TY - JOUR
T1 - A Multi-Hysteresis Control for Minimizing Battery Charging Time Within Industrial JEITA Guidelines
AU - Liang, Hui Wen Rebecca
AU - Yang, Yun
AU - He, Liangxi
AU - Qu, Jialong
AU - Lee, Chi Kwan
AU - Hui, Shu Yuen Ron
PY - 2023/8
Y1 - 2023/8
N2 - In common industrial practices, the Japan Electronics and Information Technology Industries Association (JEITA) guideline is widely adopted for battery temperature regulations. However, the conventional JEITA-compliant temperature-regulated current control (TRCC) is generally designed without considering the charging speed. To address this issue, a multi-hysteresis TRCC (MTRCC) is proposed in this article. The proposed MTRCC is designed based on the conventional JEITA-compliant TRCC by dividing the hysteresis band for each temperature reference from one to multiple. As a result, the number of charging current levels is increased from three to multiple, such that the charging speed can be improved according to the analysis. The proposed control inherits the simple and effective temperature regulations of the conventional control, while enhancing the charging speed without additional hardware costs. This approach has potential to be an alternative of the state-of-the-art TRCC in JEITA guidelines for single-cell charging applications. Empirical results validate that the proposed MTRCC (with four hysteresis bands) can achieve faster charging than the conventional control at four different ambient temperatures and the charging speed improvement is more significant when the ambient temperature is higher. © 2022 IEEE.
AB - In common industrial practices, the Japan Electronics and Information Technology Industries Association (JEITA) guideline is widely adopted for battery temperature regulations. However, the conventional JEITA-compliant temperature-regulated current control (TRCC) is generally designed without considering the charging speed. To address this issue, a multi-hysteresis TRCC (MTRCC) is proposed in this article. The proposed MTRCC is designed based on the conventional JEITA-compliant TRCC by dividing the hysteresis band for each temperature reference from one to multiple. As a result, the number of charging current levels is increased from three to multiple, such that the charging speed can be improved according to the analysis. The proposed control inherits the simple and effective temperature regulations of the conventional control, while enhancing the charging speed without additional hardware costs. This approach has potential to be an alternative of the state-of-the-art TRCC in JEITA guidelines for single-cell charging applications. Empirical results validate that the proposed MTRCC (with four hysteresis bands) can achieve faster charging than the conventional control at four different ambient temperatures and the charging speed improvement is more significant when the ambient temperature is higher. © 2022 IEEE.
KW - Battery
KW - charging speed
KW - Japan Electronics and Information Technology Industries Association (JEITA) guideline
KW - multi-hysteresis
KW - temperature-regulated current control (TRCC)
UR - http://www.scopus.com/inward/record.url?scp=85146214873&partnerID=8YFLogxK
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-85146214873&origin=recordpage
U2 - 10.1109/TIE.2022.3231280
DO - 10.1109/TIE.2022.3231280
M3 - RGC 21 - Publication in refereed journal
SN - 0278-0046
VL - 70
SP - 8416
EP - 8425
JO - IEEE Transactions on Industrial Electronics
JF - IEEE Transactions on Industrial Electronics
IS - 8
ER -