论文标题
挥发性电阻转换记忆的神经形态网络的决策
Decision Making by a Neuromorphic Network of Volatile Resistive Switching Memories
论文作者
论文摘要
在相关的生物学时间尺度上使用电子设备的电子设备的必要性促进了对新的新兴记忆的研究。基于Ag的挥发性电阻切换记忆(RRAMS)具有与生物学机制相似的设备电导的自发变化。他们依靠金属导电灯丝的形成和自dients和自dients的氧化物层,其保留时间从几毫秒到几秒钟不等,根据通过设备流动的最大电流,可以极大地调节。在这里,我们证明了一种基于能够模仿生物决策行为原理的挥发性刺激的神经形态系统,并解决了两种替代强制选择问题,在这种情况下,要求受试者在不依赖问题的两个可能的替代方案之间做出选择,而不是依靠对问题的精确知识。
The necessity of having an electronic device working in relevant biological time scales with a small footprint boosted the research of a new class of emerging memories. Ag-based volatile resistive switching memories (RRAMs) feature a spontaneous change of device conductance with a similarity to biological mechanisms. They rely on the formation and self-disruption of a metallic conductive filament through an oxide layer, with a retention time ranging from a few milliseconds to several seconds, greatly tunable according to the maximum current which is flowing through the device. Here we prove a neuromorphic system based on volatile-RRAMs able to mimic the principles of biological decision-making behavior and tackle the Two-Alternative Forced Choice problem, where a subject is asked to make a choice between two possible alternatives not relying on a precise knowledge of the problem, rather on noisy perceptions.