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A reconfigurable architecture for real-time digital simulation of neurons

机译:用于神经元实时数字仿真的可重构体系结构

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A major problem in computational neuroscience is the large scale biologically realistic neuron simulations which require massive amount of computing resources, which in turn requires large amount of power. This poses a significant problem when we look towards a potential future where machines have “silicon brains”. In this paper we build on previous VHDL neuron work by building a programmable neuron device housing 116 neurons and 200 synapses to perform realistic, real-time simulations of neuron networks in hardware. This flexible architecture is loaded with the C. Elegans locomotion system that demonstrates that the behavior of the programmable architecture is the same as the behavior of the design from previous work.
机译:计算神经科学中的一个主要问题是大规模生物学上逼真的神经元模拟,这需要大量的计算资源,而这反过来又需要大量的功能。当我们展望机器拥有“硅脑”的潜在未来时,这将构成一个重大问题。在本文中,我们通过构建包含116个神经元和200个突触的可编程神经元设备来在硬件上执行逼真的实时仿真,从而在以前的VHDL神经元工作的基础上进行构建。 C. Elegans移动系统装载了这种灵活的体系结构,该系统演示了可编程体系结构的行为与先前工作中设计的行为相同。

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