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The Case for Embedded Networks on Chip on Field-Programmable Gate Arrays

机译:现场可编程门阵列芯片上嵌入式网络的案例

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摘要

FPGAs are becoming more powerful computing devices as a result of increased logic capacity, inclusion of embedded processors and I/O controllers, and the rise of high-level programming-language-to-hardware compilers. However, accelerating computing applications on FPGAs is still challenging, partly due to the need for low-level hardware design of a system-level interconnect to integrate the application components. The authors propose augmenting the FPGA architecture with an embedded NoC to implement the system-level communication infrastructure and mitigate the hardware design challenges faced by current bus-based interconnects. With a flexible interface between the NoC and the FPGA fabric, an embedded NoC maintains the configurability of the FPGA, and simplifies distribution of I/O data throughout the chip. Embedded NoCs are always more energy-efficient compared with custom buses configured into the fabric by commercial system integration tools, and they save area for most systems as well.
机译:由于逻辑容量的增加,嵌入式处理器和I / O控制器的加入以及高级编程语言到硬件编译器的兴起,FPGA正在变得越来越强大。但是,加速FPGA上的计算应用仍然具有挑战性,部分原因是需要对系统级互连进行低级硬件设计以集成应用组件。作者建议使用嵌入式NoC来增强FPGA体系结构,以实现系统级的通信基础架构,并缓解当前基于总线的互连面临的硬件设计挑战。通过在NoC和FPGA架构之间的灵活接口,嵌入式NoC保持了FP​​GA的可配置性,并简化了整个芯片中I / O数据的分配。与通过商用系统集成工具配置到结构中的自定义总线相比,嵌入式NoC始终具有更高的能源效率,并且它们还节省了大多数系统的面积。

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