首页> 外文OA文献 >Locality-Driven Parallel Static Analysis for Power Delivery Networks
【2h】

Locality-Driven Parallel Static Analysis for Power Delivery Networks

机译:电力传输网络的局部驱动并行静态分析

摘要

Large VLSI on-chip Power Delivery Networks (PDNs) are challenging to analyze due to the sheer network complexity. In this article, a novel parallel partitioning-based PDN analysis approach is presented. We use the boundary circuit responses of each partition to divide the full grid simulation problem into a set of independent subgrid simulation problems. Instead of solving exact boundary circuit responses, a more efficient scheme is proposed to provide near-exact approximation to the boundary circuit responses by exploiting the spatial locality of the flip-chip-type power grids. This scheme is also used in a block-based iterative error reduction process to achieve fast convergence. Detailed computational cost analysis and performance modeling is carried out to determine the optimal (or near-optimal) number of partitions for parallel implementation. Through the analysis of several large power grids, the proposed approach is shown to have excellent parallel efficiency, fast convergence, and favorable scalability. Our approach can solve a 16-million-node power grid in 18 seconds on an IBM p5-575 processing node with 16 Power5+ processors, which is 18.8X faster than a state-of-the-art direct solver. © 2011 ACM.
机译:由于纯粹的网络复杂性,大型VLSI片上供电网络(PDN)难以分析。在本文中,提出了一种新颖的基于并行分区的PDN分析方法。我们使用每个分区的边界电路响应将整个网格仿真问题划分为一组独立的子网格仿真问题。代替求解精确的边界电路响应,提出了一种更有效的方案,以通过利用倒装芯片型电网的空间局部性来提供对边界电路响应的近乎精确的近似。此方案还用于基于块的迭代错误减少过程中,以实现快速收敛。进行了详细的计算成本分析和性能建模,以确定用于并行实现的最佳(或接近最佳)分区数。通过对几个大型电网的分析,表明该方法具有出色的并行效率,快速收敛和良好的可扩展性。我们的方法可以在具有16个Power5 +处理器的IBM p5-575处理节点上,在18秒内解决1600万个节点的电网问题,这比最先进的直接求解器快18.8倍。 ©2011 ACM。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号