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Reduction of Circuit Devices in Developed Symmetrical/Asymmetrical Multilevel Converters

机译:减少已开发的对称/非对称多电平转换器中的电路装置

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摘要

In this paper, a developed configuration for multilevel voltage source inverters (MVSIs) is proposed. The proposed topology can be used as symmetric and asymmetric inverters. In asymmetric mode, DC source magnitudes are defined in a way that the number of output levels gets more than the case when the symmetrical DC sources are applied. In this regard, to calculate the required magnitudes of DC voltage sources several different solutions are proposed. In multilevel inverters, the overall costs, circuit size and installation area, complexity of control scheme and reliability are directly dependent on the number of circuit devices needed. The provided comparison study among suggested inverter in all defined solutions, cascaded H-bridge (CHB) and recently proposed converters, validates that the proposed inverter uses reduced number of circuit devices. The given simulation results confirm the feasibility of the proposed modular structure. Also, to approve the practicability of the proposed inverter, a prototype of the proposed topology has been implemented. Finally, simulation and experimental results are compared with each other and the provided comparison shows that the obtained results are in good agreements.
机译:本文提出了一种用于多电平电压源逆变器(MVSI)的开发配置。所提出的拓扑可以用作对称和非对称逆变器。在非对称模式下,以施加对称直流电源时输出电平数量更多的方式定义直流电源幅度。在这方面,为了计算所需的直流电压源幅度,提出了几种不同的解决方案。在多电平逆变器中,总成本,电路尺寸和安装面积,控制方案的复杂性以及可靠性直接取决于所需电路装置的数量。在所有定义的解决方案中建议的逆变器,级联H桥(CHB)和最近提出的转换器之间进行的比较研究,验证了提出的逆变器使用的电路设备数量减少了。给出的仿真结果证实了所提出的模块化结构的可行性。另外,为了批准所提出的逆变器的实用性,已经实现了所提出的拓扑的原型。最后,将仿真结果与实验结果进行了比较,结果表明所获得的结果吻合良好。

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