基于无线电环境、网络负荷和路径规划的车辆数据流量分流与速率控制

T. Ohseki, K. Yamazaki, Daiki Maemoto, Shigeki Kawai, Tsuneo Nakata, Akira Itou
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引用次数: 1

摘要

近年来,车辆通过无线接入网络连接到网络以交换各种数据已成为普遍现象。在未来,向车辆提供信息和从车辆收集信息的服务提供商的数量将会增加,来自这些服务提供商的流量可能会占用无线接入网中消耗的无线电资源的很大一部分。因此,希望提高与这些服务提供商相关的流量的频率利用效率。本文利用移动网络运营商从自身网络中收集的无线接入网络负载信息、服务提供商收集的无线环境信息以及车辆到达目的地的路线规划,对交通控制的概念进行了定量论证。具体而言,基于上述信息,在允许的延迟时间内,在车辆可以移动的范围内进行交通控制,例如在下行链路上负载低、无线电环境好的点下载数据,并根据上行链路上的负载和无线电环境控制流速率。计算机仿真表明,对于下行链路,可以提高下载期间的频率利用效率和UE吞吐量;对于上行链路,可以在提高成功传输数据量的同时提高频率利用效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data Traffic Offloading and Rate Control for Vehicles Using Radio Environment, Network Load and Route Planning
In recent years, it has become common for vehicles to connect to networks via radio access networks to exchange various data. In the future, the number of service providers that provide information to and collect information from vehicles will increase, and the traffic from these service providers may occupy a large portion of the radio resources consumed in the radio access network. Therefore, it is desirable to improve the frequency utilization efficiency of the traffic related to these service providers. In this paper, we provide a quantitative demonstration of the concept of traffic control using the load information on radio access networks that the mobile network operator can collect from its own network, the information on radio environment that the service provider collects, and the route planning of the vehicle to its destination. Specifically, based on the above information, traffic control will be performed within the range where the vehicle can move within the allowable delay time, such as downloading data at points with low load and good radio environment in the downlink, and controlling the streaming rate according to the load and radio environment in the uplink. Computer simulations show that for downlink, both the frequency utilization efficiency and UE throughput during download can be improved, and for uplink, the frequency utilization efficiency can be improved while improving the amount of successfully transmitted data.
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