计算密集型数据挖掘应用中基于fpga的可重构硬件

D. Perera, K. F. Li
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引用次数: 27

摘要

分布式系统技术的进步使网格、云和互联网计算等新的计算范式成为可能。由于这些范例的逻辑和物理组织,便携式和嵌入式计算设备正在被开发,并自然地成为这些系统的组成部分。除了严格的面积和功耗要求外,诸如上市时间和竞争利润等设计限制也对嵌入式硬件设计人员构成了严峻的挑战。克服这些挑战最有希望的途径之一是可重构硬件。在这项工作中,研究了基于fpga的可重构硬件。以主成分分析(PCA)为例,设计并实现了主成分分析(PCA)这一经典的数据降维和优势特征提取技术,并在FPGA上实现,以便在执行过程中动态重新配置。使用部分手写分析应用程序和基准数据集,进行实验以评估可重构硬件的可行性、效率和灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FPGA-Based Reconfigurable Hardware for Compute Intensive Data Mining Applications
Advances in distributed system technology have enabled new computation paradigms such as Grid, Cloud, and Internet computing. Due to the logical and physical organization of these paradigms, portable and embedded computing devices are being developed and naturally becoming an integral part of these systems. In addition to stringent area and power requirements, design constraints such as time-to-market and competitive margin pose serious challenges to embedded hardware designers. One of the most promising avenues to overcome these challenges is reconfigurable hardware. In this work, FPGA-based reconfigurable hardware is examined. As a case study, Principal Component Analysis (PCA), the classical technique to reduce the dimensionality of data and to extract dominant features, is designed and implemented as hardware on FPGA to be reconfigured dynamically during execution. Using part of a handwriting analysis application together with a benchmark dataset, experiments are performed to evaluate the feasibility, efficiency, and flexibility of reconfigurable hardware.
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