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Optimal Sensor Placement in Road Transportation Networks using virtual variances

机译:使用虚拟方差的道路交通网络中传感器的最佳放置

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This paper addresses the problem of Optimal Sensor Placement in Road Transportation Networks. The performance of the sensors is measured in terms of estimation error covariance of the Best Linear Unbiased Estimator of cumulative flows in the network over a long period. Sensors are to be placed in such a way that the sum of the error covariance and of a cost penalizing the number of sensors is minimized. The problem, inherently combinatorial, is relaxed using the concept of Virtual Variance. The resulting problem can be cast as a convex problem, whose computational load is much lower than the original combinatorial problem. Several variations are discussed, and the algorithm is applied to a regular grid network, for which an explicit comparison with the true optimum is offered, and, using data from the Grenoble Traffic Lab sensor network, to the real-world scenario of Rocade Sud in Grenoble, France.
机译:本文解决了道路运输网络中传感器的最佳放置问题。传感器的性能是根据长期内网络中累积流量的最佳线性无偏估计器的估计误差协方差来衡量的。传感器的放置方式应使误差协方差之和和惩罚传感器数量的成本之和最小。使用虚拟方差的概念可以轻松解决此问题,这些问题本质上是组合的。所产生的问题可以看作是凸问题,其计算量比原始组合问题低得多。讨论了几种变体,并将该算法应用于常规网格网络,为其提供了与真实最优值的显式比较,并使用来自格勒诺布尔交通实验室传感器网络的数据,将其应用于Rocade Sud在2005年的真实场景法国格勒诺布尔。

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