基于CARLA和omnet++的5G遥控驾驶仿真

Valerio Cislaghi, C. Quadri, V. Mancuso, M. Marsan
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引用次数: 1

摘要

遥控驾驶(ToD)允许远程操作员通过移动无线网络提供的服务来驾驶车辆。ToD可以在许多不同的场合取代车载驾驶,例如危险环境,但也可以在困难和意外情况下为自动驾驶系统提供帮助。ToD是一种带宽要求高、延迟敏感的服务,需要将大量传感器数据从车辆传输到操作员,并将驾驶指令从操作员传输到车辆。数据交换必须符合严格的实时性要求。5G无线接入网(RANs)提供的低延迟和高带宽为在不同环境中有效部署ToD服务提供了新的机会。然而,快速变化的信道质量和网络条件在满足带宽和延迟要求方面提出了许多挑战。在本文中,我们报告了一个精心设计的仿真框架的开发,该框架结合了CARLA模拟的车辆动力学的真实感和omnet++提供的详细网络模型。我们通过描述在不同网络和应用程序配置下的简单场景中ToD服务可行性的结果来演示模拟框架的功能。我们在5G RAN的一个片段中模拟了ToD服务的实现,具有不同的应用程序和网络参数,并考虑了不同数量的后台流量。仿真结果表明,分配给5G片的无线资源的数量和形状(即所选5G NR数字)对ToD业务性能有很大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Tele-Operated Driving over 5G Using CARLA and OMNeT++
Tele-Operated Driving (ToD) allows a remote operator to drive a vehicle through the services provided by a mobile radio network. ToD can replace on-board driving in many different occasions, such as dangerous environments, but can also provide assistance to autonomous driving systems in difficult and unexpected situations. ToD is a bandwidth-demanding and latency-sensitive service, which requires transmitting a large amount of sensor data from vehicle to operator, and driving instructions from operator to vehicle. The data exchange must comply with strict real-time requirements. The low latency and high bandwidth offered by 5G Radio Access Networks (RANs) open new opportunities for an effective deployment of ToD services in different contexts. However, the rapidly changing channel quality and network conditions can raise many challenges in meeting bandwidth and latency requirements. In this paper, we report on the development of an elaborate simulation framework combining the realism of vehicle dynamics simulated by CARLA and the detailed network models provided by OMNeT++. We demonstrate the capabilities of the simulation framework by describing results about the feasibility of ToD services in a simple scenario under different network and application configurations. We simulate the implementation of the ToD service in a slice of a 5G RAN, with varying application and network parameters, also considering a variable amount of background traffic. Our simulation results show that the ToD service performance is heavily impacted by the amount and shape (i.e., the selected 5G NR numerology) of radio resources allocated to the 5G slice.
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