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Design of an Asynchronous Switch Based on Butterfly Fat-Tree for Network-on-Chip Applications

机译:基于蝴蝶脂肪树的异步交换机的设计

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The future System-on-Chip (SoC) design will integrate a variety of intellectual properties (IPs). The clocked bus architectures to interconnect the IPs under the deep submicron technology suffer from problems related with the clock distribution, the synchronization of all IPs, the long arbitration delay and the limited bandwidth. These problems can be resolved by adopting new interconnection architecture such as Network-on-Chip (NoC) or the asynchronous design method. In this paper, a design methodology for an asynchronous switch based on butterfly fat-tree topology is proposed. The wormhole switching technique is adopted to reduce the latency and the buffer size. The source-based routing mechanism and the output buffering strategy are used to reduce the switch design cost and increase the performance.
机译:未来的片上系统(SOC)设计将集成各种知识产权(IPS)。在深度亚微米技术下互连IPS的时钟总线架构遭受与时钟分布相关的问题,所有IPS的同步,长仲裁延迟和有限带宽。可以通过采用新的互连架构(如环路上的互连(NOC)或异步设计方法来解决这些问题。本文提出了一种基于蝴蝶脂肪树拓扑的异步开关的设计方法。采用虫洞切换技术来减少延迟和缓冲区尺寸。基于源的路由机制和输出缓冲策略用于降低开关设计成本并提高性能。

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