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Reduction in number of devices for symmetrical and asymmetrical multilevel inverters

机译:减少对称和非对称多电平逆变器的设备数量

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Multilevel inverter (MLI) is receiving remarkable recognition due to its reduced voltage stress across the power switches and low total harmonic distortion in output voltage. However, MLI incorporates large number of semiconductor switches and hence increases its complexity. In this study, new structures of symmetrical and asymmetrical MLI are proposed. The proposed structures offer reduced number of controlled switches, power diodes, capacitors and DC sources as compared with classical and recently proposed topologies in the line. Reduction of switch count, driver circuit and DC voltage sources reduces the size, cost, complexity and enhances overall performance. Moreover significant reduction in voltage stress across the switches can be achieved. A comparative analysis of proposed topologies with the classical topology and recently published topologies has been made in terms of controlled switches, power diodes, driver circuit requirement, DC voltage sources and blocking voltage. Multi-carrier pulse width modulation strategy is adopted for generating the switching pulses. The detailed simulation study of the proposed topology has been carried out using MATLAB/Simulink and feasibility of topology has been validated experimentally.
机译:由于多电平逆变器(MLI)降低了电源开关两端的电压应力,并且输出电压的总谐波失真较低,因此备受瞩目。但是,MLI包含大量的半导体开关,因此增加了其复杂性。在这项研究中,提出了对称和不对称MLI的新结构。与生产线中的经典拓扑和最近提出的拓扑相比,提出的结构减少了受控开关,功率二极管,电容器和直流电源的数量。减少开关数量,驱动器电路和直流电压源可减少尺寸,成本,复杂性并提高整体性能。而且,可以实现开关两端的电压应力的显着降低。在控制开关,功率二极管,驱动器电路要求,直流电压源和阻断电压方面,对建议的拓扑与经典拓扑和最近发布的拓扑进行了比较分析。采用多载波脉冲宽度调制策略来产生开关脉冲。使用MATLAB / Simulink对提出的拓扑进行了详细的仿真研究,并通过实验验证了拓扑的可行性。

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