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Temperature rise prediction of lithium-ion battery suffering external short circuit for all-climate electric vehicles application. (2018). Chen, Zeyu ; Li, Xinggang ; Xiong, Rui ; Lu, Jiahuan.
In: Applied Energy.
RePEc:eee:appene:v:213:y:2018:i:c:p:375-383.

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Cited: 34

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  1. Review of thermal management of electronics and phase change materials. (2025). Duquesne, M ; Haillot, D ; Ghadim, Benisi H ; Godin, A ; Veillere, A.
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  2. A comparative study of data-driven thermal fault prediction using machine learning algorithms in air-cooled cylindrical Li-ion battery modules. (2025). Prabhakar, Aneesh ; Kumar, Vikas ; Daniels, Rojo Kurian.
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  3. Diagnosis of battery external short circuits based on an improved second-order RC fault model and recursive least squares identification method. (2025). Wang, Yujie ; Jin, Zhichao ; Hong, Zhongshen.
    In: Energy.
    RePEc:eee:energy:v:319:y:2025:i:c:s0360544225005225.

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  4. Rapid diagnosis and assessment of lithium-ion battery short circuit in three seconds across a wide range of short-circuit resistances. (2025). Zhang, BO ; Chen, Zeyu ; Wang, Kunbai ; Jiao, Meng.
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  5. Regional vehicle energy consumption evaluation framework to quantify the benefits of vehicle electrification in plateau city: A case study of Xining, China. (2025). Wei, Ning ; Zhang, Yanjie ; Jiang, Zhiwen ; Guo, Dongping ; Mao, Hongjun ; Yin, Jiawei ; Cao, Zeping ; Wu, Lin.
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  6. Review of Lithium as a Strategic Resource for Electric Vehicle Battery Production: Availability, Extraction, and Future Prospects. (2024). Ponce-Ortega, Jos Mara ; Lira-Barragn, Luis Fernando ; Ramrez-Mrquez, Csar ; Vega-Muratalla, Victor Osvaldo.
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  7. Analysis of the Temperature Reached by the Traction Battery of an Electric Vehicle during the Drying Phase in the Paint Booth. (2024). Castejon, Luis ; Olona, Ana.
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  8. Thermal runaway and combustion characteristics, risk and hazard evaluation of lithium‑iron phosphate battery under different thermal runaway triggering modes. (2024). Tiannian, Zhou ; Chuanping, WU ; Jiazheng, LU ; Jie, Deng ; Baohui, Chen.
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  9. A Review on the Fault and Defect Diagnosis of Lithium-Ion Battery for Electric Vehicles. (2023). Song, Zehua ; Xue, Xiaoqing ; Hua, Wei ; Tan, Rui ; Jiang, Pengchang ; Zhang, Lisheng ; Zou, Bosong ; Ma, Bin.
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  10. Battery safety issue detection in real-world electric vehicles by integrated modeling and voltage abnormality. (2023). Zhang, Zhaosheng ; Wang, Qiushi ; Liu, Peng ; Deng, Junjun.
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  11. Fault isolating and grading for li-ion battery packs based on pseudo images and convolutional neural network. (2023). Wei, Zhongbao ; Li, Xiaoyu ; Xu, Jingfan ; Xie, Jiale.
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  12. A novel semi-supervised fault detection and isolation method for battery system of electric vehicles. (2023). Liu, Zhi ; Zhang, Mingyan ; Duodu, Maxwell Mensah ; Yang, Jiong ; Cheng, Fanyong.
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  13. Experimental research on thermal-electrical behavior and mechanism during external short circuit for LiFePO4 Li-ion battery. (2023). An, Zhoujian ; Zhao, Yabing ; Du, Xiaoze ; Shi, Tianlu ; Zhang, Dong.
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  14. PID-based CNN-LSTM for accuracy-boosted virtual sensor in battery thermal management system. (2023). Yang, Rufan ; Xie, Jiahang ; Nguyen, Hung Dinh ; Gooi, Hoay Beng.
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  15. An Optimization Study on the Operating Parameters of Liquid Cold Plate for Battery Thermal Management of Electric Vehicles. (2022). Ma, Zhendi ; Lu, Zhao ; Zou, Yanhui ; Jin, Liwen ; Wei, Lichuan ; Cao, Feng.
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  16. High-Precision Fault Detection for Electric Vehicle Battery System Based on Bayesian Optimization SVDD. (2022). Li, Miao ; Duodu, Maxwell ; Yang, Jiong ; Cheng, Fanyong ; Han, Chao.
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  17. Safety Assessment for External Short Circuit of Li-Ion Battery in ESS Application Based on Operation and Environment Factors. (2022). Lim, Min-Gyu ; Kim, Jin-Yong ; Jung, Jae-Beom ; Rho, Dae-Seok ; Han, Byeong-Gill.
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  18. A review on thermal management of lithium-ion batteries for electric vehicles. (2022). Du, Zhengyu ; Li, Zhao ; Fan, Yilin ; Zhang, Xinghui ; Luo, Lingai.
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  19. STTEWS: A sequential-transformer thermal early warning system for lithium-ion battery safety. (2022). Yu, Xiaodan ; Xiao, Qian ; Li, Marui ; Jia, Hongjie ; Dong, Chaoyu ; Xiong, Binyu ; Mu, Yunfei.
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  20. Data-driven early warning strategy for thermal runaway propagation in Lithium-ion battery modules with variable state of charge. (2022). Yin, Xiuxing ; Li, Xingyao ; Zhang, Wencan ; Wu, Weixiong ; Ouyang, Nan ; Huang, Liansheng.
    In: Applied Energy.
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  21. A Comprehensive Signal-Based Fault Diagnosis Method for Lithium-Ion Batteries in Electric Vehicles. (2021). Jiang, Yan ; Cong, Xinwei ; Zhang, Weige.
    In: Energies.
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  22. Development of an Informative Lithium-Ion Battery Datasheet. (2021). Diao, Weiping ; Pecht, Michael ; Kulkarni, Chetan.
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  23. Electro-thermal coupling model of lithium-ion batteries under external short circuit. (2021). Chen, Zeyu ; Shen, Weixiang ; Xiong, Rui ; Yu, Quanqing ; Zhang, BO.
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  24. Multi-scale short circuit resistance estimation method for series connected battery strings. (2020). Mei, Xuesong ; Xu, Jun ; Shi, HU ; Wang, Haitao.
    In: Energy.
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  25. Research progress, challenges and prospects of fault diagnosis on battery system of electric vehicles. (2020). Sun, Wanzhou ; Xiong, Rui ; Yu, Quanqing.
    In: Applied Energy.
    RePEc:eee:appene:v:279:y:2020:i:c:s0306261920313301.

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  26. Multiphysical field measurement and fusion for battery electric-thermal-contour performance analysis. (2020). Zhang, Zuguang ; Tian, Yong ; Li, Xiaoyu ; Wang, Wenhui.
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  27. Characterization of external short circuit faults in electric vehicle Li-ion battery packs and prediction using artificial neural networks. (2020). Lin, Xinfan ; Ma, Suxiao ; Xiong, Rui ; Yang, Ruixin.
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  28. Online multi-fault detection and diagnosis for battery packs in electric vehicles. (2020). Zhou, Zhongkai ; Shang, Yunlong ; Kang, Yongzhe ; Zhang, Chenghui ; Duan, Bin.
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  29. Synchronous multi-parameter prediction of battery systems on electric vehicles using long short-term memory networks. (2019). Wang, Zhenpo ; Yao, Yongtao ; Chen, Wen ; Hong, Jichao.
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  30. Concept of reliability and safety assessment of lithium-ion batteries in electric vehicles: Basics, progress, and challenges. (2019). Goutam, Shovon ; Gopalakrishnan, Rahul ; Omar, Noshin ; Jaguemont, Joris ; van Mierlo, Joeri ; Gandoman, Foad H ; Firouz, Yousef ; Kalogiannis, Theodoros.
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  31. Accurate lithium-ion battery modeling with inverse repeat binary sequence for electric vehicle applications. (2019). Gong, Sizhao ; Zhu, Rui ; Zhang, Chenghui ; Duan, Bin.
    In: Applied Energy.
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  32. Overcharge behaviors and failure mechanism of lithium-ion batteries under different test conditions. (2019). Feng, Xuning ; He, Xiangming ; Ouyang, Minggao ; Lu, Languang ; Ren, Dongsheng.
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  33. Investigating the thermal runaway mechanisms of lithium-ion batteries based on thermal analysis database. (2019). Feng, Xuning ; Wang, Hao ; He, Xiangming ; Cui, Hao ; Liu, Xiang ; Zhang, Fangshu ; Ren, Dongsheng ; Chen, Tianyu ; Xu, Chengshan ; Zheng, Siqi ; Jin, Changyong ; Gao, Shang ; Ouyang, Minggao ; Hsu, Hungjen.
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  34. Model-based thermal runaway prediction of lithium-ion batteries from kinetics analysis of cell components. (2018). He, Xiangming ; Liu, Xiang ; Ouyang, Minggao ; Lu, Languang ; Ren, Dongsheng ; Feng, Xuning.
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    In: Applied Energy.
    RePEc:eee:appene:v:279:y:2020:i:c:s0306261920313301.

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  21. Online multi-fault detection and diagnosis for battery packs in electric vehicles. (2020). Zhou, Zhongkai ; Shang, Yunlong ; Kang, Yongzhe ; Zhang, Chenghui ; Duan, Bin.
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    RePEc:eee:appene:v:259:y:2020:i:c:s0306261919318574.

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  22. Methods for fault diagnosis of high-speed railways: A review. (2019). .
    In: Journal of Risk and Reliability.
    RePEc:sae:risrel:v:233:y:2019:i:5:p:908-922.

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  23. Autonomous Demand-Side Current Scheduling of Parallel Buck Regulated Battery Modules. (2019). Jiang, Yunfeng ; de Callafon, Raymond A ; Shrinkle, Louis J.
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    RePEc:gam:jeners:v:12:y:2019:i:11:p:2095-:d:236245.

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  24. Real-time diagnosis of micro-short circuit for Li-ion batteries utilizing low-pass filters. (2019). Zhang, Zhendong ; Zheng, Yuejiu ; Lai, Xin ; Kong, Xiangdong ; Zhou, Long.
    In: Energy.
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  25. Fault prognosis of battery system based on accurate voltage abnormity prognosis using long short-term memory neural networks. (2019). Wang, Zhenpo ; Yao, Yongtao ; Hong, Jichao.
    In: Applied Energy.
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  26. Concept of reliability and safety assessment of lithium-ion batteries in electric vehicles: Basics, progress, and challenges. (2019). Goutam, Shovon ; Gopalakrishnan, Rahul ; Omar, Noshin ; Jaguemont, Joris ; van Mierlo, Joeri ; Gandoman, Foad H ; Firouz, Yousef ; Kalogiannis, Theodoros.
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  27. Analysis of Manufacturing-Induced Defects and Structural Deformations in Lithium-Ion Batteries Using Computed Tomography. (2018). Wang, Youren ; Wu, YI ; Xing, Yinjiao ; Saxena, Saurabh ; Pecht, Michael ; Li, Chuan.
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  28. Entropy-Based Voltage Fault Diagnosis of Battery Systems for Electric Vehicles. (2018). Sun, Zhenyu ; Wang, Zhenpo ; Liu, Peng ; Zhang, Jin.
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  29. Fault detection of the connection of lithium-ion power batteries in series for electric vehicles based on statistical analysis. (2018). Wang, YU ; Wu, Tangqin ; Duan, Qiangling ; Ma, Mina ; Sun, Jinhua.
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  30. Temperature rise prediction of lithium-ion battery suffering external short circuit for all-climate electric vehicles application. (2018). Chen, Zeyu ; Li, Xinggang ; Xiong, Rui ; Lu, Jiahuan.
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  31. A simplified fractional order impedance model and parameter identification method for lithium-ion batteries. (2017). Li, Xiuqing ; Yang, Qingxia ; Xu, Jun ; Cao, Binggang.
    In: PLOS ONE.
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  32. Field Synergy Analysis and Optimization of the Thermal Behavior of Lithium Ion Battery Packs. (2017). Huo, Weiwei ; Jia, Hui ; He, Hongwen ; Sun, Fengchun.
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  33. Fault and defect diagnosis of battery for electric vehicles based on big data analysis methods. (2017). Wang, Zhenpo ; Zhao, Yang ; Liu, Peng ; Zhang, Lei ; Hong, Jichao.
    In: Applied Energy.
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  34. Clay-like mechanical properties for the jellyroll of cylindrical Lithium-ion cells. (2017). Wang, Wenwei ; Yang, Sheng ; Lin, Cheng.
    In: Applied Energy.
    RePEc:eee:appene:v:196:y:2017:i:c:p:249-258.

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  35. Dynamic modeling of a microbial fuel cell considering anodic electron flow and electrical charge storage. (2017). Ren, Zhiyong Jason ; Roane, Timberley M ; Alaraj, Muhannad ; Park, Jae-Do.
    In: Applied Energy.
    RePEc:eee:appene:v:193:y:2017:i:c:p:507-514.

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