Araştırma Makalesi

AKÜ YÖNETİM SİSTEMİNİN GELİŞTİRİLMESİ VE CANBUS VERİ TRAFİĞİNİN İNCELENMESİ

Cilt: 10 Sayı: 4 30 Aralık 2022
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AKÜ YÖNETİM SİSTEMİNİN GELİŞTİRİLMESİ VE CANBUS VERİ TRAFİĞİNİN İNCELENMESİ

Öz

Recently, the use and production of electric vehicles has been increasing. In parallel with this increase, electric vehicle technologies are constantly developing. With the increase in the use of electric vehicles, the importance of BYS (Battery Management System), which controls the charge and discharge cycles of batteries, is increasing and researches are being carried out to increase their efficiency. Batteries with high energy density used in electric vehicles need to be kept under constant control. A large number of cells are used to obtain the high voltage and capacity required by electric vehicles. Each cell needs a battery management system to keep it under control. CAN (Controller Area Network) is used in BYS communication with the vehicle. In this study, the data traffic on the CAN line of the BYS used in today's electric vehicles has been analyzed. In this analysis, instant data of the battery pack is sent over the CAN line. The system includes BYS, charger and VCU (Vehicle Control Unit). An experimental setup with BYS, VCU and charger nodes was prepared and line load calculation was made on this experimental setup. Three different methods were used in the line load calculation process and the relationship of these methods with each other was compared. Different CAN speeds were used in the test stages and line load analysis was performed by changing the message sending frequencies. According to the data obtained from the prepared experimental setup, it was seen that the load of the messages on the CAN line was between 1.97% and 19.58%.

Anahtar Kelimeler

Kaynakça

  1. Lawrenz, W. (1997). CAN System Engineering: From Theory to Practical Applications. Springer, New York.
  2. Bosch, (1991). CAN Specification, Version 2.0, Robert Bosch GmbH, Stuttgart.
  3. Farsi, M., Ratcliff, K., Babosa M., “An overview of Controller Area Network”, Computing & Control Engineering Journal June, 113-120, 1999.
  4. Marino, P., Dominguez, M., A., Poza, F., Machoda, F., “Fieldbuses Education Using Training System Designed With State-Of-The- Art Technologies”, 18th International Conference on Systems Engineering, 2005
  5. Kiencke, U. (1994). Controller Area Network - From Concept to Reality. In Proceedings of 1st International CAN Conference, Can in Automation (CIA). 04-07 October, Erlangen, 11-20.
  6. Özçelik, İ., Ertürk, İ. & Ekiz, H. (2001). CAN – Eternet Uyumlu Köprü Tasarımı ve Uygulaması. EEBM 9. Ulusal Kongresi. 17-22 Eylül, İzmit, 264-268.
  7. Tindell, K., Hanssmon, H. & Wellings, A.J. (1994). Analysing Real-Time Communications: Controller Area Network (CAN). 1994 Proceedings Real-Time Systems Symposium. 07-09 December, San Juan, PR, USA, 259-263.
  8. Natale M.D., Scheduling the CAN BUS with Earliest DeadlineTechniques, 21st IEEE Real-Time Systems Symposium, 2000, Proceedings., 259-268.

Ayrıntılar

Birincil Dil

Türkçe

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Aralık 2022

Gönderilme Tarihi

5 Ağustos 2022

Kabul Tarihi

23 Eylül 2022

Yayımlandığı Sayı

Yıl 2022 Cilt: 10 Sayı: 4

Kaynak Göster

APA
Koyuncu, M. A., & Taşdelen, K. (2022). AKÜ YÖNETİM SİSTEMİNİN GELİŞTİRİLMESİ VE CANBUS VERİ TRAFİĞİNİN İNCELENMESİ. Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım ve Teknoloji, 10(4), 884-894. https://doi.org/10.29109/gujsc.1156841

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