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Pedestrian Tracking in 360 Video by Virtual PTZ Cameras

机译:360视频的行人跟踪by Virtual PTZ摄像机

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Since the data acquired by a PTZ camera change while adjusting the pan, tilt and zoom parameters, the results of tracking algorithms are difficult to reproduce; such difficulty limits the development and the comparison of tracking algorithms with PTZ cameras. The recently introduced 360-degree cameras acquire spherical views of the environment, generally stored as equirectangular images. Each pixel of an equirectangular image corresponds to a point on the spherical surface. A gnomonic projection can be used to project the points on the spherical surface onto a plane tangent to the sphere. Such tangent plane can be interpreted as the image plane of a virtual PTZ camera oriented towards the point of tangency. This paper proposes a framework to simulate PTZ cameras from 360-degree video enabling, in this way, the development and comparison of PTZ-based tracking algorithms. Furthermore, within the above mentioned framework, this paper presents a novel pedestrian tracking algorithm for 360-degree videos. The proposed algorithm aims at estimating the pan, tilt and zoom parameters required to control the virtual camera in such a way that the target is always at the center of the virtual camera view. The proposed method belongs to the category of tracking-by-detection algorithms; it also exploits the use of a dynamic memory to store the appearance models of the best past target detections. Preliminary results on a publicly available benchmark demonstrate the viability of the proposed approach.
机译:由于通过PTZ相机更换的数据在调整平移,倾斜和缩放参数时,倾斜和缩放参数的数据,因此难以再现的跟踪算法的结果;这种难度限制了PTZ摄像机跟踪算法的开发和比较。最近推出的360度摄像机获得了环境的球形视图,通常存储为昼夜地区。昼夜平衡图像的每个像素对应于球面上的点。侏儒突起可用于将球面上的点投射到与球体相切的平面上。这种切换平面可以被解释为面向切线的虚拟PTZ摄像机的图像平面。本文提出了一种模拟PTZ摄像机从360度视频实现的框架,以这种方式,开发和比较基于PTZ的跟踪算法。此外,在上述框架内,本文提出了一种用于360度视频的新型行人跟踪算法。所提出的算法旨在估计控制虚拟摄像机所需的平移,倾斜和缩放参数,使目标始终在虚拟摄像机视图的中心。该方法属于跟踪逐个算法的类别;它还利用动态存储器来存储最佳目标检测的外观模型。公开的基准上的初步结果证明了所提出的方法的可行性。

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