A Novel High Voltage Gain Boost-Fly backForward Converter with Voltage Multiplier Cell for Solar Fed Induction Motor Drive Application

Abstract

A high voltage gain boost-fly back converter with voltage multiplier cell is proposed in this paper to avoid the exceptionally slight turn-off period and to decrease the current ripple. The voltage multiplier unit is composed of the secondary windings of the tied inductors, a series capacitor, and two diodes. In addition, the switch voltage stress is reduced due to the transformer function of the coupled inductors, which makes low-voltage-rated MOSFETs offered to reduce the conduction losses and increases the life span of the input source. Which makes the existing circuit simple to design and control, other active device is not required for the proposed converter fed induction motor drive using inverter unit. In rural areas non conventional energy sources plays a key role in power generation and transmission. Where the power transmission from conventional energy sources is difficult, huge electric drives and utility applications required, power converter construction has been introduced as a substitute in medium voltage and high power requirements using Non-Conventional Energy Systems. Further advantages of Nonconventional power source are light, dirt free and pollution free operation. By using inverter module in order to meet the required load demand, it is better to integrate the Non-Conventional energy power with the application of drive connected system by using inverter unit. An advanced power electronics converter is used to meet the high power load applications. The simulations results are conferred using Mat lab/Simulink.

Authors and Affiliations

Mahesh Babu Peddinti, Kamal Kiran Tata

Keywords

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  • EP ID EP21709
  • DOI -
  • Views 276
  • Downloads 3

How To Cite

Mahesh Babu Peddinti, Kamal Kiran Tata (2016). A Novel High Voltage Gain Boost-Fly backForward Converter with Voltage Multiplier Cell for Solar Fed Induction Motor Drive Application. International Journal for Research in Applied Science and Engineering Technology (IJRASET), 4(3), -. https://europub.co.uk/articles/-A-21709