A System-Level Thermal Simulator with Automatic Meshing Techniques

被引:0
|
作者
Wang, Jui-Hung [1 ]
Lee, Yu-Min [1 ]
Hsiao, Hsuan-Hsuan [1 ]
Cheng, Liang-Chia [2 ]
机构
[1] Natl Chiao Tung Univ, Dept Elect & Comp Engn, POB 25-1, Hsinchu 30010, Taiwan
[2] Ind Technol Res Inst, Informat & Commun Res Labs, POB 9-1 Jhudong, Hsinchu 31099, Taiwan
来源
PROCEEDINGS OF THE 17TH IEEE INTERSOCIETY CONFERENCE ON THERMAL AND THERMOMECHANICAL PHENOMENA IN ELECTRONIC SYSTEMS (ITHERM 2018) | 2018年
关键词
adaptive meshing; heat transfer equation; finite difference method (FDM); fast thermal estimator; thermal gradient; circuit simulation;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
The grid structure of most numerical thermal simulators has to be designed artificially. Designers might need to try many different grid structures for getting accurate thermal profiles, and, hence, waste a great of runtime. In order to solve this problem, this work presents a system-level thermal simulator, DeNAFE, which can adaptively mesh thermal grids automatically. First, we develop and employ a fast thermal estimation engine to roughly obtain the thermal profile of the system. Then, with this thermal profile, we propose and utilize an adaptive meshing procedure to decide its grid structure and perform thermal simulation. Compared with a commercial tool, ANSYS Icepak, the experimental results show that the speedup of DeNAFE can be up to two orders of magnitude with only 6: 09% maximum error for all chips in the steady-state thermal simulation. Furthermore, the error of chips is less than 5: 25%, the error of screen/skin is less than 6: 03%, and the speedup can be over 171: 12 times in the transient simulation.
引用
收藏
页码:984 / 991
页数:8
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