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浅析剧场中会议灯光的方案及特点——以江苏大剧院综艺厅会议活动为例
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作者 周伊丹 《演艺科技》 2020年第11期1-5,共5页
以江苏大剧院综艺厅为例,介绍剧场中会议用灯具的选择、信号系统及电源安全保障、布光特点、转播灯光的要求等。
关键词 江苏大剧院 会议灯光 信号系统 安全保障 布光特点 转播灯光
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浅析4K全媒体新闻演播中心灯光方案——以贵州广播电视台为例 被引量:4
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作者 姚慧琪 金明 施剑锋 《演艺科技》 2021年第3期57-61,共5页
介绍贵州广播电视台4K超高清全媒体新闻演播中心的整体规划、灯光系统的设计理念、设计方案以及布光方法等。
关键词 4K超高清 全媒体演播室 灯光系统 设计方案 灯具选择 布光特点
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A calculation method for low dynamic vehicle velocity based on fusion of optical flow and feature point matching
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作者 Liu Di Chen Xiyuan 《Journal of Southeast University(English Edition)》 EI CAS 2017年第4期426-431,共6页
Aming at the problem of the low accuracy of low dynamic vehicle velocity under the environment of uneven distribution of light intensity,an improved adaptive Kalman filter method for the velocity error estimate by the... Aming at the problem of the low accuracy of low dynamic vehicle velocity under the environment of uneven distribution of light intensity,an improved adaptive Kalman filter method for the velocity error estimate by the fusion of optical flow tracking and scale mvaiant feature transform(SIFT)is proposed.The algorithm introduces anonlinear fuzzy membership function and the filter residual for the noise covariance matrix in the adaptive adjustment process.In the process of calculating the velocity of the vehicle,the tracking and matching of the inter-frame displacement a d the vehicle velocity calculation a e carried out by using the optical fow tracing and the SIF'T methods,respectively.Meanwhile,the velocity difference between theoutputs of thesetwo methods is used as the observation of the improved adaptive Kalman filter.Finally,the velocity calculated by the optical fow method is corrected by using the velocity error estimate of the output of the modified adaptive Kalman filter.The results of semi-physical experiments show that the maximum velocityeror of the fusion algorithm is decreased by29%than that of the optical fow method,and the computation time is reduced by80%compared with the SIFT method. 展开更多
关键词 VELOCITY optical fow feature point matching non-uniform light intensity distribution
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