TR
EN
Design of Energy Management System Base on lithium-ion Battery
Abstract
In today's world, green energy is becoming increasingly important. Due to air pollution, electric vehicles are currently the greatest option for the environment, personal and public transportation. Electric vehicles need batteries, which might be hazardous if they are not used in a safe atmosphere. The purpose of this work is to develop a battery management system (BMS) prototype that can track the voltages, currents, and cell balancing of each cell in a battery pack, as well as the temperature of the pack. The batteries in electric vehicles must always be kept under control within their operational safety area (SOA). To achieve the desired voltage and capacity, multiple battery cells are joined. A huge number of cells are necessary to provide the high voltage and capacity required for electric vehicles. This paper developed methods for monitoring each battery cell's functionality and Algorithms for detecting bad cells for replacement in the battery pack and displaying those cells condition on the monitor whether they are good or bad to notify the users, the current conditions of each cell for the user's next line of action. The experiment was carried out using STM32 microcontrollers.
Keywords
Destekleyen Kurum
Firat University
Kaynakça
- Cao, J., Schofield, N., and Emadi, A. (2008). Battery balancing methods: A comprehensive review. 2008 IEEE Vehicle Power and Propulsion Conference.
- Carriero, C. Battery Stack Monitor Maximizes Performance of Li-Ion Batteries in Hybrid and Electric Vehicles.
- Do Valle, B., Wentz, C. T., & Sarpeshkar, R. (2011). An area and power-efficient analog Li-ion battery charger circuit. IEEE Transactions on Biomedical Circuits and Systems, 5(2), 131-137.
- Neil Samaddar, N. S. K., R Jayapragash. (2020). Passive Cell Balancing of Li-Ion batteries used for Automotive Applications. Journal of Physics: Conference Series.
- Raijmakers, L., Danilov, D., Eichel, R.-A., & Notten, P. (2019). A review on various temperature-indication methods for Li-ion batteries. Applied energy, 240, 918-945.
- Stuart, T. A., & Zhu, W. (2011). Modularized battery management for large lithium ion cells. Journal of Power Sources, 196(1), 458-464.
- Yılmaz GÜVEN, E. C., 3Sıtkı KOCAOĞLU 4Harun GEZİCİ,5Eray YILMAZLAR. (2017). Understanding the Concept of Microcontroller Based Systems To Choose The Best Hardware For Applications. International Journal of Engineering And Science, 6(9), PP -38-44
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yayımlanma Tarihi
30 Kasım 2021
Gönderilme Tarihi
22 Ekim 2021
Kabul Tarihi
29 Ekim 2021
Yayımlandığı Sayı
Yıl 2021 Sayı: 28
APA
Saleh, Y. B., & Kürüm, H. (2021). Design of Energy Management System Base on lithium-ion Battery. Avrupa Bilim ve Teknoloji Dergisi, 28, 1144-1151. https://doi.org/10.31590/ejosat.1013311
Cited By
ELEKTRİKLİ ARAÇLAR İÇİN RÖLE ANAHTARLAMALI BATARYA YÖNETİM SİSTEMİNİN TASARLANMASI VE GERÇEKLEŞTİRİLMESİ
International Journal of 3D Printing Technologies and Digital Industry
https://doi.org/10.46519/ij3dptdi.1324753