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Methodology for adapting on-chip interconnect architectures

机译:适应片上互连架构的方法

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Network-on-chip (NoC) has been proposed to solve the scalability problem experienced in bus-based system-on-chip. The main challenge is the ability to predict the quality of service that the network infrastructure provides while meeting other system constraints, namely power and area. Although these architectures are regular with predictable electrical parameters, they may suffer from higher latency and lower throughput. To tackle this issue, the network structure needs to be adaptable in response to the needs of the application. This paper presents a methodology for augmenting an NoC with a programmable infrastructure that allows application-specific adaptation. Based on the developed infrastructure, an algorithm is also presented for static adaptation based on application traffic patterns. To evaluate the proposed methodology of the adaptable NoC, the WK-recursive on-chip interconnect is used as a case study. Simulations are conducted and reported results demonstrate the usefulness of the proposed approach.
机译:已经提出了片上网络(NoC)来解决在基于总线的片上系统中遇到的可扩展性问题。主要挑战是在满足其他系统限制(即功率和面积)的同时,预测网络基础结构提供的服务质量的能力。尽管这些架构是常规的,具有可预测的电参数,但它们可能会遭受更高的延迟和更低的吞吐量。为了解决这个问题,网络结构需要适应应用程序的需求。本文提出了一种通过可编程基础架构扩展NoC的方法,该基础架构允许针对特定应用进行调整。基于开发的基础架构,还提出了一种基于应用程序流量模式的静态自适应算法。为了评估自适应NoC的建议方法,以WK递归片上互连为例。进行了仿真,并报告了结果,证明了该方法的有效性。

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