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Virtual signal processors

机译:虚拟信号处理器

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The introduction of SRAM-based field programmable gate arrays (FPGAs) has opened up a new dimension to parallel computing architectures. This paper describes an alternative approach to parallel computing - reconfigurable or virtual parallel processing (VPP). Rather than mapping an application onto a given parallel machine, the WP approach synthesizes the appropriate type and number of processing elements, as well as the interconnection topology, that is optimal for the application. For each application, configuration data is downloaded to the machine that personalizes the hardware for the task at hand. The paper provides a brief description of the authors reconfigurable computer, Archimedes. The benefits of the VPP approach are highlighted by two example applications -- the 2-D m and a narrow-band digital filter. A novel parallel implementation of a polynomial transform based 2-D transform is described and compared with results for distributed memory parallel machines that have been reported in the literature. The comparison highlights the computational advantage provided by reconfigurable computing. The digital filter implementation employs sigma--delta modulation encoding to reduce the arithmetic workload. The application of this technology to a communications receiver is explained.
机译:基于SRAM的现场可编程门阵列(FPGA)的引入为并行计算架构开辟了新的领域。本文介绍了并行计算的另一种方法-可重新配置或虚拟并行处理(VPP)。 WP方法不是将应用程序映射到给定的并行计算机上,而是综合了适合该应用程序的适当类型和数量的处理元素以及互连拓扑。对于每个应用程序,配置数据都被下载到机器上,该机器可以个性化手头任务的硬件。本文简要介绍了作者的可重构计算机Archimedes。两个示例应用程序突出了VPP方法的好处-2-D m和窄带数字滤波器。描述了一种基于多项式变换的2-D变换的新颖并行实现,并将其与文献中已报道的分布式内存并行机的结果进行了比较。比较突出显示了可重构计算所提供的计算优势。数字滤波器实现采用sigma-delta调制编码来减少算术工作量。解释了该技术在通信接收机中的应用。

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