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References

1 
A. Khan, S. Yaqub, M. Ali, A. W. Ahmad, H.Nazir, H. A. Khalid, N. Iqbal, Z.Said, and K. Sopian, “A state-of-the-art review on heating and cooling of lithium-ion batteries for electric vehicle,” Journal of Energy Storage, vol. 76, 109852, 2024.DOI
2 
X. Zhang, Z. Li, L. Luo, Y. Fan, and Z. Du, “A review on thermal management of lithium-ion batteries for electric vehicles,” Energy, vol. 238, pt. A, 121652, 2022.DOI
3 
S. Wu, R. Xiong, H. Li, V. Nian, and S. Ma, “The state of the art on preheating lithium-ion batteries in cold weather,” Journal of Energy Storage, vol. 27, 101059, 2020.DOI
4 
C.-Y. Wang, G. Zhang, S. Ge, T. Xu, Y. Ji, X.-G. Yang, and Y. Leng, “Lithium-ion battery structure that self-heats at low temperatures,” Nature, vol. 529, pp. 515-518, 2016.URL
5 
Z. G. Qu, Z.Y. Jiang, and Q. Wang, “Experimental study on pulse self–heating of lithium–ion battery at low temperature,” International journal of heat and mass transfer, vol. 135, pp. 696-705, 2019.DOI
6 
S. Guo, R. Xiong, K. Wang, and F. Sun, “A novel echelon internal heating strategy of cold batteries for all-climate electric vehicles application,” Applied Energy, vol. 219, pp. 256-263, 2018.DOI
7 
J. Zhu, Z. Sun, X. Wei, H. Dai, and W. Gu, “Experimental investigations of an AC pulse heating method for vehicular high power lithium-ion batteries at subzero temperatures,” Journal of power sources, vol. 367, pp. 145-157, 2017.DOI
8 
Y. Ji, and C.Y. Wang, “Heating strategies for Li-ion batteries operated from subzero temperatures,” Electrochimica Acta, vol. 107, pp. 664-674, 2013.DOI
9 
Y. Wang, Z. Rao, S. Liu, X. Li, H. Li, and R. Xiong, “Evaluating the performance of liquid immersing preheating system for lithium-ion battery pack,” Applied Thermal Engineering, vol. 190, 116811, 2021.DOI
10 
Z. Ling, X. Wen, Z. Zhang, X. Fang, and T. Xu, “Warming-up effects of phase change materials on lithium-ion batteries operated at low temperatures,” Energy Technology, vol. 4, no. 9, pp. 1071-1076, 2016.DOI
11 
C. Alaoui, and Z.M. Salameh, “A novel thermal management for electric and hybrid vehicles,” IEEE transactions on vehicular technology, vol. 54, no. 2, pp. 468-476, 2005.DOI
12 
X. Jin, J. Q. Li, C. N. Zhang, and P. E. Wu, “Researches on modeling and experiment of Li-ion battery PTC self-heating in electric vehicles,” Energy Procedia, vol. 104, pp. 62-67, 2016.DOI
13 
Z. Lei, C. Zhang, J. Li, G. Fan, and Z. Lin, “Preheating method of lithium-ion batteries in an electric vehicle,” Journal of Modern Power Systems and Clean Energy, vol. 3, no. 2, pp. 289-296, 2015.DOI
14 
H. Ji, J. H. Peck, and C. D. Gang, “Experimental Study on the Power Consumption Reduction of ESS Constant Temperature System with Phase Change Material,” SAREK Summer Conference Proceedings, pp. 417-421, 2022.URL
15 
S. Hong, J. H. Kim, D. S. Choi, and K. Baek, “Development of surface weather forecast model by using LSTM machine learning method,” Atmosphere, vol. 31, no. 1, pp. 73-83, 2021.DOI
16 
J. Son, J. Cha, and S Lee, “Transformer Model Architecture for Short-Term Load Forecasting,” KICS Winter Conference Proceedings, 2020.URL
17 
J. M. Park, D. W. Lee, K. Joe, and H.S. Yoon, “Transformer-Based Photovoltaic Power Prediction Model Utilizing Multiple Weather Forecasts,” Journal of the Korean Solar Energy Society, vol. 43, no. 6, pp. 87-95, 2023.DOI
18 
L. Liao, P. Zuo, Y. Ma, X. Chen, Y. An, Y. Gao, and G. Yin, “Effects of temperature on charge/discharge behaviors of LiFePO4 cathode for Li-ion batteries,” Electrochimica Acta, vol. 60, pp. 269-273, 2012.DOI
19 
T. T. Lou, W. G. Zhang, H. Y. Guo, and J. S. Wang, “The internal resistance characteristics of lithium-ion battery based on HPPC method,” Advanced materials research, vol. 455, pp. 246-251, 2012.DOI
20 
A. Łebkowski, “Temperature, overcharge and short-circuit studies of batteries used in electric vehicles,” Przeglad Elektrotechniczny, pp. 69-75, 2017.URL
21 
M. Razi, Z. Daud, Z. Asus, I. Mazali, M. Ardani, and M. Hamid, “A review of internal resistance and temperature relationship, state of health and thermal runaway for lithium-ion battery beyond normal operating condition,” Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, vol. 88, no. 2, pp. 123-132, 2021.DOI
22 
Q. Chen, J. Jiang, H. Ruan, and C. Zhang, “Simply designed and universal sliding mode observer for the SOC estimation of lithium‐ion batteries,” IET Power Electronics, vol. 10, no. 6, pp. 697-705, 2017.DOI
23 
MOIS Public Data Portal, KPX hourly electricity demand data, https://www.data.go.kr/data/15065266/fileData.do, 2024.URL
24 
Korea Meteorological Administration, Autumatic Weather System data, https://www.weather.go.kr/weather/observation/aws_table_popup.jsp, 2024.URL