PHLOGON: PHase-based LOGic using Oscillatory Nano-systems

PHLOGON: PHase-based LOGic using Oscillatory Nano-systems
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PHLOGON:使用振荡纳米系统的基于相位的逻辑

DOI:
10.1007/978-3-319-08123-6_29
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发表时间:
2014
期刊:
IEICE Trans. Inf. Syst.
影响因子:
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通讯作者:
J. Roychowdhury
J. Roychowdhury
中科院分区:
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文献类型:
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作者:
Tianshi Wang;J. Roychowdhury

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在本文中,我们重新审视后藤和冯诺依曼的基于相位的逻辑思想,提供增强,可以克服他们以前的实现的主要局限性。我们表明,注入锁定作为中央机制,几乎任何直流供电,自我维持的非线性振荡器-包括电子,自旋电子,生物,光学和机械的-可以用来建立基本组件-包括锁存器和组合元件的相位逻辑为基础的计算架构。我们还讨论了噪声免疫力和潜在的功耗优势,可以在此方案下实现。
In this paper we take a fresh look at Goto and von Neumann’s phase-based logic ideas, provide enhancements that can overcome major limitations of their previous implementations. We show that with injection locking serving as the central mechanism, almost any DC-powered, self-sustaining nonlinear oscillator — including electronic, spintronic, biological, optical and mechanical ones — can be used to build fundamental components — including latches and combinatorial elements in a phase logic based computing architecture. We also discuss noise immunity and potential power dissipation advantages that can be achieved under this scheme.