ZHAO Jianhua. Research on the design and development of evaluation and test platform for traction battery packs of electric vehicles[J]. Energy Storage Science and Technology, 2026, 15(8): 3262-3264.
ZHAO Jianhua. Research on the design and development of evaluation and test platform for traction battery packs of electric vehicles[J]. Energy Storage Science and Technology, 2026, 15(8): 3262-3264.DOI: 10.19799/j.cnki.2095-4239.2026.0672.
power battery packs directly determine the operational reliability of complete vehicles. Correspondingly
the evaluation and test platform acts as a crucial tool for the quality control of power batteries. With the rapid expansion of the new energy vehicle industry
conventional battery test platforms can no longer accommodate testing requirements across diverse working scenarios. Against this backdrop
integrated full-scenario test platforms have become a primary research focus nowadays. This paper sorts out the design fundamentals of evaluation and test platforms for electric vehicle power battery packs
summarizes relevant domestic and international research progress
analyzes prominent challenges encountered during platform development
and prospects the future developmental trends of such platforms. The research outcomes provide theoretical support for the optimized design of domestic evaluation and test platforms for power battery packs in China.
WANG H P, ZHANG J M, CHENG Q. Research on equalization control strategy for power battery packs of new energy vehicles[J]. Automobile Knowledge, 2026, 26(2): 26-28.
State Administration for Market Regulation, Standardization Administration of the People's Republic of China. Electric vehicles traction battery safety requirements: GB 38031—2025[S]. Beijing: Standards Press of China, 2025.
TAO W Y, ZHANG M, XU J Y, et al. Comparison and analysis of test standards for traction Li-ion battery[J]. Battery Bimonthly, 2018, 48(2): 122-125. DOI:10.19535/j.1001-1579.2018.02.014.