首页> 外文会议>International Symposium on Computer and Information Sciences(ISCIS 2005); 20051026-28; Istanbul(TR) >Evolutionary Design of Group Communication Schedules for Interconnection Networks
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Evolutionary Design of Group Communication Schedules for Interconnection Networks

机译:互连网络的群通信调度的演进设计

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As chip multiprocessors are quickly penetrating new application areas in network and media processing, their interconnection architectures become a subject of optimization. Group communications are frequently used in many parallel algorithms and if their overhead is excessive, performance degrades rapidly with a processor count. This paper deals with the design of a new application-specific Bayesian Optimization Algorithm (BOA) and the use of BOA and HSGA (Hybrid parallel Genetic Simulated Annealing) to design optimal communication algorithms for an arbitrary topology of the interconnection network. Each of these algorithms is targeted for a different switching technique. The group communication schedules were designed for an asymmetrical AMP network on one hand and for the benchmark hypercube network on the other, using SF (Store-and-Forward) and WH (Wormhole) switching.
机译:随着芯片多处理器在网络和媒体处理中迅速渗透到新的应用领域,它们的互连体系结构成为优化的主题。组通信经常在许多并行算法中使用,如果它们的开销过大,则性能会随着处理器数量的增加而迅速下降。本文研究了一种新的专用贝叶斯优化算法(BOA)的设计,并使用BOA和HSGA(混合并行遗传模拟退火)为互连网络的任意拓扑设计最佳通信算法。这些算法中的每一个都针对不同的切换技术。使用SF(存储转发)和WH(蠕虫洞)切换,一方面为非对称AMP网络设计了群组通信计划,另一方面为基准超立方体网络设计了群组通信计划。

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