PVS-NoC: Partial Virtual Channel Sharing NoC Architecture

Khalid Latif, A. Rahmani, L. Guang, T. Seceleanu, H. Tenhunen
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引用次数: 19

Abstract

A novel architecture aiming for ideal performance and overhead tradeoff, PVS-NoC (Partial VC Sharing NoC), is presented. Virtual channel (VC) is an efficient technique to improve network performance, while suffering from large silicon and power overhead. We propose sharing the VC buffers among dual inputs, which provides the performance advantage as conventional VC-based router with minimized overhead. We reason theoretically and demonstrate quantitatively the benefits of proposed architecture by comparing to state-of-the-art NoC routers, with various traffic patterns. Extensive experiments with synthetic and real benchmarks show significant area and power saving with similar performance compared to latest VC based NoC architectures.
PVS-NoC:部分虚拟通道共享NoC架构
提出了一种新的体系结构PVS-NoC (Partial VC Sharing NoC),旨在实现理想的性能和开销平衡。虚拟信道(VC)是一种提高网络性能的有效技术,但存在较大的芯片和功耗开销。我们建议在双输入之间共享VC缓冲区,这提供了传统的基于VC的路由器的性能优势,并且开销最小。我们从理论上进行推理,并通过与具有各种流量模式的最先进的NoC路由器进行比较,定量地展示了所提议架构的好处。与最新的基于VC的NoC架构相比,在合成和真实基准测试中进行的大量实验表明,在类似的性能下,该架构显著节省了面积和功耗。
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