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Tolerating Process Variations in Nanophotonic On-chip Networks

机译:纳米光子片上网络中的工艺差异

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Nanophontonic networks, a potential candidate for future networks on-chip, have been challenged for their reliability due to several device-level limitations. One of the main issues is that fabrication errors (a.k.a. process variations) can cause devices to malfunction, rendering communication unreliable. For example, microring resonator, a preferred optical modulator device, may not resonate at the designated wavelength under process variations (PV), leading to communication errors and bandwidth loss.This paper proposes a series of solutions to the wavelength drifting problem of microrings and subsequent bandwidth loss problem of an optical network, due to PV. The objective is to maximize network bandwidth through proper arrangement among microrings and wavelengths with minimum power requirement. Our arrangement, called "MinTrim", solves this problem using simple integer linear programming, adding supplementary microrings and allowing flexible assignment of wavelengths to network nodes as long as the resulting network presents maximal bandwidth. Each step is shown to improve bandwidth provisioning with lower power requirement. Evaluations on a sample network show that a baseline network could lose more than 40% bandwidth due to PV. Such loss can be recovered by MinTrim to produce a network with 98.4% working bandwidth. In addition, the power required in arranging microrings is 39% lower than the baseline. Therefore, MinTrim provides an efficient PV-tolerant solution to improving the reliability of on-chip phontonics.
机译:由于一些设备级的限制,纳米声子网络是未来片上网络的潜在候选者,其可靠性受到了挑战。主要问题之一是制造错误(又称制程变化)会导致设备发生故障,从而导致通信不可靠。例如,微环谐振器(一种首选的光调制器设备)可能不会在工艺变化(PV)下在指定的波长下谐振,从而导致通信错误和带宽损失。本文针对微环及其后的波长漂移问题提出了一系列解决方案由于PV,导致光网络的带宽损失问题。目的是通过以最小的功率需求在微环和波长之间进行适当的安排来最大化网络带宽。我们的方案称为“ MinTrim”,它使用简单的整数线性编程解决此问题,增加了辅助微环,并允许将波长灵活分配给网络节点,只要最终网络呈现最大带宽即可。所示的每个步骤都可以降低带宽需求,从而改善带宽配置。对样本网络的评估表明,由于PV,基准网络可能会损失40%以上的带宽。 MinTrim可以弥补这种损失,以产生具有98.4%的工作带宽的网络。此外,布置微环所需的功率比基线低39%。因此,MinTrim提供了一种有效的耐PV的解决方案,以提高片上声子学的可靠性。

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  • 来源
    《Computer architecture news 》 |2012年第3期| p.142-152| 共11页
  • 作者

    Yi Xu; Jun Yang; Rami Melhem;

  • 作者单位

    Department of Electrical and Computer Engineering University of Pittsburgh;

    Department of Electrical and Computer Engineering University of Pittsburgh;

    Department of Computer Science University of Pittsburgh;

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  • 原文格式 PDF
  • 正文语种 eng
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