Downloads: 152
Research Paper | Electrical Engineering | India | Volume 5 Issue 2, February 2016
An Improved Efficiency of Integrated Inverter / Converter for Dual Mode EV/HEV Application
A. S. S. Veerendra Babu [2] | P. Bala Krishna | R. Venkatesh [5]
Abstract: The objective of this paper is to improve the efficiency of EV/HEV under heavy load conditions. The proposed integrated circuit allows the permanent magnet synchronous motor to operate in motor mode or acts as boost inductors of the boost converter and thereby boosting the output torque coupled to the same transmission system or dc-link voltage of the inverter connected to the output of the integrated circuit. In motor mode, the proposed integrated circuit acts as an inverter and it becomes a boost-type boost converter, while using the motor windings as the boost inductors to boost the converter output voltage. . The proposed control technique is to use interleaved control to significantly reduce the current ripple and thereby reducing the losses and thermal stress under heavy-load condition. The performance of the proposed circuit is available by using simulation of MATLAB/SIMULINK software
Keywords: Hybrid Electric Vehicles HEV, Boost Converter, Electric Vehicles EV, Internal Combustion Engine ICE
Edition: Volume 5 Issue 2, February 2016,
Pages: 170 - 174
How to Cite this Article?
A. S. S. Veerendra Babu, P. Bala Krishna, R. Venkatesh, "An Improved Efficiency of Integrated Inverter / Converter for Dual Mode EV/HEV Application", International Journal of Science and Research (IJSR), Volume 5 Issue 2, February 2016, pp. 170-174, https://www.ijsr.net/get_abstract.php?paper_id=NOV161074
How to Share this Article?
Similar Articles with Keyword 'Boost Converter'
Downloads: 103
Research Paper, Electrical Engineering, India, Volume 5 Issue 5, May 2016
Pages: 1680 - 1684Power Quality Issues in Variable Speed Wind Turbine and Application of STATCOM
Rakshita R. Upadhyay | Ch. V. Sivakumar
Downloads: 111
Research Paper, Electrical Engineering, India, Volume 5 Issue 9, September 2016
Pages: 1339 - 1345A Direct Step Down and Step Up AC-AC Converter with Inverting and Non-Inverting Operations
Blessy Augustine | Rabiya Rasheed [2]