利用二元接近传感器推断多入侵者移动轨迹的主动巡逻调度监控系统

Dahee Jeong, Minkyoung Cho, O. Gnawali, Hyungjune Lee
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引用次数: 3

摘要

在本文中,我们考虑在建筑物内分配巡逻人员的问题,以最大化捕获多个入侵者的概率,同时最小化巡逻人员到达入侵者位置的距离。在我们的问题设置中,巡逻人员通过安装在建筑物内的二进制接近传感器网络收集的信息来协助。我们声称,即使是由于受约束的物理环境而产生的常见运动子模式,也有助于找到入侵者的可能位置,其中每个主要位置都使用传感器节点进行检测。我们使用一系列二进制检测事件来推断现实世界建筑物中可能的未来轨迹。对于推断出的未来轨迹上的一组给定的可检测节点,我们的目标是使用有限数量的巡逻人员(理想情况下比入侵者少),找到对入侵者未来出现高度暴露的最佳巡逻调度节点位置。为了防止可能发生的犯罪并对潜在的入侵者进行响应性防御,我们的算法还试图同时减少巡逻队从当前位置到其被派遣位置的行程距离。我们通过改变入侵者的数量、对缺失事件的鲁棒性以及通过实际系统实验与实际基线相比较的响应性来验证我们提出的方案的检测准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proactive patrol dispatch surveillance system by inferring mobile trajectories of multiple intruders using binary proximity sensors
In this paper, we consider the problem of distributing patrol officers inside a building to maximize the probability of catching multiple intruders while minimizing the distance the patrol officers travel to reach the locations of the intruders. In our problem setting, the patrol officers are assisted by the information collected by a network of binary proximity sensors installed in the building. We claim that learning even common movement sub-patterns that originate due to the constrained physical environment helps to find likely locations of intruders where each major location is instrumented using a sensor node. We use a series of binary detection events to infer likely future trajectories in a real-world building. For a given set of detectable nodes on the inferred future trajectories, we aim to find the optimal patrol dispatch node location with high exposure to intruders' future appearance using patrol officers in limited numbers, ideally fewer than the intruders. In order to prevent possible crime and perform responsive defense against potential intruders, our algorithm also tries to reduce the travel distance from patrols current positions to their dispatched positions at the same time. We validate our proposed scheme in terms of detection accuracy by varying the number of intruders, robustness against missing events, and responsiveness compared to a practical baseline counterpart through real-world system experiments.
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