Paper Title

“Review of Improvement of Regenerative Breaking Battery Power Storage of Dynamic Electric Bike Using Fuzzy Logic Algorithm”

Article Identifiers

Registration ID: IJNRD_223482

Published ID: IJNRD2406207

DOI: Click Here to Get

Authors

Mr. Ritesh Ratnakar. Ijmulwar , Mrs. Heena S. Sheikh

Keywords

Electrical Vehicles (EV), Brushless DC motor, Super-capacitor, Regenerative Braking

Abstract

The most trending invention of this decade is electrical vehicles (EV) which are widely utilized around the world. The driving distance of the vehicle is strictly restricted up to energy storage of inbuilt battery. The important feature of EV is able to recover the energy during braking. The operation of brushless DC motor is to be controlled to generate enough amount of force during braking and this braking energy is being recovered as much as possible and finally, the energy can be stored in Super-capacitor or in batteries and then, it is being reused to increase the driving force, driving distance and system efficiency. Researches are being carried out in the field of batteries on the lines of: firstly, development of new energy efficient battery like Li-ion and secondly, with the help of energy sources like fuel cell, Super capacitor and high-power batteries, increase the level the energy density in batteries. Each complementary energy sources having its own advantages and drawbacks but among alternatives, Super capacitor will assist the vehicle battery during peak power demand effectively. To achieve the overall Maximum efficiency in regenerative braking system, it needs to make a decision on the power split between the battery and the Super-capacitor/ Batteries. Therefore, the proposed a strategy will increase the characteristic of EV during regenerative braking and also verified experimentally.

How To Cite (APA)

Mr. Ritesh Ratnakar. Ijmulwar & Mrs. Heena S. Sheikh (June-2024). “Review of Improvement of Regenerative Breaking Battery Power Storage of Dynamic Electric Bike Using Fuzzy Logic Algorithm”. INTERNATIONAL JOURNAL OF NOVEL RESEARCH AND DEVELOPMENT, 9(6), c37-c42. https://ijnrd.org/papers/IJNRD2406207.pdf

Issue

Volume 9 Issue 6, June-2024

Pages : c37-c42

Other Publication Details

Paper Reg. ID: IJNRD_223482

Published Paper Id: IJNRD2406207

Downloads: 000121986

Research Area: Electrical Engineering 

Country: Chandrapur, Maharashtra, India

Published Paper PDF: https://ijnrd.org/papers/IJNRD2406207.pdf

Published Paper URL: https://ijnrd.org/viewpaperforall?paper=IJNRD2406207

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Journal Name: INTERNATIONAL JOURNAL OF NOVEL RESEARCH AND DEVELOPMENT(IJNRD)

ISSN: 2456-4184 | IMPACT FACTOR: 8.76 Calculated By Google Scholar | ESTD YEAR: 2016

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Call For Paper

Call For Paper - Volume 10 | Issue 10 | October 2025

IJNRD is a Scholarly Open Access, Peer-reviewed, and Refereed Journal with a High Impact Factor of 8.76 (calculated by Google Scholar & Semantic Scholar | AI-Powered Research Tool). It is a Multidisciplinary, Monthly, Low-Cost Journal that follows UGC CARE 2025 Peer-Reviewed Journal Policy norms, Scopus journal standards, and Transparent Peer Review practices to ensure quality and credibility. IJNRD provides indexing in all major databases & metadata repositories, a citation generator, and Digital Object Identifier (DOI) for every published article with full open-access visibility.

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Important Dates for Current issue

Paper Submission Open For: October 2025

Current Issue: Volume 10 | Issue 10 | October 2025

Impact Factor: 8.76

Last Date for Paper Submission: Till 31-Oct-2025

Notification of Review Result: Within 1-2 Days after Submitting paper.

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