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Advances in DSP design tool flows for FPGAs

机译:FPGA的DSP设计工具流程的进步

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This paper highlights recent advances in digital signal processing (DSP) design tools for Field-Programmable Gate Arrays (FPGAs), concentrating on model-based design high-level synthesis. Next generation FPGA model-based design tools provide a mechanism for abstracted design definition at the algorithmic rather than implementation level. The tools make use of FPGA structural and timing knowledge, and of mathematical and graph theory techniques to optimize and technology map the algorithm to a pipelined FPGA implementation, controlled by high level parameters and threshold settings. Such tools allow simple design space exploration and retargeting of algorithms to different device families. This design-once and retarget as required method improves productivity over manual hardware description language (HDL) coding, especially for projects which are subject to change. The simple design style, optimized generated hardware and productivity in design change and implementation exploration are highlighted with two examples; a direct radio-frequency (RF) radar design and a simple 8 by 8 beamforming design.
机译:本文重点介绍了用于现场可编程门阵列(FPGA)的数字信号处理(DSP)设计工具的最新进展,重点是基于模型的设计高级综合。下一代基于FPGA模型的设计工具提供了一种在算法而非实现级别上抽象设计定义的机制。这些工具利用FPGA的结构和时序知识,以及数学和图形理论技术来优化算法,并将其映射到由高级参数和阈值设置控制的流水线FPGA实现。此类工具允许进行简单的设计空间探索,并将算法重新定位到不同的设备系列。这种按需设计和重新定位的方法比手动硬件描述语言(HDL)编码提高了生产率,特别是对于可能更改的项目。通过两个示例突出了简单的设计风格,优化的硬件生成和设计变更以及实施探索中的生产率。直接射频(RF)雷达设计和简单的8乘8波束成形设计。

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