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Silicon synapse designs for VLSI neuromorphic platform

机译:VLSI神经形态平台的硅突触设计

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Analog silicon neurons were proven to be a promising solution for VLSI neuromorphic platform to implement massively scalable computing systems. They possess the advantages of consuming less power and silicon area than digitally designed neurons. This paper compares the differences in power and area consumption between two methods of synapse design for analog neuron models: time-based modulation and current-based modulation. The obtained results demonstrate that under the same technology process (ST CMOS 65nm), the neuron that uses time-based modulation consumes less power (almost six times) and silicon area (about thirty times) but higher energy (twelve times) than that of the current-based modulation.
机译:已被证明是模拟硅神经元作为VLSI神经形态平台实现大型可扩展计算系统的有希望的解决方案。它们具有比数位设计的神经元消耗更少的功率和硅区域的优点。本文比较了模拟神经元模型两种突触设计方法的功率和面积消耗的差异:基于时间的调制和基于电流的调制。所获得的结果表明,在相同的技术过程(ST CMOS 65nm)下,使用基于时间的调制的神经元消耗更少的功率(近六次)和硅面积(约三十次),但能量越高(12次)基于目前的调制。

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