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Design and evaluation of on-line arithmetic for signal processing applications on FPGAs

机译:FPGA信号处理应用的在线算术的设计与评估

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This paper shows the design and the evaluation of on-line arithmetic modules for the most common operators used in DSP applications, using FPGAs as the target technology. The designs are highly optimized for the target technology and the common range of precision in DSP. The results are based on experimental data collected using CAD tools. All designs are synthesized for the same type of devices (Xilinx XC4000) for comparison, avoiding rough estimates of the system performance, and generating a more reliable and detailed comparison of on-line signal processing solutions with other 'state of the art' approaches, such as distributed arithmetic. We show that on-line designs have a hard stand for basic DSP applications that use only addition and multiplication. However, we also show that on-line designs are able to overtake other approaches as the applications become more sophisticated, e.g. when data dependencies exist, or when non constant multiplicands restrict the use of other approaches.
机译:本文展示了DSP应用中最常见的运算符的在线算术模块的设计和评估,使用FPGA作为目标技术。设计对目标技术和DSP中的常见精度范围高度优化。结果基于使用CAD工具收集的实验数据。所有设计都是针对相同类型的设备(Xilinx XC4000)合成的,避免了系统性能的粗略估计,并通过其他“艺术状态”方法产生更可靠和详细的对线路信号处理解决方案的比较,如分布式算术。我们表明,在线设计具有用于仅使用添加和乘法的基本DSP应用程序的硬盘。但是,我们还表明,在线设计能够随着应用变得更复杂而超越其他方法,例如,存在数据依赖性时,或者当非常量多量值限制使用其他方法时。

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