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On the Tolerance to Manufacturing Defects in Molecular QCA Tiles for Processing-by-wire

机译:线加工分子QCA瓷砖对制造缺陷的容忍度

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摘要

Among emerging technologies, Quantum-dot Cellular Automata (QCA) relies on innovative computational paradigms. For nano-scale implementation, the so-called processing-by-wire (PBW) paradigm in QCA is very effective as processing takes place, while signal communication is accomplished. This paper analyzes the defect tolerance properties of PBW for manufacturing tiles by molecular QCA cells. Based on a 3×3 grid and various input/output arrangements in QCA cells, different tiles are analyzed and simulated using a coherence vector engine. The functional characterization and polarization level of these tiles for undeposited cell defects are reported and detailed profiles are provided. It is shown that novel features of PBW are possible due to the spatial redundancy of the cells in the tiles that permits to retain at high probability the fault free function in the presence of defects. Moreover, it is shown that QCA tiles are robust and inherently tolerant to cell defects (by logic equivalence, also additional cell defects can be accommodated).
机译:在新兴技术中,量子点元胞自动机(QCA)依靠创新的计算范例。对于纳米规模的实现,在完成信号通信的同时,随着处理的进行,QCA中的所谓的线控处理(PBW)范例非常有效。本文分析了用分子QCA电池制造PBW的缺陷耐受性。基于QCA单元中的3×3网格和各种输入/输出布置,使用相干矢量引擎分析和模拟不同的图块。报告了未沉积的细胞缺陷的这些瓷砖的功能特性和极化水平,并提供了详细的资料。结果表明,PBW的新颖特征是可能的,这是因为图块中单元的空间冗余性使得在存在缺陷的情况下能够以高概率保留无故障功能。此外,已经表明,QCA瓦片是健壮的并且固有地容忍单元缺陷(通过逻辑等效,还可以容纳附加的单元缺陷)。

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