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Space-time CUSUM for distributed quickest detection using randomly spaced sensors along a path

机译:时空CUSUM,可使用沿路径随机排列的传感器进行最快的分布式检测

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This work investigates the distributed quickest detection problem, where a set of sensors receive independent observations and send messages to a fusion center, which makes a final decision. We are interested in detecting an event as soon as possible even though the set of affected sensors is unknown. We consider a scenario where the sensors are randomly spaced along a path, and then the affected sensors are assumed to be consecutive. Based on the assumption that the affected sensors are consecutive, we propose a solution based on the detection of a transient change in the spatial domain (i.e. from different sensors). This is done by applying a double CUSUM to detect both the appearance and disappearance of the change in the space samples. Numerical results are presented showing the superior performance of our proposed solution, for different scenarios, with respect to other methods in the literature.
机译:这项工作研究了分布式最快的检测问题,在该问题中,一组传感器接收独立的观测值并将消息发送到聚变中心,由聚变中心做出最终决定。即使受影响的传感器组未知,我们也希望尽快检测到事件。我们考虑一种情况,其中传感器沿路径随机间隔,然后假定受影响的传感器是连续的。基于受影响的传感器是连续的假设,我们提出了一种基于检测空间域中瞬态变化(即来自不同传感器)的解决方案。这可以通过应用双重CUSUM来检测空间样本中变化的出现和消失来完成。数值结果表明,相对于文献中的其他方法,我们的解决方案在不同情况下的优越性能。

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