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On 2-dimensional consecutive systems once again

机译:再次在二维连续系统上

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Consecutive systems are attractive due to their potential for enhancing nano-architectures, as being able to significantly boost reliability. Additionally, communication at the nanoscale is also going to need methods allowing to achieve lower transmission bit error rates. In particular, nano-technologies like, e.g., molecular, nano-magnetic, nano-fluidic, and even FinFETs, should benefit from consecutive systems, a well-established redundancy scheme. This paper will start by briefly mentioning previous results for 1-dimensional linear consecutive-k-out-of-n:F systems with statistically independent components having the same failure probability q, before focusing on 2-dimensional consecutive systems and their variations. We shall go over a few bounds for estimating their reliability and shall present simulations for particular 2-dimensional cases. These will show that bounds are quite accurate, some of them even matching the reliability of the particular 2-dimensional consecutive systems considered. Conclusions are ending the paper.
机译:连续系统之所以具有吸引力,是因为它们具有增强纳米体系结构的潜力,因为它能够显着提高可靠性。另外,纳米级的通信也将需要允许实现较低传输误码率的方法。特别地,诸如分子,纳米磁性,纳米流体,甚至FinFET之类的纳米技术应该受益于连续系统,这是一种公认​​的冗余方案。在关注二维连续系统及其变化之前,本文将首先简要提及具有统计独立分量且故障概率为q的一维线性连续k-out-n:F系统的先前结果。我们将越过几个边界来估计其可靠性,并针对特定的二维情况进行仿真。这些将表明边界非常准确,其中一些边界甚至与所考虑的特定二维连续系统的可靠性匹配。结论正在结束本文。

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