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Dissimilarity Metric Based on Local Neighboring Information and Genetic Programming for Data Dissemination in Vehicular Ad Hoc Networks (VANETs)

机译:基于局部邻居信息和遗传规划的车辆自组织网络(VANETs)数据的相异性度量

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摘要

This paper presents a novel dissimilarity metric based on local neighboring information and a genetic programming approach for efficient data dissemination in Vehicular Ad Hoc Networks (VANETs). The primary aim of the dissimilarity metric is to replace the Euclidean distance in probabilistic data dissemination schemes, which use the relative Euclidean distance among vehicles to determine the retransmission probability. The novel dissimilarity metric is obtained by applying a metaheuristic genetic programming approach, which provides a formula that maximizes the Pearson Correlation Coefficient between the novel dissimilarity metric and the Euclidean metric in several representative VANET scenarios. Findings show that the obtained dissimilarity metric correlates with the Euclidean distance up to 8.9% better than classical dissimilarity metrics. Moreover, the obtained dissimilarity metric is evaluated when used in well-known data dissemination schemes, such as p-persistence, polynomial and irresponsible algorithm. The obtained dissimilarity metric achieves significant improvements in terms of reachability in comparison with the classical dissimilarity metrics and the Euclidean metric-based schemes in the studied VANET urban scenarios.
机译:本文提出了一种基于局部邻近信息的新颖相异性度量和一种用于车辆自组织网络(VANET)中有效数据分发的遗传编程方法。相异性度量的主要目的是在概率数据分发方案中替换欧几里得距离,该方案使用车辆之间的相对欧几里得距离来确定重传概率。通过应用元启发式遗传规划方法获得了新颖的相异性度量,该方法提供了一个公式,可以在几种代表性的VANET场景中最大化新颖的相异性度量与欧几里得度量之间的Pearson相关系数。结果表明,获得的相异性度量与欧几里得距离的相关性比经典相异性度量高8.9%。此外,当将其用于众所周知的数据分发方案(例如p持久性,多项式和不负责任的算法)时,将评估所获得的相异性度量。在研究的VANET城市场景中,与经典的差异性度量和基于欧氏度量的方案相比,所获得的差异性度量在可到达性方面取得了显着改善。

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