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Mimicking Spike-Timing-Dependent Plasticity with Emulated Memristors

机译:用仿真记忆镜模拟峰值时序依赖性可塑性

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Memristors have found application in neuromorphic circuits and it has been shown that, under certain conditions, they may mimic the behavior of neuronal synapses. Experimenting with memristor-based synapses has several problems. Indeed, memristor samples are difficult to obtain and tweaking their parameters to adapt their behavior requires a long fabrication and testing process. For this reason, simulation and emulation become attractive alternatives for the study of memristive systems. We postulate that emulation has the advantage of working with real-world circuits and not stylized simulation models. In this paper, we propose a basic memristor emulation architecture and show that it can be used to mimic certain characteristics of synapses.
机译:椎间盘发现在神经形态电路中的应用,并且已经表明,在某些条件下,它们可能模仿神经元突触的行为。使用基于忆耳的突触的实验有几个问题。实际上,难民样本难以获得和调整它们的参数以适应其行为需要长的制造和测试过程。因此,仿真和仿真成为忆析系统研究的有吸引力的替代方案。我们假设仿真具有与现实世界电路合作的优势,而不是程式化的仿真模型。在本文中,我们提出了一个基本的忆阻器仿真架构,并表明它可以用于模拟突触的某些特征。

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