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Rate Adaptation Mechanism with Available Data Rate Trimming and Data Rate Information Provision for V2I Communications

机译:具有可用数据速率修剪的速率适配机制和V2I通信的数据速率信息

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We study a rate adaptation mechanism for improving communication performance between a connected vehicle and a roadside unit (RSU) using Wi-Fi during movement in a vehicle-to-infrastructure (V2I) environment. Wi-Fi communication provides various attractive services to connected vehicles during movement. However, as a connected vehicle is generally moving at high speed, the communication performance with an RSU that works as an access point is degraded because wireless link quality fluctuates abruptly and continuously. We then propose a rate adaptation mechanism employing the following two main features to mitigate such deterioration in communication performance: available data rate trimming and data rate information provision. To alleviate degradation of communication, the former avoids usage of excessively low data rates and the latter then provides data rate information suitable for channel quality from a dataset of adequate data rates based on the vehicle’s location and speed. However, the data rate information provided from a dataset may not always be appropriate because of various indefinite factors such as multipath fading and shadowing. Thus, the proposed method also employs a measurement-based function to compensate for such a drawback of the dataset. Simulation experiments evaluate communication performance for 10, 60, and 100?km/h in single-vehicle and multiple-vehicles cases. Simulation results showed that the proposed method overall provides superior communication performance in situations involving more than one vehicle, in comparison with existing counter- and sample-based methods.
机译:我们研究了使用Wi-Fi在车辆到基础设施(V2I)环境中的移动期间使用Wi-Fi改善连接车辆和路边单元(RSU)之间的通信性能的速率适应机制。 Wi-Fi通讯提供各种有吸引力的服务来在运动期间连接车辆。然而,由于连接的车辆通常以高速移动,因此具有作为接入点的RSU的通信性能劣化,因为无线链路质量突然波动。然后,我们提出了一种采用以下两个主要特征的速率适应机制,以减轻通信性能的这种恶化:可用的数据速率修剪和数据速率信息提供。为了减轻通信的退化,前者避免了使用过低的数据速率,然后,后者提供适用于基于车辆的位置和速度的足够数据速率的数据集的信道质量的数据速率信息。然而,由于多径衰落和阴影等各种无限因素,从数据集提供的数据速率信息可能并不总是适当的。因此,所提出的方法还采用基于测量的函数来补偿数据集的这种缺点。仿真实验在单辆车和多辆车情况下评估10,60和100 km / h的通信性能。仿真结果表明,与现有的基于计数器和样本的方法相比,该方法总体上,在涉及多个车辆的情况下,在涉及多种车辆的情况下提供卓越的通信性能。

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