Modelling and design of new multilevel inverter for renewable energy systems with less number of unidirectional switches

IF 5.8 Q2 ENERGY & FUELS Energy and climate change Pub Date : 2023-01-14 DOI:10.1016/j.egycc.2023.100094
Kishor Thakre , Kanungo Barada Mohanty , Aditi Chatterjee
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Abstract

This paper presents, a unique topology for multilevel inverter based totally on cascaded connection of fundamental modules. The proposed circuit is able to operate for both symmetrical and asymmetric inverter, which can be used for fuel cell and photovoltaic systems. The magnitude of two dc sources in basic module can be adopted for symmetrical and asymmetrical structure. In the symmetrical multilevel inverter, the magnitude of dc source is identical for each module. However, the magnitude of dc source for basic modules is unequal in asymmetrical configuration and their magnitudes are achieved from binary and trinary progression. Comparison results prove that the proposed circuit requires a fewer number of components, reduced power loss and improve the efficiency of the inverter. Moreover, the total standing voltage on switches is acceptable compare to contemporary topologies. The proposed inverter can be implemented to low-medium power renewable energy systems. Simulation and experimental results for 11, 15 and 19-level inverters are analysed to validate the operation and performance of proposed topology.

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用于少单向开关可再生能源系统的新型多电平逆变器的建模与设计
本文提出了一种独特的基于基本模块级联连接的多电平逆变器拓扑结构。所提出的电路可以同时适用于对称和非对称逆变器,可用于燃料电池和光伏系统。对称和非对称结构均可采用基本模块中两个直流源的幅值。在对称多电平逆变器中,各模块直流电源的幅值是相同的。然而,在不对称结构下,基本模块直流电源的大小是不等的,它们的大小是由二进制和三进制获得的。对比结果证明,所提电路所需元件数量较少,降低了功率损耗,提高了逆变器的效率。此外,与当代拓扑结构相比,开关上的总电压是可以接受的。该逆变器可应用于中低功率可再生能源系统。对11,15和19电平逆变器的仿真和实验结果进行了分析,验证了所提出的拓扑结构的运行和性能。
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来源期刊
Energy and climate change
Energy and climate change Global and Planetary Change, Renewable Energy, Sustainability and the Environment, Management, Monitoring, Policy and Law
CiteScore
7.90
自引率
0.00%
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0
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