Parallel Thermal Analysis of 3-D Integrated Circuits With Liquid Cooling on CPU-GPU Platforms

IEEE Trans. VLSI Syst.(2015)

引用 19|浏览28
暂无评分
摘要
In this brief, we propose an efficient parallel finite difference-based thermal simulation algorithm for 3-D-integrated circuits (ICs) using generalized minimum residual method (GMRES) solver on CPU-graphic processing unit (GPU) platforms. First, the new method starts from basic physics-based heat equations to model 3-D-ICs with intertier liquid cooling microchannels and directly solves the resulting partial differential equations. Second, we develop a new parallel GPU-GMRES solver to compute the resulting thermal systems on a CPU-GPU platform. We also explore different preconditioners (implicit and explicit) and study their performances on thermal circuits and other types of matrices. Experimental results show the proposed GPU-GMRES solver can deliver orders of magnitudes speedup over the parallel LU-based solver and up to 4× speedup over CPU-GMRES for both dc and transient thermal analyzes on a number of thermal circuits and other published problems.
更多
查看译文
关键词
thermal analysis,graphic processing unit (gpu) parallel computing,parallel finite difference-based thermal simulation algorithm,parallel gpu-gmres solver,3d-integrated circuits,3-d-integrated circuit (ic),generalized minimum residual method (gmres),graphics processing units,generalized minimum residual method,three-dimensional integrated circuits,cpu-gpu platforms,physics-based heat equations,cpu-graphic processing unit platforms,intertier liquid cooling microchannels,partial differential equations,finite difference,thermal analysis.,finite difference methods,heating,vectors,mathematical model,liquid cooling
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要