Analysis and simulation of cascaded H-bridge multi level inverter using level-shift PWM technique
Abhishek Kumar Ranjan, Devara Vijaya Bhaskar, Nibedita Parida
Abstract
Abhishek Kumar Ranjan, Devara Vijaya Bhaskar, Nibedita Parida
Abstract
For medium voltage and high power applications, multilevel inverter has been accepted as a better alternative; as it has better waveform quality, low stresses on switching devices and better performance. Among the various topology of multi level inverter cascaded H-bridge inverter has been found as more reliable, easy to implement and better performance. This paper analyses the performance of cascaded H-bridge inverter for 5-level, 7-level, 9-level, 11-level, 13-level and 21-level for single phase and also three phases. The performance of mentioned level has been analyzed through simulation using level-shift PWM technique i.e. for all the levels using In Phase Disposition, Phase Opposition Disposition and Alternate Phase Opposition Disposition. A comparison between total harmonic distortions at modulating frequency 1 KHz and 4 KHz for all levels has been done for various methods of level shifted PWM techniques.
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For medium voltage and high power applications, multilevel inverter has been accepted as a better alternative; as it has better waveform quality, low stresses on switching devices and better performance. Among the various topology of multi level inverter cascaded H-bridge inverter has been found as more reliable, easy to implement and better performance. This paper analyses the performance of cascaded H-bridge inverter for 5-level, 7-level, 9-level, 11-level, 13-level and 21-level for single phase and also three phases. The performance of mentioned level has been analyzed through simulation using level-shift PWM technique i.e. for all the levels using In Phase Disposition, Phase Opposition Disposition and Alternate Phase Opposition Disposition. A comparison between total harmonic distortions at modulating frequency 1 KHz and 4 KHz for all levels has been done for various methods of level shifted PWM techniques.
Key concepts: Pulse-width modulation, Inverter, H bridge, Waveform, Electronic engineering, Total harmonic distortion, Voltage, Power quality