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发表时间:
2014
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通讯作者:
Alvaro Velasquez
Alvaro Velasquez
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作者:
Alvaro Velasquez

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基于Memristor的Nano-Crossbar计算是一种革命性的计算范式,它消除了传统的von Neumann的内存和计算单元的体系结构分离。使用Memristor电路计算布尔公式的计算已成为最近进行的一些研究的主题。通常,横杆计算也是一个积极关注的话题,但是偷偷摸摸的路径在普遍的通用横杆计算范式的设计方面构成了障碍。在本文中,我们证明可以利用纳米 - 杂交计算中的偷偷摸摸的路径来设计布尔形式评估策略。我们在简单的布尔公式和1位添加电路上演示了我们的方法。我们还猜想,我们的纳米杂交设计将是合成高性能定制算术和逻辑电路的有效方法。
Memristor-based nano-crossbar computing is a revolutionary computing paradigm that does away with the traditional Von Neumann architectural separation of memory and computation units. The computation of Boolean formulas using memristor circuits has been a subject of several recent investigations. Crossbar computing, in general, has also been a topic of active interest, but sneak paths have posed a hurdle in the design of pervasive general-purpose crossbar computing paradigms. In this paper, we demonstrate that sneak paths in nano-crossbar computing can be exploited to design a Boolean-formula evaluation strategy. We demonstrate our approach on a simple Boolean formula and a 1-bit addition circuit. We also conjecture that our nano-crossbar design will be an effective approach for synthesizing high-performance customized arithmetic and logic circuits.