Collaborative patrolling for target detection using mobile sensor networks

T. Chin, P. Ramanathan, K. Saluja
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Abstract

The advances of technology have made sensor networks an attractive approach for detecting events present in a geographic region. Most of recent studies have focused on stationary sensor networks where sensor nodes are homogeneous with fixed locations. However, if the monitored region is significantly larger than one sensor's sensing area, it will need a large number of sensors to cover the whole region. In contrast, this paper proposes a novel sensing architecture for target detection using both mobile and stationary sensors in a sparse network. In the network, mobile and stationary sensors collaborate to detect the presence/absence of a target. Mobile sensors are responsible for both sampling the environment and collecting sensing data from stationary sensors. The collected data are fused to arrive at a consensus decision to determine whether the target is present. The paper proposes an effective approach for selecting routes with length as short as possible for mobile sensors while the constraints on the detection probability and false alarm rate are satisfied. The effectiveness of the proposed approach is shown by extensive simulations.
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基于移动传感器网络的目标探测协同巡逻
技术的进步使传感器网络成为检测地理区域内存在的事件的有吸引力的方法。最近的研究大多集中在静止传感器网络上,其中传感器节点均匀且位置固定。但是,如果被监测的区域明显大于一个传感器的感知区域,则需要大量的传感器来覆盖整个区域。相比之下,本文提出了一种在稀疏网络中使用移动和固定传感器进行目标检测的新型传感体系结构。在网络中,移动和固定传感器协同检测目标的存在或不存在。移动传感器负责对环境进行采样,并从固定传感器收集传感数据。将收集到的数据进行融合,以得出一个一致的决定,以确定目标是否存在。提出了一种在满足检测概率和虚警率约束的情况下,移动传感器选择尽可能短的路由的有效方法。大量的仿真结果表明了该方法的有效性。
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