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Analytical performance model for FPGA-based reconfigurable computing

机译:基于FPGA的可重构计算的分析性能模型

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Traditionally, FPGA designers make use of CAD tools for evaluating architectures in terms of the area, delay and power. Recently, analytical methods have been proposed to optimize the architectures faster and easier. A complete analytical power, area and delay model have received little attention to date. In addition, previous works use analytical methods to optimize general-purpose FPGA architectures. Using analytical models for optimizing application-specific FPGA architectures are interesting subjects in the reconfigurable computing field. In this way, designers can investigate the optimized architecture for a set of application circuits and the consumers can find their best architecture among a variety of devices which is optimal for their specific work. In this paper, we complete an analytical FPGA performance model by presenting an analytical model to estimate the dynamic and leakage power and by integrating it into the geometric programming framework. This way, we are able to rapidly analyze various FPGA architectures and select the best one in terms of power consumption as well as area and delay. In the next step, we extend the model for optimizing FPGA architectures for a set of applications. A case of the best architecture for two specific circuits has been investigated in this paper. (C) 2015 Elsevier B.V. All rights reserved.
机译:传统上,FPGA设计人员使用CAD工具根据面积,延迟和功耗评估架构。近来,已经提出了分析方法以更快和更容易地优化架构。迄今为止,完整的分析能力,面积和延迟模型很少受到关注。此外,先前的工作使用分析方法来优化通用FPGA架构。在可重配置计算领域中,使用分析模型来优化专用FPGA架构是有趣的主题。通过这种方式,设计人员可以研究一组应用电路的优化架构,而消费者可以在各种设备中找到最适合其特定工作的最佳架构。在本文中,我们通过提供一个评估动态和泄漏功率的分析模型并将其集成到几何编程框架中来完善FPGA的分析性能模型。这样,我们能够快速分析各种FPGA架构,并在功耗,面积和延迟方面选择最佳的架构。在下一步中,我们扩展模型以针对一组应用程序优化FPGA架构。本文研究了针对两种特定电路的最佳架构。 (C)2015 Elsevier B.V.保留所有权利。

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