TY - JOUR
T1 - A Comparative Study of Thermal Management Strategies for Overcurrent in Aircraft Power Electronics Applications
AU - Zhang, Xu
AU - Iosifidis, Nikolaos
AU - Wu, Yifei
AU - Wan, Haiyong
AU - Wei, Jinxiao
AU - Liu, Liangjie
AU - Wang, Xingzhi
AU - Li, Wenyuan
AU - Wu, Kangning
AU - Li, Jianying
AU - Mawby, Philip A.
AU - Ran, Li
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2025
Y1 - 2025
N2 - The increasing power density in more electric aircraft (MEA) systems poses significant thermal challenges for power electronics, especially during overcurrent scenarios and fault conditions throughout flight cycles. Efficient thermal management is therefore essential. This article presents a comparative study of three thermal management strategies—liquid metal phase change material (PCM), thermoelectric cooling (TEC), and heat pipes—evaluated in terms of time-scale response and thermal performance under overcurrent conditions. Results indicate that liquid metal PCM responds in the seconds range, while TEC and heat pipes provide faster responses in the millisecond range. All three strategies demonstrated significant improvements over conventional power module designs, achieving thermal resistance reductions of 45%, 35%, and 21% for heat pipe, TEC, and PCM, respectively. The heat pipe configuration exhibited the lowest thermal resistance and the most substantial reduction in junction temperature during overcurrent conditions. The overcurrent cycling test demonstrates that all three strategies effectively reduce both the mean junction temperature and junction temperature swing, resulting in an increased number of cycles to failure.
AB - The increasing power density in more electric aircraft (MEA) systems poses significant thermal challenges for power electronics, especially during overcurrent scenarios and fault conditions throughout flight cycles. Efficient thermal management is therefore essential. This article presents a comparative study of three thermal management strategies—liquid metal phase change material (PCM), thermoelectric cooling (TEC), and heat pipes—evaluated in terms of time-scale response and thermal performance under overcurrent conditions. Results indicate that liquid metal PCM responds in the seconds range, while TEC and heat pipes provide faster responses in the millisecond range. All three strategies demonstrated significant improvements over conventional power module designs, achieving thermal resistance reductions of 45%, 35%, and 21% for heat pipe, TEC, and PCM, respectively. The heat pipe configuration exhibited the lowest thermal resistance and the most substantial reduction in junction temperature during overcurrent conditions. The overcurrent cycling test demonstrates that all three strategies effectively reduce both the mean junction temperature and junction temperature swing, resulting in an increased number of cycles to failure.
KW - More electric aircraft (MEA)
KW - overcurrent
KW - power electronics
KW - thermal management
UR - https://www.scopus.com/pages/publications/105003449045
U2 - 10.1109/JESTPE.2025.3563796
DO - 10.1109/JESTPE.2025.3563796
M3 - 文章
AN - SCOPUS:105003449045
SN - 2168-6777
VL - 13
SP - 4488
EP - 4503
JO - IEEE Journal of Emerging and Selected Topics in Power Electronics
JF - IEEE Journal of Emerging and Selected Topics in Power Electronics
IS - 4
ER -