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Virtual Channels and Multiple Physical Networks: Two Alternatives to Improve NoC Performance

机译:虚拟通道和多个物理网络:提高NoC性能的两种选择

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Virtual channels (VC) and multiple physical (MP) networks are two alternative methods to provide better performance, support quality-of-service, and avoid protocol deadlocks in packet-switched network-on-chip design. Since contention can be dynamically resolved, VCs give lower zero-load packet latency than MPs; however, MPs can be built with simpler routers and narrower channels, which improves the target clock frequency, power dissipation, and area occupation. In this paper, we present a comprehensive comparative analysis of these two design approaches, including an analytical model, synthesis-based designs with both FPGAs and standard-cell libraries, and system-level simulations. The result of our analysis shows that one solution does not outperform the other in all the tested scenarios. Instead, each approach has its own specific strengths and weaknesses. Hence, we identify the scenarios where each method is best suited to achieve high performance, very low power dissipation, and increased design flexibility.
机译:虚拟通道(VC)和多个物理(MP)网络是提供更好的性能,支持服务质量并避免数据包交换片上网络设计中的协议死锁的两种替代方法。由于争用可以动态解决,因此VC所提供的零负荷数据包延迟要比MP更低。但是,MP可以使用更简单的路由器和更窄的通道来构建,从而改善了目标时钟频率,功耗和面积占用。在本文中,我们对这两种设计方法进行了全面的比较分析,包括分析模型,具有FPGA和标准单元库的基于综合的设计以及系统级仿真。我们的分析结果表明,在所有测试的场景中,一种解决方案都没有优于另一种解决方案。相反,每种方法都有其特定的优点和缺点。因此,我们确定了每种方法最适合实现高性能,极低功耗和增加设计灵活性的方案。

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