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首页> 外文期刊>Journal of Circuits, Systems, and Computers >A FPGA-BASED RECONFIGURABLE PARALLEL ARCHITECTURE FOR HIGH-PERFORMANCE NUMERICAL COMPUTATION
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A FPGA-BASED RECONFIGURABLE PARALLEL ARCHITECTURE FOR HIGH-PERFORMANCE NUMERICAL COMPUTATION

机译:基于FPGA的可重构并行架构,用于高性能数值计算

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摘要

Many real-world engineering problems require high computational power, especially regarding the processing time. Current parallel processing techniques play an important role in reducing the processing time. Recently, reconflgurable computation has gained large attention thanks to its ability to combine hardware performance and software flexibility. Also, the availability of high-density Field Programmable Gate Array devices and corresponding development systems allowed the popularization of reconfigurable computation, encouraging the development of very complex, compact, and powerful systems for custom applications. This work presents an architecture for parallel reconfigurable computation based on the dataflow concept. This architecture allows reconfigurability of the system for many problems and, particularly, for numerical computation. Several experiments were done analyzing the scalability of the architecture, as well as comparing its performance with other approaches. Overall results are relevant and promising. The developed architecture has performance and scalability suited for engineering problems that demand intensive numerical computation.
机译:许多现实世界中的工程问题都需要很高的计算能力,尤其是在处理时间方面。当前的并行处理技术在减少处理时间方面起着重要作用。最近,可重构计算由于具有结合硬件性能和软件灵活性的能力而备受关注。而且,高密度现场可编程门阵列设备和相应的开发系统的可用性使可重构计算得到普及,从而鼓励开发用于定制应用的非常复杂,紧凑且功能强大的系统。这项工作提出了一种基于数据流概念的并行可重配置计算的体系结构。这种体系结构允许系统针对许多问题,尤其是对于数值计算,进行可重新配置。完成了一些实验,分析了该体系结构的可伸缩性,并将其性能与其他方法进行了比较。总体结果是相关且有希望的。开发的体系结构具有适合需要大量数值计算的工程问题的性能和可伸缩性。

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