照明系统是增强现实光学系统的重要组成部分,其体积、照度均匀性、能量利用率直接影响增强现实照明系统的质量,因此在照明系统中对光源二次配光非常重要。针对增强现实系统的自由曲面透镜形式和照明系统开展研究,重点分析准直系统集光...照明系统是增强现实光学系统的重要组成部分,其体积、照度均匀性、能量利用率直接影响增强现实照明系统的质量,因此在照明系统中对光源二次配光非常重要。针对增强现实系统的自由曲面透镜形式和照明系统开展研究,重点分析准直系统集光角度与体积的对应关系,在对光源准直系统的面型构建详细分析基础上,对中心透射边缘反射的折反射式准直系统的面型进行求解,结合偏微分方程法和划分网格法,设计了自由曲面透镜,该系统与偏振分光棱镜共同组成硅基液晶(liquid crystal on silicon,LCoS)照明系统。仿真分析结果表明:系统照度均匀性达到91.96%,若不计偏振影响,照明系统光学效率达到66.6%。该系统具有结构简单紧凑、体积小、质量轻、照度均匀性高等特点,满足增强现实眼镜的需求。展开更多
In this paper, we study epidemic spreading on random surfer networks with infected avoidance (IA) strategy. In particular, we consider that susceptible individuals' moving direction angles are affected by the curre...In this paper, we study epidemic spreading on random surfer networks with infected avoidance (IA) strategy. In particular, we consider that susceptible individuals' moving direction angles are affected by the current location information received from infected individuals through a directed information network. The model is mainly analyzed by discrete-time numerical simulations. The results indicate that the IA strategy can restrain epidemic spreading effectively. However, when long-distance jumps of individuals exist, the IA strategy's effectiveness on restraining epidemic spreading is heavily reduced. Finally, it is found that the influence of the noises from information transferring process on epidemic spreading is indistinctive.展开更多
文摘照明系统是增强现实光学系统的重要组成部分,其体积、照度均匀性、能量利用率直接影响增强现实照明系统的质量,因此在照明系统中对光源二次配光非常重要。针对增强现实系统的自由曲面透镜形式和照明系统开展研究,重点分析准直系统集光角度与体积的对应关系,在对光源准直系统的面型构建详细分析基础上,对中心透射边缘反射的折反射式准直系统的面型进行求解,结合偏微分方程法和划分网格法,设计了自由曲面透镜,该系统与偏振分光棱镜共同组成硅基液晶(liquid crystal on silicon,LCoS)照明系统。仿真分析结果表明:系统照度均匀性达到91.96%,若不计偏振影响,照明系统光学效率达到66.6%。该系统具有结构简单紧凑、体积小、质量轻、照度均匀性高等特点,满足增强现实眼镜的需求。
基金Project supported in part by the National Natural Science Foundation of China(Grant Nos.61403284,61272114,61673303,and 61672112)the Marine Renewable Energy Special Fund Project of the State Oceanic Administration of China(Grant No.GHME2013JS01)
文摘In this paper, we study epidemic spreading on random surfer networks with infected avoidance (IA) strategy. In particular, we consider that susceptible individuals' moving direction angles are affected by the current location information received from infected individuals through a directed information network. The model is mainly analyzed by discrete-time numerical simulations. The results indicate that the IA strategy can restrain epidemic spreading effectively. However, when long-distance jumps of individuals exist, the IA strategy's effectiveness on restraining epidemic spreading is heavily reduced. Finally, it is found that the influence of the noises from information transferring process on epidemic spreading is indistinctive.