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Regenerative Braking and Controlling of Hybrid Energy Storage System for an e-Vehicle

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Regenerative Braking and Controlling of Hybrid Energy Storage System for an e-Vehicle


Mr. Niliket Deshmukh | Mr. Shreejit Thorat | Mr. Vishvanath Javanjal | Ms. Nikita Chandurkar | Ms. Roshani Borakhade | Ms. Radhika Agnihotri



Mr. Niliket Deshmukh | Mr. Shreejit Thorat | Mr. Vishvanath Javanjal | Ms. Nikita Chandurkar | Ms. Roshani Borakhade | Ms. Radhika Agnihotri "Regenerative Braking and Controlling of Hybrid Energy Storage System for an e-Vehicle" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-4 | Issue-4, June 2020, pp.1463-1466, URL: https://www.ijtsrd.com/papers/ijtsrd31567.pdf

Electrical vehicle with its high efficiency, noiseless operation and effective elimination of toxic exhaust gases have gained attention this decade. In earlier times, when conventional vehicles were used a large amount of energy was wasted due to the friction between the wheels and brake pads. In regenerative braking instead of wasting the energy produced during braking, the excess energy is stored and reused with the help of ultra-capacitor based arrangement. Hence regenerative braking plays a vital role in electric vehicles. The motor is used as a generator to charge the vehicle's battery. However, the regenerated energy is not fully returned to the battery. Regenerative braking refers to a system in which the kinetic energy of the vehicle is stored temporarily, as an accumulative energy, during deceleration, and is reused as kinetic energy during acceleration it has an energy storage system comprise of the ultra-capacitor module and a lead Acid battery connected through a PWM Controller to a PMDC motor. These kinds of brakes allow batteries to be used for longer periods of time without the need to be plugged into an external charger. This allows efficient, high power transfer under regenerative braking and acceleration. The ultra-capacitor voltage is a key control parameter that affects the efficiency of the overall system.

introduction, block diagram, construction, working, expt. model, results, conclusion


IJTSRD31567
Volume-4 | Issue-4, June 2020
1463-1466
IJTSRD | www.ijtsrd.com | E-ISSN 2456-6470
Copyright © 2019 by author(s) and International Journal of Trend in Scientific Research and Development Journal. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (CC BY 4.0) (http://creativecommons.org/licenses/by/4.0)

International Journal of Trend in Scientific Research and Development - IJTSRD having online ISSN 2456-6470. IJTSRD is a leading Open Access, Peer-Reviewed International Journal which provides rapid publication of your research articles and aims to promote the theory and practice along with knowledge sharing between researchers, developers, engineers, students, and practitioners working in and around the world in many areas like Sciences, Technology, Innovation, Engineering, Agriculture, Management and many more and it is recommended by all Universities, review articles and short communications in all subjects. IJTSRD running an International Journal who are proving quality publication of peer reviewed and refereed international journals from diverse fields that emphasizes new research, development and their applications. IJTSRD provides an online access to exchange your research work, technical notes & surveying results among professionals throughout the world in e-journals. IJTSRD is a fastest growing and dynamic professional organization. The aim of this organization is to provide access not only to world class research resources, but through its professionals aim to bring in a significant transformation in the real of open access journals and online publishing.

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