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PRODUCING SPIKE-TIMING DEPENDENT PLASTICITY IN AN ULTRA-DENSE SYNAPSE CROSS-BAR ARRAY

机译:在超密集突触跨栏阵列中生成与时机相关的可塑性

摘要

Embodiments of the invention relate to producing spike-timing dependent plasticity in an ultra-dense synapse cross-bar array for neuromorphic systems. An aspect of the invention includes when an electronic neuron spikes, an alert pulse is sent from the spiking electronic neuron to each electronic neuron connected to the spiking electronic neuron. When the spiking electronic neuron sends the alert pulse, a gate pulse is sent from the spiking electronic neuron to each electronic neuron connected to the spiking electronic neuron. When each electronic neuron receives the alert pulse, a response pulse is sent from each electronic neuron receiving the alert pulse to the spiking electronic neuron. The response pulse is a function of time since a last spiking of the electronic neuron receiving the alert pulse. In addition, the combination of the gate pulse and response pulse is capable increasing or decreasing conductance of a variable state resistor.
机译:本发明的实施例涉及在用于神经形态系统的超密集突触交叉杆阵列中产生依赖于尖峰时间的可塑性。本发明的一方面包括当电子神经元尖峰时,从尖峰电子神经元向连接到尖峰电子神经元的每个电子神经元发送警报脉冲。当尖峰电子神经元发送警报脉冲时,门脉冲从尖峰电子神经元发送到连接到尖峰电子神经元的每个电子神经元。当每个电子神经元接收到警报脉冲时,从接收警报脉冲的每个电子神经元向尖峰电子神经元发送响应脉冲。自接收警报脉冲的电子神经元的最后一次尖峰以来,响应脉冲是时间的函数。另外,栅极脉冲和响应脉冲的组合能够增加或减小可变状态电阻器的电导。

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