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It's all about the signal routing: Understanding the reliability of QCA circuits and systems.

机译:全部与信号路由有关:了解QCA电路和系统的可靠性。

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摘要

Much has been written and predicted about the demise of Moore's law in advancing computing technology. While many of these predictions have fallen by the wayside, the end may be approaching since the "red brick wall" (areas where scaling progress may end if breakthroughs are not identified) is barely being pushed further into the future. As a result, numerous nanoelectronic devices are being investigated to determine if they can augment or replace silicon-based transistors. Due to a variety of factors, a significant challenge when building a system from any of these devices is how to produce a reliable, predictable system from unreliable components with unpredictable behavior?;In this dissertation, the reliability aspects of a specific nanoelectronic architecture -- Quantum-dot Cellular Automata (QCA) -- are explored. QCA is a unique architecture to explore since the same basic device, a simple cell, is used to implement both logic and interconnect components. The device itself can be implemented using different physical properties, which in turn, influences how the signal routing within the QCA circuits and systems should be designed. This dissertation computes the reliability of QCA circuits and systems based on the reliabilities of the underlying components. This is used to identify how reliable the components should be to achieve a target circuit or system reliability and to identify which components are the most critical to circuit reliability. Additionally, various techniques for improving reliability through the use of hardware redundancy are evaluated to determine how a reliable QCA system should be designed. Lastly, various organizations for a specific interconnect component, a straight wire segment, built from a specific device type, are compared to determine how reliable a component can be. Throughout this dissertation, a constant theme is observed: the organization and reliability of the signal routing has a major impact on circuit and system reliability.
机译:关于摩尔定律在计算机技术发展中的灭亡,已经有很多著作和预言。尽管这些预测中的许多已经被抛弃了,但由于“红砖墙”(如果未确定突破口,定标进度可能会结束的区域)几乎没有被推到未来,因此结局可能正在逼近。结果,正在研究许多纳米电子器件以确定它们是否可以增加或替代基于硅的晶体管。由于各种因素,使用这些设备中的任何一个构建系统时面临的重大挑战是如何从具有不可靠行为的不可靠组件中生成可靠,可预测的系统?在本论文中,特定纳米电子体系结构的可靠性方面-量子点元胞自动机(QCA)-进行了探索。由于使用同一基本设备(一个简单的单元)来实现逻辑和互连组件,因此QCA是一种独特的架构。设备本身可以使用不同的物理属性来实现,这反过来又影响了QCA电路和系统中信号路由的设计方式。本文根据底层组件的可靠性来计算QCA电路和系统的可靠性。这用于确定组件达到目标电路或系统可靠性的可靠性,并确定哪些组件对电路可靠性最关键。此外,评估了各种通过使用硬件冗余来提高可靠性的技术,以确定应如何设计可靠的QCA系统。最后,比较了特定互连组件(从特定设备类型构建的直线段)的各种组织,以确定组件的可靠性。在整个论文中,始终观察到一个不变的主题:信号路由的组织和可靠性对电路和系统的可靠性有重大影响。

著录项

  • 作者

    Dysart, Timothy J.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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