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Customisation of on-chip network interconnects and experiments in field-programmable gate arrays

机译:片上网络互连的定制和现场可编程门阵列中的实验

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Conventional rigid and generalpurpose on-chip networks occupy significant logic and wire resources in fieldprogrammable gate arrays (FPGAs). To reduce the area cost, the authors present a topology customisation technique, using which on-demand network interconnects are systematically established in reconfigurable hardware. First, the authors present a design of a customised crossbar switch, where physical topologies are identical to logical topologies for a given application. A multiprocessor system combined with the presented custom crossbar has been designed with the ESPAM design environment and prototyped in the FPGA device. Experiments with practical applications show that the custom crossbar occupies significantly less area, maintains higher performance and reduces the power consumption, when compared with the general-purpose crossbars. In addition, the authors present that configuration performance and cost can be improved by reducing the functional area cost in FPGAs. Second, a customisation technique for the circuit-switched network-on-chip (NoC) is presented, where only necessary half-duplex interconnects are established for a given application mapping. The presented customised NoC is implemented in FPGA and results indicate that the area is reduced by 66%, when compared with the general-purpose networks.
机译:传统的刚性和通用片上网络在现场可编程门阵列(FPGA)中占用了大量逻辑和线路资源。为了降低面积成本,作者提出了一种拓扑定制技术,使用该技术可以在可重新配置的硬件中系统地建立按需网络互连。首先,作者提出了一种定制的交叉开关的设计,其中的物理拓扑与给定应用程序的逻辑拓扑相同。已使用ESPAM设计环境设计了与所呈现的自定义交叉开关相结合的多处理器系统,并在FPGA器件中进行了原型设计。实际应用的实验表明,与通用纵横制开关相比,定制纵横制开关占用的面积显着减小,保持了较高的性能,并降低了功耗。此外,作者们提出,可以通过降低FPGA的功能区成本来提高配置性能和成本。其次,提出了一种电路交换片上网络(NoC)的定制技术,其中对于给定的应用程序映射仅建立必要的半双工互连。呈现的定制NoC在FPGA中实现,结果表明,与通用网络相比,面积减少了66%。

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