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3D camera sensor scheduling algorithms for indoor multi-objective tracking

机译:用于室内多目标跟踪的3D相机传感器调度算法

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摘要

With the advantages of sensing data's diversity, camera sensor networks (CSNs) have been applied to objective tracking in both outdoor and indoor environments. In indoor objective tracking, the objectives' moving mode and sensors' deployment have limitation and particularity, which bring more challenges on persistent monitoring for CSNs. In this paper, we consider the indoor multi-objective tracking in three-dimensional (3D) CSNs and focus on the 3D camera sensor scheduling for objective tracking to improve the coverage quality of the objective trajectory and minimizing the whole working periods. We firstly introduce the active-period-minimizing scheduling problem in CSNs for indoor objective tracking, with the goal of minimizing the total active periods of sensors. We solve the problem via three algorithms: the first algorithm is designed based on our proposed projection-based algorithm for single-objective case; the second one is proposed with the main idea of path coloring and the third one is a divide-and-conquer strategy with an approximation ratio of H(area(B)gside2). To evaluate these algorithms' performance on the time efficiency, we conduct extensive simulation experiments and analyze their results on the time efficiency advantages and applicable scenarios.
机译:随着数据的多样性的优点,相机传感器网络(CSN)已应用于室外和室内环境的客观跟踪。在室内客观跟踪中,目标的移动模式和传感器的部署具有限制和特殊性,这带来了对CSNS持久监控的更多挑战。在本文中,我们考虑三维(3D)CSN的室内多目标跟踪,并专注于3D相机传感器调度,以便客观跟踪,以提高客观轨迹的覆盖质量,并最小化整个工作时段。我们首先在CSN中介绍了用于室内物镜跟踪的CSN中的活动周期最小化调度问题,其目标是最小化传感器的总活动周期。我们通过三种算法解决问题:第一算法是根据我们所提出的基于投影的单目标案例算法设计的算法;第二个是通过路径着色的主要思想,第三个是具有H(面积(B)GdeD2)的近似比的分次和征服策略。为了评估这些算法的时间效率,我们进行广泛的仿真实验,并在时间效率优势和适用场景上分析它们的结果。

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