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Effects of Cell and Module Configuration on Battery System in Electric Vehicles

Yıl 2018, Cilt: 4 Sayı: 4, 143 - 152, 19.02.2019

Öz

Battery pack is one of the most important powertrain
components in Electric Vehicles (EV). The performance of battery pack directly
affects vehicle’s range and performance. Configuration of cells and modules
inside battery pack also plays an important role on battery performance and
safety. In this study, the work deals with an electric vehicle that has 400 V
DC bus voltage and 78 kWh total energy content. When the vehicle’s battery is
designed, the criteria to be focused on are evaluated for three different
configurations of given cell quantity. Thus, optimum design solution can be
achieved. According to calculations, cost analysis, total electrical power loss
and most efficient solution scenarios (alternatives) are determined for these
three different configurations afterwards system complexity is optimized. In
the first configuration, 8 series modules are selected which have 12s6p cell
configuration. In the second configuration, there are 16 modules with 8s2p
module combination. Each module is equipped with 12s3p cell configuration. Last
configuration has 16 modules in series where each module has 6s6p cell
configuration. Advantages and disadvantages of the systems are
revealed as a result of the calculations made for each configuration.

Kaynakça

  • Kennedy B, Patterson D and Camilleri S, 2000, Use of lithium-ion batteries in electric vehicles, Journal of Power Sources, 90 156-162.
  • Shiau C S N, Samaras C, Hauffe R and Michalek J J, 2009, Impact of battery waight and charging patterns on the economic and environmental benefits of plug-in hybrid vehicles, Energy Policy, 37 2653-2663.
  • Smith K, Wang C Y, 2006, Power and thermal characterization of a lithium-ion battery pack for hybrid-electric vehicles, Journal of Power Sources, 160 662-673.
  • Kiziel R, Sabbah R, Selman J R, Al-Hallaj S, 2009, An alternative cooling system to enhance the safety of Li-ion battery packs, Journal of Power Sources, 194 1105-1112.
  • Zubi G, Lopez R D, Carvalho M, Pasaoglu G, “The lithium-ion battery: State of the art and futureperspectives”, Renewable and Sustainable Energy Reviews, vol. 89, pp. 292-308, 2018.
  • Danzer, M.A., Liebau V., Maglia F., “Aging of lithiumion batteries for electric vehicles”, Energy, pp. 359-387, 2015.
  • ISO Standard 6469-3, Electrically propelled road vehicles -- Safety specifications -- Part 3: Protection of persons against electric shock, International Organization for Standardization, 2011.
  • Kim J, Shin J, Chun C, Cho B H, “Stable configuration of a li-Ion series battery pack based on a screening process for improved voltage/SOC balancing”, IEEE Transactions on Power Electronics, vol. 27, pp. 411-424, 2012.
  • Kim C H, Kim M Y, Moon G W, “A modularized charge equalizer using a battery monitoring IC for seriesconnected li-Ion battery strings in electric vehicles”, IEEE Transactions on Power Electronics, vol. 28, pp. 3779-3787, 2013.
  • https://www.highspeedtraining.co.uk/hub/manualhandling-weight-limits/, 17.09.2018.
  • Brand M J, Schmidt P A, Zaeh M F, Jossen A, “Welding techniques for battery cells and resulting electrical contact resistances”, Journal of Energy Storage, vol. 1, pp. 7-14, 2015.
  • IEC Standard 60664-1, Insulation coordination for equipment within low-voltage systems - Part 1: Principles, requirements and tests, International Electrotechnical Commission, 2007.
  • SAE Standard 2013-01-1528, Application of Insulation Standards to High Voltage Automotive Applications, Society of Automotive Engineers, 2013.
Yıl 2018, Cilt: 4 Sayı: 4, 143 - 152, 19.02.2019

Öz

Kaynakça

  • Kennedy B, Patterson D and Camilleri S, 2000, Use of lithium-ion batteries in electric vehicles, Journal of Power Sources, 90 156-162.
  • Shiau C S N, Samaras C, Hauffe R and Michalek J J, 2009, Impact of battery waight and charging patterns on the economic and environmental benefits of plug-in hybrid vehicles, Energy Policy, 37 2653-2663.
  • Smith K, Wang C Y, 2006, Power and thermal characterization of a lithium-ion battery pack for hybrid-electric vehicles, Journal of Power Sources, 160 662-673.
  • Kiziel R, Sabbah R, Selman J R, Al-Hallaj S, 2009, An alternative cooling system to enhance the safety of Li-ion battery packs, Journal of Power Sources, 194 1105-1112.
  • Zubi G, Lopez R D, Carvalho M, Pasaoglu G, “The lithium-ion battery: State of the art and futureperspectives”, Renewable and Sustainable Energy Reviews, vol. 89, pp. 292-308, 2018.
  • Danzer, M.A., Liebau V., Maglia F., “Aging of lithiumion batteries for electric vehicles”, Energy, pp. 359-387, 2015.
  • ISO Standard 6469-3, Electrically propelled road vehicles -- Safety specifications -- Part 3: Protection of persons against electric shock, International Organization for Standardization, 2011.
  • Kim J, Shin J, Chun C, Cho B H, “Stable configuration of a li-Ion series battery pack based on a screening process for improved voltage/SOC balancing”, IEEE Transactions on Power Electronics, vol. 27, pp. 411-424, 2012.
  • Kim C H, Kim M Y, Moon G W, “A modularized charge equalizer using a battery monitoring IC for seriesconnected li-Ion battery strings in electric vehicles”, IEEE Transactions on Power Electronics, vol. 28, pp. 3779-3787, 2013.
  • https://www.highspeedtraining.co.uk/hub/manualhandling-weight-limits/, 17.09.2018.
  • Brand M J, Schmidt P A, Zaeh M F, Jossen A, “Welding techniques for battery cells and resulting electrical contact resistances”, Journal of Energy Storage, vol. 1, pp. 7-14, 2015.
  • IEC Standard 60664-1, Insulation coordination for equipment within low-voltage systems - Part 1: Principles, requirements and tests, International Electrotechnical Commission, 2007.
  • SAE Standard 2013-01-1528, Application of Insulation Standards to High Voltage Automotive Applications, Society of Automotive Engineers, 2013.
Toplam 13 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Mahmut Kerem Eren Bu kişi benim

Eymen İpek Bu kişi benim

Kadir Aras Bu kişi benim

Turgay Gücükoğlu Bu kişi benim

Koray Erhan

Yayımlanma Tarihi 19 Şubat 2019
Kabul Tarihi 29 Ocak 2019
Yayımlandığı Sayı Yıl 2018 Cilt: 4 Sayı: 4

Kaynak Göster

APA Eren, M. K., İpek, E., Aras, K., Gücükoğlu, T., vd. (2019). Effects of Cell and Module Configuration on Battery System in Electric Vehicles. International Journal of Engineering Technologies, 4(4), 143-152. https://doi.org/10.19072/ijet.467022
AMA Eren MK, İpek E, Aras K, Gücükoğlu T, Erhan K. Effects of Cell and Module Configuration on Battery System in Electric Vehicles. IJET. Şubat 2019;4(4):143-152. doi:10.19072/ijet.467022
Chicago Eren, Mahmut Kerem, Eymen İpek, Kadir Aras, Turgay Gücükoğlu, ve Koray Erhan. “Effects of Cell and Module Configuration on Battery System in Electric Vehicles”. International Journal of Engineering Technologies 4, sy. 4 (Şubat 2019): 143-52. https://doi.org/10.19072/ijet.467022.
EndNote Eren MK, İpek E, Aras K, Gücükoğlu T, Erhan K (01 Şubat 2019) Effects of Cell and Module Configuration on Battery System in Electric Vehicles. International Journal of Engineering Technologies 4 4 143–152.
IEEE M. K. Eren, E. İpek, K. Aras, T. Gücükoğlu, ve K. Erhan, “Effects of Cell and Module Configuration on Battery System in Electric Vehicles”, IJET, c. 4, sy. 4, ss. 143–152, 2019, doi: 10.19072/ijet.467022.
ISNAD Eren, Mahmut Kerem vd. “Effects of Cell and Module Configuration on Battery System in Electric Vehicles”. International Journal of Engineering Technologies 4/4 (Şubat 2019), 143-152. https://doi.org/10.19072/ijet.467022.
JAMA Eren MK, İpek E, Aras K, Gücükoğlu T, Erhan K. Effects of Cell and Module Configuration on Battery System in Electric Vehicles. IJET. 2019;4:143–152.
MLA Eren, Mahmut Kerem vd. “Effects of Cell and Module Configuration on Battery System in Electric Vehicles”. International Journal of Engineering Technologies, c. 4, sy. 4, 2019, ss. 143-52, doi:10.19072/ijet.467022.
Vancouver Eren MK, İpek E, Aras K, Gücükoğlu T, Erhan K. Effects of Cell and Module Configuration on Battery System in Electric Vehicles. IJET. 2019;4(4):143-52.

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