首页> 外文期刊>Journal of Circuits, Systems, and Computers >EXPLORATION OF SPATIAL-TEMPORAL DYNAMIC PHENOMENA IN A 32 X 32-CELL STORED PROGRAM TWO-LAYER CNN UNIVERSAL MACHINE CHIP PROTOTYPE
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EXPLORATION OF SPATIAL-TEMPORAL DYNAMIC PHENOMENA IN A 32 X 32-CELL STORED PROGRAM TWO-LAYER CNN UNIVERSAL MACHINE CHIP PROTOTYPE

机译:32 X 32细胞存储程序两层CNN通用机器芯片原型中的时空动态现象的研究

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This paper describes a full-custom mixed-signal chip that embeds digitally programmable analog parallel processing and distributed image memory on a common silicon substrate. The chip was designed and fabricated in a standard 0.5 μm CMOS technology and contains approximately 500 000 transistors. It consists of 1024 processing units arranged into a 32 x 32 grid. Each processing element contains two coupled CNN cores, thus, constituting two parallel layers of 32 X 32 nodes. The functional features of the chip are in accordance with the 2nd Order Complex Cell CNN-UM architecture. It is composed of two CNN layers with programmable inter- and intra-layer connections . between cells. Other features are: cellular, spatial-invariant array architecture; randomly selectable memory of instructions; random storage and retrieval of intermediate images. The chip is capable of completing algorithmic image processing tasks controlled by the user-selected stored instructions. The internal analog circuitry is designed to operate with 7-bits equivalent accuracy. The physical implementation of a CNN containing second order cells allows real-time experiments of complex dynamics and active wave phenomena. Such well-known phenomena from the reaction - diffusion equations are traveling waves, autowaves, and spiral-waves. All of these active waves are demonstrated on-chip. Moreover this chip was specifically designed to be suitable for the computation of biologically inspired retina models. These computational experiments have been carried out in a developmental environment designed for testing and programming the analogic (analog-and-logic) programmable array processors.
机译:本文介绍了一种全定制混合信号芯片,该芯片将数字可编程模拟并行处理和分布式图像存储器嵌入到普通硅基板上。该芯片采用标准的0.5μmCMOS技术进行设计和制造,包含约500 000个晶体管。它由排列成32 x 32网格的1024个处理单元组成。每个处理元素包含两个耦合的CNN核心,因此,构成了32 X 32节点的两个并行层。芯片的功能特征符合二阶复杂单元CNN-UM架构。它由两个具有可编程的层间和层内连接的CNN层组成。细胞之间。其他功能包括:蜂窝,空间不变阵列架构;随机选择的指令存储器;随机存储和检索中间图像。该芯片能够完成由用户选择的存储指令控制的算法图像处理任务。内部模拟电路设计为以7位等效精度运行。包含二阶单元的CNN的物理实现允许对复杂的动力学和活动波现象进行实时实验。从反应-扩散方程式来看,这种众所周知的现象是行波,自波和螺旋波。所有这些有源波均在芯片上演示。此外,该芯片经过专门设计,适用于计算生物学启发的视网膜模型。这些计算实验已经在设计用于测试和编程模拟(模拟和逻辑)可编程阵列处理器的开发环境中进行。

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