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A Biologically Plausible Real-time Spiking Neuron Simulation Environment Based on a Multiple-FPGA Platform

机译:基于多FPGA平台的生物合理的实时尖峰神经元仿真环境

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摘要

Neurological research has revealed that neurons encode information in the timing of spikes. Spiking neural network simulations are a flexible and powerful method for investigating the behaviour of such neuronal systems. The spiking neuron models which are used in simulations can be described mathematically, but the continuous time involved in mathematical models needs to be replaced by discrete time steps. An alternative approach, hardware implementation, provides the possibility of generating independent spikes precisely and simultaneously output spike waves in real biological time, under the premise that the spiking neural network implemented in hardware can take full advantage of hardware-timed speed and reliability. In this work we propose a multi-layered biologically plausible real-time spiking neural network simulation platform that can be used to emulate the operation of biological neural systems (such as elements of the visual cortex) and computational models of such systems. The implementation of a layered spiking neural network using the Xilinx Virtex-4 family of Field Programmable Gate Array (FPGA) is presented.
机译:神经学研究表明,神经元在尖峰时刻编码信息。尖峰神经网络仿真是研究此类神经元系统行为的灵活而强大的方法。模拟中使用的尖峰神经元模型可以用数学方式描述,但是数学模型中涉及的连续时间需要用离散的时间步长代替。在硬件中实现的尖峰神经网络可以充分利用硬件定时的速度和可靠性的前提下,硬件实现的另一种方法提供了精确地产生独立的尖峰并同时实时输出尖峰波的可能性。在这项工作中,我们提出了一个多层的,生物学上合理的实时加标神经网络仿真平台,该平台可用于仿真生物神经系统(例如视觉皮层的元素)的运行以及此类系统的计算模型。提出了使用Xilinx Virtex-4系列现场可编程门阵列(FPGA)实现分层加标神经网络的方法。

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  • 来源
    《Computer architecture news》 |2011年第4期|p.78-81|共4页
  • 作者

    Shufan Yang; TM McGinnity;

  • 作者单位

    Intelligent Systems Research Centre, University of Ulster, Magee Campus Derry, Northern Ireland, UK, BT48 7JL;

    Intelligent Systems Research Centre, University of Ulster, Magee Campus Derry, Northern Ireland, UK, BT48 7JL;

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