Planning the Deployment of QoS-based Communication Infrastructures for Connected Vehicles using GRASP and Path Relinking

P. H. Souza, Massilon L. Fernandes, Thiago S. Gomides, Guilherme G. Costa, F. S. Souza, C. M. Silva, D. Guidoni
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Abstract

In this work, the GPR strategy is presented. GPR consists results from joining two combinatorial optimization techniques (GRASP and Path Relinking) to solve the allocation of roadside units relying on the concept of the Delta Network. The Delta Network establishes communication guarantees based on the duration of contact between vehicles and the infrastructure. GPR is compared to an interactive strategy that solves the deployment for each vehicle individually. The results demonstrate that GPR can significantly reduce the deployment cost (by requiring the coverage of less urban cells) in scenarios where vehicles are not expected to experience connection throughout a large share of the trip. GPR may reduce the deployment cost up to 70% when compared to the baseline.
规划基于qos的联网车辆通信基础设施的部署,使用抓取和路径重链接
在这项工作中,提出了探地雷达策略。探地雷达是依靠三角网络的概念,结合两种组合优化技术(GRASP和Path Relinking)解决路边单元分配问题的结果。Delta网络根据车辆与基础设施之间的接触时间建立通信保障。GPR是一种交互式策略,可以单独解决每辆车的部署问题。结果表明,在车辆在整个行程中大部分时间都不需要连接的情况下,GPR可以显著降低部署成本(通过要求覆盖较少的城市小区)。与基线相比,GPR可以减少高达70%的部署成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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