结合PCHM动态功率门控的基于区域的FPGA结构的新型功率感知布局

Ce Li, Yiping Dong, Takahiro Watanabe
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引用次数: 10

摘要

在相同的规模下,FPGA的功耗要比ASIC大。本文提出了一种基于功率控制硬宏(PCHM)的粗粒度功率门控FPGA架构,以动态降低功耗。提出了基于睡眠区域的定位算法。在对CAD框架进行改进后,详细研究了新FPGA结构在不同区域尺寸下的支持情况。结果表明,所提出的结构和放置算法比普通结构平均降低51%的功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New power-aware placement for region-based FPGA architecture combined with dynamic power gating by PCHM
The power consumption of FPGA is larger than that of ASIC to perform the same function in the same scaling. In this paper, we propose a Power Control Hard Macro (PCHM) based coarse-grained power gating FPGA architecture to dynamically reduce the power consumption. The algorithm of the placement based on sleep region is presented. After enhancing the CAD framework, a detailed study is given under different region size supported by the new FPGA architecture. As a result, the proposed architecture and the placement algorithm can reduce 51% power consumption on average compared with normal architecture.
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