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Theoretical Foundations of Memristor Cellular Nonlinear Networks: Memcomputing With Bistable-Like Memristors

机译:忆阻蜂窝非线性网络的理论基础:与双稳态忆失盘的MEMCOMPUTING

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This paper presents the theory of a novel memcomputing paradigm based upon a memristive version of standard Cellular Nonlinear Networks. The insertion of a nonvolatile memristor in the circuit of each cell endows the dynamic array with the capability to store and retrieve data into and from the resistance switching memories, obviating the current need for extra memory blocks. Choosing the parameters of each cell circuit so that the memristors may undergo solely sharp transitions between two states, each processing element may be approximately described at any time as one of two first-order systems. Under this assumption, the classical Dynamic Route Map may be employed to synthesise and analyse the data storage and retrieval genes. A new system-theoretic methodology, called Second-Order Dynamic Route Map, is also introduced for the first time in this paper. This technique allows to study the operating principles of arrays with second-order processing elements, as is the case, in the proposed network, if the set up of cell circuit parameters induces analogue memristive dynamics. This paper shows how the novel tool may be adopted to investigate the operating mechanisms of a cellular array with second-order cells, which compute the element-wise logical OR between two binary images.
机译:本文介绍了基于标准蜂窝非线性网络的Memristive版本的新型MEMComputing范式的理论。在每个单元的电路中插入非易失性映射器的动态阵列具有将数据存储和从电阻切换存储器存储和检索数据的能力,从而避免了对额外存储块的电流需求。选择每个单元电路的参数,使得存储器可以在两个状态之间仅在两个状态之间进行严格的转换,每个处理元件可以随时大致描述为两个一阶系统之一。在这种假设下,可以采用经典动态路线图来合成和分析数据存储和检索基因。本文第一次也推出了一种名为二阶动态路线图的新系统理论方法。该技术允许研究具有二阶处理元件的阵列的操作原理,如所提出的网络,如果单元电路参数的设置引起模拟忆阻动态。本文示出了如何采用新颖工具来研究具有二阶小区的蜂窝阵列的操作机制,其计算元素 - 方向逻辑或两个二进制图像。

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