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Cunoc: A Dynamic Scalable Communication Structure For Dynamically Reconfigurable Fpgas

机译:Cunoc:动态可重构Fpgas的动态可扩展通信结构

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The growing complexity of integrated circuits imposes to the designers to change and direct the traditional bus-based design concepts towards NoC-based. Networks on-chip (NoCs) are emerging as a viable solution to the existing interconnection architectures which are especially characterized by high level of parallelism, high performances and scalability. The already proposed NoC architectures in the literature are destined to System-on-chip (SoCs) designs. For a FPGA-based system, in order to take all benefits from this technology, the proposed NoCs are not suitable. In this paper, we present a new paradigm called CuNoC for intercommunication between modules dynamically placed on a chip for the FPGA-based reconfigurable devices. The CuNoC is based on a scalable communication unit characterized by unique architecture, arbitration policy base on the priority-to-the-right rule and modified XY adaptive routing algorithm. The CuNoC is namely adapted and suited to the FPGA-based reconfigurable devices but it can be also adapted with small modifications to all other systems which need an efficient communication medium. We present the basic concept of this communication approach, its main advantages and drawbacks with regards to the other main already proposed NoC approaches and we prove its feasibility on examples through the simulations. Performance evaluation and implementation results are also given.
机译:集成电路日益复杂,迫使设计人员改变传统的基于总线的设计理念,并将其导向基于NoC的设计。片上网络(NoC)逐渐成为现有互连体系结构的可行解决方案,这些互连体系结构特别具有高并行度,高性能和可伸缩性的特点。文献中已经提出的NoC架构将运用于片上系统(SoC)设计。对于基于FPGA的系统,为了充分利用该技术的好处,建议的NoC不适合。在本文中,我们提出了一个新的范例,称为CuNoC,用于基于FPGA的可重配置设备的动态放置在芯片上的模块之间的相互通信。 CuNoC基于可扩展的通信单元,该单元具有独特的体系结构,基于优先级优先规则的仲裁策略以及经过修改的XY自适应路由算法。 CuNoC即适合并适用于基于FPGA的可重配置设备,但也可以稍作改动就适合需要有效通信介质的所有其他系统。我们介绍了这种通信方法的基本概念,以及相对于其他已经提出的主要NoC方法的主要优缺点,并通过仿真证明了其可行性。还给出了绩效评估和实施结果。

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