Creative design of symmetric multilevel converter to enhance the circuits performance
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Multilevel converters have been under research and development for more than three decades and have found successful industrial application. However, this is still a technology under development, and many new contributions and new commercial topologies have been reported in the last few years. Multilevel converters are considered today as the state-of-the-art power-conversion systems for high-power and power-quality demanding applications. Multilevel inverter technology has emerged recently as a very important alternative in the area of high-power medium-voltage energy control. Small voltage step results in making the multilevel inverters withstand better voltage, fewer harmonics, high electromagnetic compatibility, reduced switching loss, and better power quality. The multilevel inverter is a practical power electronic configuration for industrial applications because of its higher quality in output waveform, higher efficiency and higher voltage capability. Multilevel voltage source converters are emerging as a new breed of power converter options for high-power applications. The multilevel voltage source converters typically synthesize the staircase voltage wave from several levels of DC capacitor voltages. In this project, the proposed inverter can generate all levels at the output associated with a lower number of circuit devices including switches and related gate driver circuits for each switch compared with the conventional symmetric cascaded converter, semi-cascaded converter and the recently introduced inverters.
Tags: 2015, Matlab, Power Electronics Projects


