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Neuroevolution-Based Adaptive Antenna Array Beamforming Scheme to Improve the V2V Communication Performance at Intersections

机译:基于神经发展的自适应天线阵列波束形成方案以提高交叉点的V2V通信性能

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摘要

The opportunistic exchange of information between vehicles can significantly contribute to reducing the occurrence of accidents and mitigating their damages. However, in urban environments, especially at intersection scenarios, obstacles such as buildings and walls block the line of sight between the transmitter and receiver, reducing the vehicular communication range and thus harming the performance of road safety applications. Furthermore, the sizes of the surrounding vehicles and weather conditions may affect the communication. This makes communications in urban V2V communication scenarios extremely difficult. Since the late notification of vehicles or incidents can lead to the loss of human lives, this paper focuses on improving urban vehicle-to-vehicle (V2V) communications at intersections by using a transmission scheme able of adapting to the surrounding environment. Therefore, we proposed a neuroevolution of augmenting topologies-based adaptive beamforming scheme to control the radiation pattern of an antenna array and thus mitigate the effects generated by shadowing in urban V2V communication at intersection scenarios. This work considered the IEEE 802.11p standard for the physical layer of the vehicular communication link. The results show that our proposal outperformed the isotropic antenna in terms of the communication range and response time, as well as other traditional machine learning approaches, such as genetic algorithms and mutation strategy-based particle swarm optimization.
机译:车辆之间的信息交流可以显着促进减少事故的发生并减轻其损害赔偿。然而,在城市环境中,特别是在交叉路口方案中,建筑物和墙壁等障碍物阻挡了发射器和接收器之间的视线,减少了车辆通信范围,从而损害了道路安全应用的性能。此外,周围车辆和天气条件的尺寸可能会影响通信。这使得城市V2V通信场景中的通信极为困难。由于车辆或事件的晚期通知可能导致人类生活的损失,因此本文通过使用传输方案适应周围环境来改善交叉路口的城市车辆到车辆(V2V)通信。因此,我们提出了增强基于拓扑的自适应波束成形方案的神经动脉,以控制天线阵列的辐射图案,从而减轻了在交叉路场景中城市V2V通信中的阴影产生的效果。这项工作被认为是车辆通信链路的物理层的IEEE 802.11p标准。结果表明,我们的提案在通信范围和响应时间以及其他传统机器学习方法,如遗传算法和基于突变策略的粒子群优化的方面表明了各向同性天线。

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