operative voltage utilization and enhanced harmonic spectrum. Findings Sequential circuit design using flip-flops is used in the analysis of fuzzy digital logic switching technique. Originality/value The three-phase fragmented source configuration is designed using a split DC source which is obtained from the Opto-electric source and is implemented using MOSFET. The procedure of novel FDLST reduces the Statistical Harmonic Reduction (SHR). Simulation and results are carried out to prove the dominance of designed FDLST.
机译:目的本文的目的是分析Luo超升压转换器耦合的零散源逆变系统(LC-FSIS)以及存储能量的控制器结构的进展。该反相系统的特征在于二极管臂结构,可以轻松地集成到高/中功率转换系统的转换系统中。设计/方法/方法这项研究基于简化电路的实践,该电路被建立为共阳极/共阴极,其中每个臂中的所有二极管都连接到可再生直流电压源。在这项拟议的工作中,测量了一种新型的模糊数字逻辑开关技术(FDLST),用于三相分段源逆变(FSI),以增强电源的卓越性,以对这种新颖的模糊数字逻辑开关技术进行认证,以授权工作电压利用和增强的谐波频谱。研究结果使用触发器的顺序电路设计被用于模糊数字逻辑开关技术的分析中。创意/价值三相分段式电源配置是使用分离的直流电源设计的,该电源是从光电电源获得的,并使用MOSFET来实现。新型FDLST的程序可降低统计谐波降低(SHR)。仿真和结果证明了所设计的FDLST的优势。

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