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Observation Functions in an Information Theoretic Approach for Scheduling Pan-Tilt-Zoom Cameras in Multi-target Tracking Applications

机译:在多目标跟踪应用中调度PAN - TILT-ZOOM摄像机信息理论方法中的观察功能

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摘要

The vast streams of data created by camera networks render unfeasible browsing all data, relying only on human resources. Automation is required for detecting and tracking multiple targets by using multiple cooperating cameras. In order to effectively track multiple targets, autonomous active camera networks require adequate scheduling and control methodologies. Scheduling algorithms assign visual targets to cameras. Control methodologies set precise orientation and zoom references of the cameras. We take an approach based on information theory to solve the scheduling and control problems. Each observable target in the environment corresponds to a source of information for which an observation corresponds to a reduction of the uncertainty and, as such, a gain in the information. In this work we focus on the effect of observation functions within the information gain. Observation functions are shown to help avoiding extreme zoom levels while keeping smooth information gains.
机译:由相机网络创建的巨大数据流呈现不可行的浏览所有数据,仅依赖于人力资源。通过使用多个协作摄像头检测和跟踪多个目标需要自动化。为了有效跟踪多个目标,自主活动相机网络需要足够的调度和控制方法。调度算法将视觉目标分配给摄像机。控制方法设置了摄像机的精确方向和缩放参考。我们采取了一种基于信息理论的方法来解决调度和控制问题。环境中的每个可观察目标对应于观察对应于不确定性的降低和信息的增益来源。在这项工作中,我们专注于信息增益中观察功能的影响。观察功能显示,帮助避免极端缩放级别,同时保持流畅的信息收益。

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