Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllers

The extensive use of vehicles based on IC engines has contributed to serious effects on the environment and accelerated depletion of fossil fuel reserves which has led to a rapid increment in fuel cost over the past few decades. By consideration of these undesirable effects, the automotive industry...

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Main Authors: Santhosh Jonnalagadda, Rajagiri Anil Kumar, Morri Prashanth
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/85/e3sconf_icmed2021_01072.pdf
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author Santhosh Jonnalagadda
Rajagiri Anil Kumar
Morri Prashanth
author_facet Santhosh Jonnalagadda
Rajagiri Anil Kumar
Morri Prashanth
author_sort Santhosh Jonnalagadda
collection DOAJ
description The extensive use of vehicles based on IC engines has contributed to serious effects on the environment and accelerated depletion of fossil fuel reserves which has led to a rapid increment in fuel cost over the past few decades. By consideration of these undesirable effects, the automotive industry will move towards the electrified drivetrains for obtaining zero-emission and higher efficiency. In electrified vehicles, the drive is coupled entirely partially by e-motors powered by energy storage sources. The choice of the simple structured HESS topology is to make a better understanding of power flow and controlling circuits based on limits of existing energy storage sources and contribute to the electrification of the drive. The main intention of this paper, the excessive current which is required by the motor is to draw from the ultra-capacitor without burdening of battery. This will improve the efficiency of the storage sources and also smooth running of the drive. This document examines the feasibility and capacity of a HESS which integrates the battery and ultra-capacitor units and controlling through PI and Fuzzy controllers.
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spelling doaj.art-54d5c108d32b4a64bfe1b77f8a9ab9572022-12-21T21:26:27ZengEDP SciencesE3S Web of Conferences2267-12422021-01-013090107210.1051/e3sconf/202130901072e3sconf_icmed2021_01072Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllersSanthosh Jonnalagadda0Rajagiri Anil Kumar1Morri Prashanth2Department of EEE, GRIETDepartment of EEE, GRIETDepartment of EEE, GRIETThe extensive use of vehicles based on IC engines has contributed to serious effects on the environment and accelerated depletion of fossil fuel reserves which has led to a rapid increment in fuel cost over the past few decades. By consideration of these undesirable effects, the automotive industry will move towards the electrified drivetrains for obtaining zero-emission and higher efficiency. In electrified vehicles, the drive is coupled entirely partially by e-motors powered by energy storage sources. The choice of the simple structured HESS topology is to make a better understanding of power flow and controlling circuits based on limits of existing energy storage sources and contribute to the electrification of the drive. The main intention of this paper, the excessive current which is required by the motor is to draw from the ultra-capacitor without burdening of battery. This will improve the efficiency of the storage sources and also smooth running of the drive. This document examines the feasibility and capacity of a HESS which integrates the battery and ultra-capacitor units and controlling through PI and Fuzzy controllers.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/85/e3sconf_icmed2021_01072.pdf
spellingShingle Santhosh Jonnalagadda
Rajagiri Anil Kumar
Morri Prashanth
Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllers
E3S Web of Conferences
title Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllers
title_full Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllers
title_fullStr Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllers
title_full_unstemmed Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllers
title_short Battery, Ultra-capacitor based Hybrid Energy Storage System (HESS) for EV applications with PI and Fuzzy logic controllers
title_sort battery ultra capacitor based hybrid energy storage system hess for ev applications with pi and fuzzy logic controllers
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/85/e3sconf_icmed2021_01072.pdf
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