片上网络架构中比例公平的最佳努力流控制

M. S. Talebi, Fahimeh Jafari, A. Khonsari, M. Moghaddam
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引用次数: 6

摘要

最近,研究界见证了由大量嵌入式处理器组成的多处理器片上系统(MPSoC)平台的出现。特别是,基于片上网络(NoC)的互连网络方法在MP-SoC设计中即将实现高性能潜力。更重要的是,许多完善的网络和分布式系统方案启发了NoC设计方法。在noc的设计过程中,采用端到端拥塞控制变得越来越紧迫。本文提出了弹性流和流混合交通存在时的集中拥塞方案。在本文中,我们将期望的最佳努力(BE)源速率建模为效用最大化问题的解决方案,该问题受链路容量的约束,同时将保证服务(GS)流量的服务需求保持在期望的水平。我们提出了一种迭代算法作为求解最大化问题,该算法具有低复杂度和快速收敛的优点。所提出的算法可以由一个具有低计算和通信开销的集中控制器来实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proportionally-fair best effort flow control in network-on-chip architectures
The research community has recently witnessed the emergence of multi-processor system on chip (MPSoC) platforms consisting of a large set of embedded processors. Particularly, Interconnect networks methodology based on Network-on-Chip (NoC) in MP-SoC design is imminent to achieve high performance potential. More importantly, many well established schemes of networking and distributed systems inspire NoC design methodologies. Employing end-to-end congestion control is becoming more imminent in the design process of NoCs. This paper presents a centralized congestion scheme in the presence of both elastic and streaming flow traffic mixture. In this paper, we model the desired Best Effort (BE) source rates as the solution to a utility maximization problem which is constrained with link capacities while preserving Guaranteed Service (GS) traffics services requirements at the desired level. We proposed an iterative algorithm as the solution to the maximization problem which has the benefit of low complexity and fast convergence. The proposed algorithm may be implemented by a centralized controller with low computation and communication overhead.
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