第四届可靠和安全纳米计算研讨会

J. Arlat, C. Constantinescu, R. Iyer, J. Karlsson, M. Nicolaidis
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引用次数: 0

摘要

纳米计算技术有望实现更高的性能、更低的功耗以及更高的功能。然而,这些前所未有的小型设备的可靠性仍然不确定。关注的主要来源是:•纳米器件预计对工艺变化高度敏感。目前用于避免此类变化影响的保护带在未来将不代表可行的解决方案。因此,定时错误可能会更频繁地发生。•针对新材料的新失效模式,预计会给设计和测试工程师带来严峻挑战。•环境引起的错误,如单事件干扰(SEU),可能比传统半导体器件更频繁地发生。•需要新的硬件冗余技术来开发节能系统。•基于纳米技术的系统复杂性的增加将需要改进的计算机辅助设计(CAD)工具,以及更好的验证技术。•纳米计算系统的安全性可能受到针对硬件中新的脆弱区域的恶意攻击的威胁。
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Fourth workshop on dependable and secure nanocomputing
Nanocomputing technologies hold the promise for higher performance, lower power consumption as well as increased functionality. However, the dependability of these unprecedentedly small scale devices remains uncertain. The main sources of concern are: • Nanometer devices are expected to be highly sensitive to process variations. The guard-bands used today for avoiding the impact of such variations will not represent a feasible solution in the future. Thus, timing errors may occur more frequently. • New failure modes, specific to new materials, are expected to raise serious challenges to the design and test engineers. • Environment induced errors, like single event upsets (SEU), are likely to occur more frequently than in the case of conventional semiconductor devices. • New hardware redundancy techniques are needed to enable development of energy efficient systems. • The increased complexity of the systems based on nanotechnology will require improved computer aided design (CAD) tools, as well as better validation techniques. • Security of nanocomputing systems may be threatened by malicious attacks targeting new vulnerable areas in the hardware.
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