期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于二维有机晶体的高性能光学突触器件
1
作者 刘逸龙 李晖 +3 位作者 苏琳琳 李欣蔚 杨成东 程淇美 《光电子.激光》 CAS CSCD 北大核心 2024年第9期897-902,共6页
基于冯·诺依曼结构的传统计算机由于内存和处理器的物理分离,性能受到限制。为实现后摩尔时代先进神经形态计算技术的可持续发展,具有存算一体架构的神经形态器件成为一个可选解决方案。文中展示了一种基于光调制的人工突触,其凭... 基于冯·诺依曼结构的传统计算机由于内存和处理器的物理分离,性能受到限制。为实现后摩尔时代先进神经形态计算技术的可持续发展,具有存算一体架构的神经形态器件成为一个可选解决方案。文中展示了一种基于光调制的人工突触,其凭借出色光响应特性,实现了电导的光可调协,并且表现出优异的光电突触行为,成功模拟了包括刺激强化、训练促进和记忆巩固等生物突触的关键行为特征,还评估了器件遗忘的可预测性。这项研究为硬件人工神经网络(artificial neural network,ANN)的实现和感知系统的模拟具有重要意义。 展开更多
关键词 光学突触器件 二维有机晶体 状态可塑性
原文传递
Model predictions for behaviors of sand-nonplastic-fines mixtures using equivalent-skeleton void-ratio state index 被引量:8
2
作者 XIAO Yang SUN YiFei +3 位作者 LIU HanLong XIANG Jia MA QiFeng LONG LeiHang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第6期878-892,共15页
It is a challenge to suggest a constitutive model for describing the stress-strain behavior of sand-fines mixtures due to that these granular mixtures exhibited very complex behaviors at different densities, pressure... It is a challenge to suggest a constitutive model for describing the stress-strain behavior of sand-fines mixtures due to that these granular mixtures exhibited very complex behaviors at different densities, pressures and fines contents. In this study, an elastoplastic constitutive model within the framework of the bounding surface plasticity and critical state theories was proposed for sand-nonplastic-fines mixtures by using the concept of the equivalent-skeleton void ratio and equivalent-skeleton void-ratio state index. The proposed model with a set of material constants calibrated from a few tests could be used to model the fines-dependent and state-dependent behaviors of the sand-nonplastic-fines mixture including the strain- softening and volumetric-expansion behaviors in the drained triaxial compression tests, and also the effects of fines content on the critical state lines in both the deviatoric stress versus mean effective stress and the void ratio versus mean effective stress planes. 展开更多
关键词 sand fines equivalent-skeleton void ratio critical-state strength dilatancy constitutive model
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部