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Sensor Location Problem for Network Traffic Flow Derivation Based on Turning Ratios at Intersection

机译:基于交叉口匝数比的网络交通流量推导传感器位置问题

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摘要

The sensor location problem (SLP) discussed in this paper is to find the minimum number and optimum locations of the flow counting points in the road network so that the traffic flows over the whole network can be inferred uniquely. Flow conservation system at intersections is formulated firstly using the turning ratios as the prior information. Then the coefficient matrix of the flow conservation system is proved to be nonsingular. Based on that, the minimal number of counting points is determined to be the total number of exclusive incoming roads and dummy roads, which are added to the network to represent the trips generated on real roads. So the task of SLP model based on turning ratios is just to determine the optimal sensor locations. The following analysis in this paper shows that placing sensors on all the exclusive incoming roads and dummy roads can always generate a unique network flow vector for any network topology. After that, a detection set composed of only real roads is proven to exist from the view of feasibility in reality. Finally, considering the roads importance and cost of the sensors, a weighted SLP model is formulated to find the optimal detection set. The greedy algorithm is proven to be able to provide the optimal solution for the proposed weighted SLP model.
机译:本文讨论的传感器位置问题(SLP)是找到道路网络中流量计数点的最小数量和最佳位置,以便可以唯一地推断整个网络上的交通流量。首先以转弯比为先验信息,制定交叉口的流量守恒系统。然后证明了流量守恒系统的系数矩阵是非奇异的。基于此,将计数点的最小数量确定为专用传入道路和虚拟道路的总数,将它们添加到网络中以表示在真实道路上生成的行程。因此,基于转弯比的SLP模型的任务只是确定最佳传感器位置。本文中的以下分析表明,将传感器放置在所有专用的传入道路和虚拟道路上始终可以为任何网络拓扑生成唯一的网络流量矢量。此后,从实际可行性的角度出发,证明存在仅由真实道路组成的检测集。最后,考虑到道路的重要性和传感器的成本,制定了加权SLP模型以找到最佳检测集。贪婪算法被证明能够为所提出的加权SLP模型提供最佳解决方案。

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  • 来源
    《Mathematical Problems in Engineering》 |2016年第2期|9012724.1-9012724.10|共10页
  • 作者单位

    Tongji Univ, Minist Educ, Key Lab Rd & Traff Engn, Shanghai 200092, Peoples R China;

    Tongji Univ, Minist Educ, Key Lab Rd & Traff Engn, Shanghai 200092, Peoples R China;

    China Airport Construction Grp Corp, Beijing 100101, Peoples R China;

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