Modular Fusion Solid State Pulsed Power Generator with Reduced Ripple Content
V. Tamilselvan1, S. Siva Subramanian2

1V. Tamilselvan, Professor, Department of Electrical and Electronics Engineering, Karpagam College of Engineering, Coimbatore (Tamil Nadu), India.

2S. Siva Subramanian, Professor, Department of Electrical and Electronics Engineering, Karpagam College of Engineering, Coimbatore (Tamil Nadu), India.

Manuscript received on 06 September 2019 | Revised Manuscript received on 15 September 2019 | Manuscript Published on 26 October 2019 | PP: 371-376 | Volume-8 Issue-11S2 September 2019 | Retrieval Number: K105909811S219/2019©BEIESP | DOI: 10.35940/ijitee.K1059.09811S219

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Abstract: A main objective of to the project is the Modular fusion solid state pulsed power generator with ripple content. Recently, a pulsed power structures have determined substantial packages. On behalf of to the reason, using a pulsed strength turbines that similarly to responding to a dreams of to the individual. This assignment proposes the converter that’s the aggregate of to the Marx topologies besides sturdy state voltage multipliers to in a conjunction with remarks loop controller. It is the capable of to the generating excessive voltage pulses with diverse amplitudes at distinctive frequencies to in which is the modular besides flexible. A resonant circuit used to in a this shape can reduce a strain on switching element besides growth an out-put to the voltage even as presenting the 0 modern-day switching on the behalf the a whole bridge converter. A controller is the operated with voltage oriented feedback structure controlling a duty ratio of to the power electronic devices. A Proposed Voltage Oriented Control method on the behalf the pulsed generator to reduce a switching loss besides to improve a performance. A system simulation has been done using Matlab/Simulink software. PI controller has been designed along with Pulse Width Modulation scheme to control a system.

Keywords: Pulsed Power Generator, PI Controller, Ripples.
Scope of the Article: Waveform Optimization for Wireless Power Transfer