纳米、量子和分子计算:我们准备好迎接验证和测试挑战了吗?

S. Shukla, R. Karri, S. Goldstein, F. Brewer, K. Banerjee, S. Basu
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引用次数: 6

摘要

近年来,人们在纳米技术、量子计算和生物启发计算等领域进行了大量的研究。由于我们面临着关于它们的可实现性、架构愿景和设计自动化的各种挑战,展望未来,在高级设计和验证领域做得并不多,并且在如此微小的技术时代思考设计验证和测试的艺术状态。很少有报道的研究工作涉及这些技术的设计和验证挑战。然而,这当然是一个值得关注的问题,因为小型技术将被随机故障所困扰,因此架构设计策略需要改变,以考虑这些随机故障模型,以构建健壮的设计。这种设计的验证还必须捕获技术的随机行为模型,因此传统的验证和测试技术将无法直接工作。我们准备好我们的理论了吗?应对这些挑战的技术和工具?这个充满未来感的小组向技术和计算机辅助设计专家提问,并向机构项目经理询问有关需要克服的技术障碍的问题,以及诸如美国国家科学基金会(NSF)等资助机构如何为这一技术未来做好准备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano, quantum, and molecular computing: are we ready for the validation and test challenges?
In the recent years a lot of research effort is being spent in the areas of nanotechnology, quantum computation, and biologically inspired computing. As we are faced with various challenges regarding their implementability, architectural visions, and design automation, not much has been done in the field of high level design and validation in looking further into the future, and ponder about the state of the art in design validation and test in such miniscule technology era. Very few reported research work have surfaced on the design and validation challenges for these technologies. However, this certainly is a matter of concern because the technology of the small will be ridden with random faults and hence architectural design strategies need to change to take into account these stochastic models of failures to build robust designs. Validation of such designs also have to capture the stochastic behavioral models of the technology, and hence traditional validation and testing techniques will not work directly. Are we getting ready with our theory; technology and tools to address these challenges? This futuristic panel asks technology and computer aided design experts, as well as finding agency program managers questions about the technological barriers to be surpassed, as well as how the funding agencies such as NSF are ramping up for this technological future.
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