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A Reconfigurable Tile-Based Architecture to Compute FFT and FIR Functions in the Context of Software-Defined Radio

机译:一种基于可重构的基于块的体系结构,用于在软件无线电环境中计算FFT和FIR函数

摘要

Software-defined radio (SDR) is the term used for flexible radio systems that can deal with multiple standards. For an efficient implementation, such systems require appropriate reconfigurable architectures. This paper targets the efficient implementation of the most computationally intensive kernels of two significantly different standards, viz. Bluetooth and HiperLAN/2, on the same reconfigurable hardware. These kernels are FIR filtering and FFT. The designed architecture is based on a two-dimensional arrangement of 17 tiles. Each tile contains a multiplier, an adder, local memory and multiplexers allowing flexible communication with the neighboring tiles. The tile-base data path is complemented with a global controller and various memories. The design has been implemented in SystemC and simulated extensively to prove equivalence with a reference all-software design. It has also been synthesized and turns out to outperform significantly other reconfigurable designs with respect to speed and area.
机译:软件定义无线电(SDR)是用于可以处理多种标准的灵活无线电系统的术语。为了有效实施,此类系统需要适当的可重新配置体系结构。本文的目标是高效执行两种显着不同的标准(即计算量最大)的内核。蓝牙和HiperLAN / 2,在同一可重新配置的硬件上。这些内核是FIR滤波和FFT。设计的架构基于17个图块的二维排列。每个图块都包含一个乘法器,一个加法器,本地存储器和多路复用器,从而可以与相邻图块进行灵活的通信。基于图块的数据路径补充有全局控制器和各种存储器。该设计已在SystemC中实现,并进行了广泛仿真,以证明与参考全软件设计等效。它也已被综合,结果在速度和面积方面明显优于其他可重构设计。

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