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Simulation and Analysis of Single-Phase Cascaded H-Bridge Multilevel Inverter for Solar PV Application

机译:用于太阳能光伏应用的单相级联H桥多晶逆变器仿真与分析

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In this work, symmetrical and asymmetrical topologies of cascaded multilevel inverter (CMLI) are presented for a photovoltaic (PV) system which can be interconnected to grid along with suitable modulation technique. The solar system is interconnected with grid through a cascaded H-Bridge (CHB) inverter by considering both types, i.e. equal and unequal DC sources, called symmetric and asymmetric topology, respectively. The comparison between both the topologies is also described which is the main deciding factor of the suitability for practical applications. The simulation analysis is carried out in MATLAB/SIMULINK platform, and further, their THD level is compared. Considering same number of switches, asymmetric topology is better because it has more voltage levels as compared to symmetrical topology. It is observed from the analysis carried out that asymmetric topology is capable to provide better sinusoidal voltage and current with the use of suitable controllers.
机译:在该工作中,级联的多级逆变器(CMLI)的对称和不对称拓扑显示为光伏(PV)系统,其可以与电网相互连接,以及合适的调制技术。 通过考虑两种类型,即相当于和不合称的DC源,称为对称和非对称拓扑,将太阳系通过级联H桥(CHB)逆变器互连。 还描述了两种拓扑之间的比较,这是实际应用适用性的主要决定因素。 仿真分析在Matlab / Simulink平台中进行,然后,比较它们的THD级别。 考虑到相同数量的开关,不对称拓扑较好,因为与对称拓扑相比它具有更多的电压电平。 从分析中观察到的,不对称拓扑能够通过使用合适的控制器提供更好的正弦电压和电流。

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