一种并行聚类算法及其在VLSI领域的应用

S. Iqbal, M. I. Monir, T. Sayeed, A.H.M. Misbah-Uddin
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引用次数: 4

摘要

电路划分在超大规模集成电路(VLSI)芯片的物理设计自动化中起着重要的作用。在本文中,我们提出了一种新的基于自顶向下和自底向上连接的VLSI电路划分聚类算法。提出的聚类算法通过关注高度互联的细胞群来划分电路。这种聚类算法导致并行实现,其中使用多个处理器同时识别集群。这个过程开始于通过将紧密连接的细胞和松散连接的细胞分组形成簇。考虑到这两种类型的组都有优势,由这种技术形成的集群也将高度连接和紧凑。因此,所提出的聚类方法可以在不损失分区解质量的前提下减小大规模分区问题的大小并加快其速度。在一组标准的分区基准- ispd98基准套件上评估了所提出的聚类算法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A concurrent approach to clustering algorithm with applications to VLSI domain
Circuit partitioning plays an important role in physical design automation of very large scale integration (VLSI) chips. In this brief we present a new connectivity based top down as well as bottom up approach to clustering algorithm for VLSI circuit partitioning. The proposed clustering algorithm partitions the circuit by focusing on highly interconnected cell groups. This clustering algorithm leads to a parallel implementation in which multiple processors are used to identify clusters simultaneously. The process starts with forming clusters by grouping the cells that are tightly connected and as well as the cells that are loosely connected. Considering both types of groups has the advantage that clusters formed from this technique will be highly connected and compact too. Therefore the proposed clustering method can reduce the size and also speed-up the large-scale partitioning problem without loosing partitioning solution qualities. The performance of the proposed clustering algorithm is evaluated on a standard set of partitioning benchmark-ISPD98 benchmark suite.
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