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Biased Voting for Improved Yield in Nanoscale Fabrics

机译:纳米尺度织物提高产量的偏见投票

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Various fault-tolerance techniques have been proposed in recent years to tolerate the high defect rates expected in emerging nanofabrics with unconventional nano-manufacturing techniques. The proposed techniques include modular redundancy schemes that use majority voters to vote on the '0' or 1' outputs of redundant modules. Novel nanoscale computational fabrics employ new circuit and logic styles where the likelihood of occurrence of faulty '1's and faulty '0's may not be identical. This provides an opportunity for using biased voting (towards logic '1' or '0') to achieve improved yield. In this paper, we investigate the effectiveness of using biased voters as opposed to majority voters in such nanoscale fabrics. We analyze the Nanoscale Application Specific Integrated Circuits (NASIC) fabric and show that faulty '1's may be up to 12x more likely than faulty '0's, paving the way for applying biased voting successfully. For NASIC modules with a fan-in of 10, biased voting configurations are shown to achieve more than 27% increase in the probability of producing a correct output.
机译:近年来提出了各种容错技术,以容忍具有非传统纳米制造技术的新出现纳米制剂中所期望的高缺陷率。所提出的技术包括模块化冗余方案,该方案使用大多数选民对冗余模块的“0”或1'输出进行投票。新型纳米级计算织物采用新的电路和逻辑样式,其中发生故障'1和故障'0的发生可能性不相同。这提供了使用偏见投票(朝向逻辑'1'或'0')的机会,以实现提高的产量。在本文中,我们调查使用偏见的选民在此类纳米级织物中的多数选民中使用偏差选民的有效性。我们分析了纳米级应用特定的集成电路(NASIC)织物,并显示出故障的“1”可能比错误的“0更可能达到12倍,以便成功地偏向偏见投票的方式。对于具有10个风扇的鼻模块,显示出偏置的投票配置,在产生正确输出的可能性概率增加超过27%以上。

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