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Real-time object tracking via least squares transformation in spatial and Fourier domains for unmanned aerial vehicles 被引量:4
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作者 Xiaoyuan YANG Ridong ZHU +1 位作者 Jingkai WANG Zhengze LI 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2019年第7期1716-1726,共11页
This paper addresses the problem of real-time object tracking for unmanned aerial vehicles. We consider the task of object tracking as a classification problem. Training a good classifier always needs a huge number of... This paper addresses the problem of real-time object tracking for unmanned aerial vehicles. We consider the task of object tracking as a classification problem. Training a good classifier always needs a huge number of samples, which is always time-consuming and not suitable for realtime applications. In this paper, we transform the large-scale least-squares problem in the spatial domain to a series of small-scale least-squares problems with constraints in the Fourier domain using the correlation filter technique. Then, this problem is efficiently solved by two stages. In the first stage, a fast method based on recursive least squares is used to solve the correlation filter problem without constraints in the Fourier domain. In the second stage, a weight matrix is constructed to prune the solution attained in the first stage to approach the constraints in the spatial domain. Then, the pruned classifier is used for tracking. To evaluate proposed tracker’s performance, comprehensive experiments are conducted on challenging aerial sequences in the UAV123 dataset. Experimental results demonstrate that proposed approach achieves a state-ofthe-art tracking performance in aerial sequences and operates at a mean speed of beyond 40 frames/s. For further analysis of proposed tracker’s robustness, extensive experiments are also performed on recent benchmarks OTB50, OTB100, and VOT2016. 展开更多
关键词 Correlation filter discrete FOURIER TRANSFORM Least SQUARES object tracking Unmanned AERIAL vehicle
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模具冷却通道截面拓扑优化设计 被引量:4
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作者 赵曦 刘义畅 +2 位作者 方喆 胡平 周明东 《计算力学学报》 EI CAS CSCD 北大核心 2019年第5期597-602,共6页
本文提出一种模具冷却通道截面设计的拓扑优化方法。根据直通道的特性建立等效的温度场模型,用均匀流体速度场代替湍流流速场,构建对流换热方程,并用第三类边界条件对流道入口温度边界进行描述。建立考虑热应力的热-力耦合模型,对模具... 本文提出一种模具冷却通道截面设计的拓扑优化方法。根据直通道的特性建立等效的温度场模型,用均匀流体速度场代替湍流流速场,构建对流换热方程,并用第三类边界条件对流道入口温度边界进行描述。建立考虑热应力的热-力耦合模型,对模具结构的热机械性能进行描述。通过引入离散体过滤法得到含圆形通道的截面拓扑,并加入几何约束解决离散体法导致的相混问题。分别以模具表面的平均温度和位移均匀性为优化目标及约束条件,构建拓扑优化列式。通过平顶模具与U型模具设计实例,验证了本文方法的可行性。设计结果表明,本文方法能够得到清晰的拓扑结构,而且优化结果满足给定的管径、管间距及管到模面距离等尺寸约束。 展开更多
关键词 通道冷却 离散体过滤 拓扑优化 几何约束 热流固耦合
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