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Stochastic Computing Based on Volatile GeSe Ovonic Threshold Switching Selectors

机译:基于挥发性GESE ovex阈值切换选择器的随机计算

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Stochastic computing (SC) is a special type of digital compute strategy where values are represented by the probability of 1 and 0 in stochastic bit streams, which leads to superior hardware simplicity and error-tolerance. In this letter, we propose and demonstrate SC with GeSe-based Ovonic Threshold Switching (OTS) selector devices by exploiting their probabilistic switching behavior. The stochastic bit streams generated by OTS are demonstrated with good computation accuracy in both multiplication operation and image processing circuit. Moreover, the bit distribution has been statistically studied and linked to the collective defect de/localization behavior in the chalcogenide material. Weibull distribution of the delay time supports the origin of such probabilistic switching, facilitates further optimization of the operation condition, and lays the foundation for device modelling and circuit design. Considering its other advantages such as simple structure, fast speed, and volatile nature, OTS is a promising material for implementing SC in a wide range of novel applications, such as image processors, neural networks, control systems and reliability analysis.
机译:随机计算(SC)是一种特殊类型的数字计算策略,其中值在随机比特流中的概率为1和0表示,这导致了优异的硬​​件简单性和耐堵塞。在这封信中,我们通过利用其概率切换行为来提出并演示SC与基于GESE的ovonic阈值切换(OTS)选择器件。在乘法操作和图像处理电路中,通过良好的计算精度来说明由OTS产生的随机比特流。此外,在核化物材料中已经统计研究和与集体缺陷DE /定位行为有统计研究和连接。 Weibull分布延迟时间支持这种概率切换的起源,便于进一步优化操作条件,并为设备建模和电路设计奠定了基础。考虑到结构简单,快速和挥发性,OTS是一种有希望的材料,用于在各种新颖应用中实现SC,例如图像处理器,神经网络,控制系统和可靠性分析。

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