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A novel symmetric/asymmetric multilevel current source inverter topology with lower number of components and lowest power rating of switches
Authors:Mohammad Reza Jannati Oskuee  Masoumeh Karimi  Gevork B Gharehpetian
Affiliation:1. Smart Distribution Grid Research Lab, Electrical Engineering Department, Azarbaijan Shahid Madani University, Tabriz, Iran;2. Electrical Engineering Department, Amirkabir University of Technology, Tehran, Iran
Abstract:A novel multilevel current source inverter (MCSI) configuration is introduced in this paper. The ability of handling with asymmetrical DC sources is one of the substantial advantages of the proposed inverter. In asymmetric mode, by appropriate selection of DC sources magnitude, a considerable increase can be obtained in the number of output levels without any manipulation on inverters’ hardware. In MCSIs, the number of required circuit devices is very important because the overall costs, circuit size, reliability and control complexity are dependent on them directly. The proposed inverter can generate all desired current levels using a lower number of elements. Besides, it is known that reduction of number of switches from conventional inverters imposes an undesired increase in total semiconductor device power (SDP). But, the total SDP of the proposed inverter is kept equal to conventional inverter. To validate the superiority of the proposed inverter, a full comparison is provided. Also, the computer simulation and experimental results are presented.
Keywords:Power conversion  multilevel current source inverters  symmetric inverter  asymmetric inverter  reduced number of circuit components  total semiconductor device power
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