Araştırma Makalesi

Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter

Cilt: 8 Sayı: 3 30 Eylül 2021
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EN

Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter

Öz

Battery energy storage system (BESS) is evolving to be a major part of the modern power systems due to high controllability and simple implementation. In this paper, the general structure of the BESS and its components are reviewed focusing mainly on the battery storage unit in hierarchal order from cell to pack in terms of modeling, design, and wiring. The effect of the weakest cell and cell-to-cell variations are also mentioned in perspective of the battery charging and their effects on the wiring topology. Moreover, cascaded h-bridge (CHB) converter topology is also discussed and compared with other power electronic interfaces in terms of storage capacity and switching elements. It is shown that CHB converter topology can be utilized in BESS to minimize the number of series connected batteries. Finally, a 1 MWh 34.5 kV grid-connected BESS based on CHB converter topology is designed and simulated to test the capabilities of the BESS to supply active power to the power grid under closed-loop control.

Anahtar Kelimeler

Kaynakça

  1. Bae, A., Choi, S., Kim, J., Won, C., and Jung, Y. 2014. LiFePO4 dynamic battery modeling for battery simulator, 2014 IEEE International Conference on Industrial Technology (ICIT), 26 Feb.-1 March 2014, Busan, Korea (South), pp. 354-358.
  2. Alshehri, J., Alzahrani, A., and Khalid, M., 2019. Voltage and Frequency Control of Microgrids With Distributed Generations and Battery Energy Storage, 2019 8th International Conference on Renewable Energy Research and Applications (ICRERA), 3-6 Nov, Brasov, Romania, pp. 381-385.
  3. Miller, N., Manz, D., Roedel, J., Marken, P., and Kronbeck, E., 2010. Utility scale Battery Energy Storage Systems. IEEE PES General Meeting, 25-29 July, Minneapolis, MN, USA, pp. 1-7.
  4. Zhou, X., Lin, Y., and Ma, Y., 2015. The overview of energy storage technology, 2015 IEEE International Conference on Mechatronics and Automation (ICMA), 2-5 Aug, Beijing, China, pp. 43-48.
  5. Sarah, A., and Ray II, W., and Bayne, S., (2014). Comparison study of the controllers for grid connected battery system, 27-28 Oct, Ronkonkoma, NY, USA, p1-6.
  6. Subburaj, A. S., and Bayne, S. B., 2014. Analysis of dual polarization battery model for grid applications, 2014 IEEE 36th International Telecommunications Energy Conference (INTELEC), 28 Sept-2 Oct, Vancouver, BC, Canada, Pp. 1-7.
  7. Moo, C., Ng, K. S., and Hsieh, Y., June 2008. Parallel Operation of Battery Power Modules, in IEEE Transactions on Energy Conversion, vol. 23, no. 2. pp. 701-707.
  8. Moo, C., Ng, K. S., and Hu, J. 2009. Operation of battery power modules with series output, 2009 IEEE International Conference on Industrial Technology, 10-13 Feb, Churchill, VIC, Australia, pp. 1-6.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Elektrik Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Eylül 2021

Gönderilme Tarihi

24 Mayıs 2021

Kabul Tarihi

7 Eylül 2021

Yayımlandığı Sayı

Yıl 2021 Cilt: 8 Sayı: 3

Kaynak Göster

APA
Al-khdhairi, Y. M. S., & Vural, A. M. (2021). Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter. International Journal of Energy Applications and Technologies, 8(3), 98-112. https://doi.org/10.31593/ijeat.941900
AMA
1.Al-khdhairi YMS, Vural AM. Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter. International Journal of Energy Applications and Technologies. 2021;8(3):98-112. doi:10.31593/ijeat.941900
Chicago
Al-khdhairi, Yousif Mustafa Sadeq, ve Ahmet Mete Vural. 2021. “Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter”. International Journal of Energy Applications and Technologies 8 (3): 98-112. https://doi.org/10.31593/ijeat.941900.
EndNote
Al-khdhairi YMS, Vural AM (01 Eylül 2021) Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter. International Journal of Energy Applications and Technologies 8 3 98–112.
IEEE
[1]Y. M. S. Al-khdhairi ve A. M. Vural, “Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter”, International Journal of Energy Applications and Technologies, c. 8, sy 3, ss. 98–112, Eyl. 2021, doi: 10.31593/ijeat.941900.
ISNAD
Al-khdhairi, Yousif Mustafa Sadeq - Vural, Ahmet Mete. “Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter”. International Journal of Energy Applications and Technologies 8/3 (01 Eylül 2021): 98-112. https://doi.org/10.31593/ijeat.941900.
JAMA
1.Al-khdhairi YMS, Vural AM. Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter. International Journal of Energy Applications and Technologies. 2021;8:98–112.
MLA
Al-khdhairi, Yousif Mustafa Sadeq, ve Ahmet Mete Vural. “Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter”. International Journal of Energy Applications and Technologies, c. 8, sy 3, Eylül 2021, ss. 98-112, doi:10.31593/ijeat.941900.
Vancouver
1.Yousif Mustafa Sadeq Al-khdhairi, Ahmet Mete Vural. Study on the modeling and simulation of a grid-connected battery energy storage system based on cascaded h-bridge converter. International Journal of Energy Applications and Technologies. 01 Eylül 2021;8(3):98-112. doi:10.31593/ijeat.941900

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