光伏系统传统和新型多电平逆变器拓扑中不对称源配置的综合研究

R. Raj, S. K. Dash, R. K. Dhatrak, R. Nema
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引用次数: 3

摘要

为了减少能源密集型产业对环境造成的危害,环保人士付出了巨大的努力。太阳能是最好的清洁替代能源。在遮阳条件下,阵列可以作为多电平逆变器的非对称直流电源,根据日照水平组成光伏板组作为直流电源。遮阳工况下,根据光伏板的日照水平集分配给多电平逆变器作为非对称源。随着对多电平逆变器研究的不断深入,人们提出了许多具有传统逆变器优势的拓扑结构。通过分配非对称信号源,可以降低MPPT的复杂度,也可以用更少的信号源合成更多的电平。本文的研究重点是对传统的和新型的交叉连接源MLI拓扑进行详尽的分析,并减少了用于光伏应用的非对称源配置的数量,因为所有交叉连接源MLI都不能用于非对称源配置。为了进行比较分析,实现了开关工作在基频的通用调制方案,并在MATLAB/Simulink平台上对结果进行了仿真。
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A comprehensive study on asymmetrical source configuration in conventional and novel multilevel inverter topologies for PV system
Environmentalist fraternity puts in myriad of great effort to mitigate environmental hazard caused by energy craving industries. Solar energy is the best clean alternative energy resource. During shading condition arrays can be treated as an asymmetrical DC source for multilevel inverter, based on insolation level, sets of PV panels are formed to act as DC source. During shading condition, based on insolation level sets of PV panels are allocated to multilevel inverter to as asymmetric source. With the growing research in multilevel inverter there are many topologies have been conceptualized which are having advantage over the conventional inverters. By allocating as asymmetric source the MPPT complexity can be reduced, also with lesser source higher number of levels can be synthesized. The focus of study presented here is toward the exhaustive analysis of conventional and novel cross connected source MLI topologies with reduced count for asymmetric source configuration for PV application, as all cross connected source MLI cannot be implemented for asymmetric source configuration. For the purpose of comparative analysis universal modulation scheme is implemented which enables the switches to operate at fundamental frequency and the results are simulated on MATLAB/Simulink platform.
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