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Optimal deployment of Road Side Units in urban environments

机译:在城市环境中优化路边单元的部署

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In this paper, we address the problem of Road Side Unit (RSU) deployment in urban environments. One of the main goals in designing a Vehicle-to-Infrastructure (V2I) network is to find optimal locations for deployment of all the RSUs. The objective in our case is to cover all the road parts that have the highest car density using a limited number of wireless access points (the number of available RSUs is an input parameter in our formulation). Such design improves data delivery to moving vehicles by maximizing the network coverage and enabling higher data rates. To deal with the RSU deployment problem we propose a methodology which starts by characterizing the mobility of cars using real data traffic. In this step the parts of the road that have the highest average car density over a long period of time are identified. This data is used as input for the formulated nonlinear integer programming problem. The solution to this problem determines the optimal location for RSUs deployment given a fixed budget for networking equipment. Numerical results show that our formulation provides a more optimal solution for RSUs deployment when compared with other deployment strategies proposed in the literature.
机译:在本文中,我们解决了在城市环境中部署路边单元(RSU)的问题。设计车辆到基础设施(V2I)网络的主要目标之一是找到部署所有RSU的最佳位置。我们的目标是使用有限数量的无线访问点覆盖所有汽车密度最高的道路部分(可用RSU的数量是我们公式中的输入参数)。通过最大化网络覆盖范围并实现更高的数据速率,这种设计改善了向移动车辆的数据传输。为了解决RSU部署问题,我们提出了一种方法,该方法首先使用实际数据流量来表征汽车的机动性。在此步骤中,确定长时间内平均汽车密度最高的道路部分。该数据用作公式化的非线性整数规划问题的输入。给定网络设备的固定预算,此问题的解决方案将确定RSU部署的最佳位置。数值结果表明,与文献中提出的其他部署策略相比,我们的公式为RSU部署提供了更好的解决方案。

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