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首页> 外文期刊>IEICE Electronics Express >Leakage-aware adaptive routing for pipelined on-chip networks in ultra-deep sub-micron technologies
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Leakage-aware adaptive routing for pipelined on-chip networks in ultra-deep sub-micron technologies

机译:超深亚微米技术的流水线片上网络的泄漏感知自适应路由

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References(5) As semiconductor process technology continues to scale down to the ultra-deep sub-micron level, leakage power becomes a critical design constraint for on-chip networks (OCNs). Power gating is widely used to reduce the OCN leakage power; however, it does not work well with adaptive routing owing to its aggressive use of free links and router buffers to achieve high performance. In this paper, a novel leakage-aware adaptive routing algorithm to increase the power-gating effect by routing packets with minimal link activation is proposed. Experimental results show that the proposed algorithm effectively achieves a reduction in the overall network leakage power of up to 11.6% greater than the conventional adaptive routing algorithm, with a little sacrificing network bandwidth.
机译:参考文献(5)随着半导体工艺技术的规模不断缩小到超深亚微米水平,泄漏功率成为片上网络(OCN)的关键设计约束。功率门控广泛用于降低OCN泄漏功率。但是,由于它大量使用免费链接和路由器缓冲区来实现高性能,因此它不适用于自适应路由。本文提出了一种新颖的泄漏感知自适应路由算法,该算法通过以最小的链路激活来路由数据包来提高功率门控效果。实验结果表明,与传统的自适应路由算法相比,所提出的算法可以有效地将总体网络泄漏功率降低多达11.6%,而网络带宽却有所减少。

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