Abstract

This paper presents a battery management system for lead-acid battery banks used in e-vehicle. It is incorporated with a diagnostic, measurement, and monitoring system for improving Lead-acid battery performance up to its efficiency and conservation. This matter calls the need for research on traction batteries as an insatiate demand exists for smaller vehicles with lightweight and portable equipment. It is extensive that batteries are strictly assessed and diagnosed before having them rented or exchanged for their condition to be highly maintained. The measurement of the battery’s State-of-Charge and State-of-Health is derived from its load voltage, no-load voltage, load current, and temperature during experimentation. The estimation of State-of-Charge, State-of-Health, Discharge Rate, and Remaining Useful Life are then derived by utilizing the concept of correlation and regression from the yielded real-time parameters recorded to the SD card module. This study paves the approach for the comprehensive and continuous progress of battery identification, monitoring, and diagnosis that is a thorough advancement in the E-Vehicle industry.

Details

Title
Arduino-based battery monitoring system with state of charge and remaining useful time estimation
Author
Melbern Rose C. Maltezo; Thio-ac, August C; Castillo, Anna May C; Gattu, Leandro E; Hernandez, Carmine Ella A; Jonarld John C. Labuan; Navales, Leonard F; Sopeña, Erickson C; Arago, Nilo M; Galido, Edgar A; Gilfred Allen M. Madrigal; Pascion, Cherry G; Lean Karlo S. Tolentino
Pages
432-444
Publication year
2021
Publication date
Mar 2021
Publisher
Accent Social and Welfare Society
ISSN
23945443
e-ISSN
23947454
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2530626704
Copyright
© 2021. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.