论文标题
动脉C-基于Omnet ++的离散事件模拟框架
Artery-C -- An OMNeT++ Based Discrete Event Simulation Framework for Cellular V2X
论文作者
论文摘要
蜂窝车辆对X(Cellular V2X)是一种通信技术,旨在促进车辆之间的通信以及与路边基础设施之间的通信。 Cellular V2X在LTE版本14中引入,可实现设备到设备的通信,以支持道路安全和交通效率应用。我们提出了动脉-C,这是一个模拟框架,用于评估细胞V2X方案和V2X应用程序。我们的仿真器依赖于模拟框架的同时,并通过实现控制和用户飞机实质上扩展了它。除了通过向上/下行链路界面进行车辆对网络通信外,它还使用托管和未托管的蜂窝V2X模式(分别为3和4)通过Sidelink接口提供车辆对车辆和车辆基础结构通信(分别为3和4)。模拟器还实现了5G移动网络的高级功能,例如可变命理。为了传输V2X消息,它添加了非IP接口。 Artery-C无缝集成到模拟框架动脉中,该动脉可以在设施层以及与移动性模拟器Sumo的耦合上模拟标准化的V2X消息。动脉-C的特定特征是支持细胞V2X所有模式之间的动态切换。为了证明动脉-C的功能,我们将基于V2X的排队评估为代表性用例,并在高速公路场景中为模式3,模式4和模式切换的当前结果。
Cellular Vehicle-to-X (Cellular V2X) is a communication technology that aims to facilitate the communication among vehicles and with the roadside infrastructure. Introduced with LTE Release 14, Cellular V2X enables device-to-device communication to support road safety and traffic efficiency applications. We present Artery-C, a simulation framework for the performance evaluation of Cellular V2X protocols and V2X applications. Our simulator relies on the simulation framework SimuLTE and substantially extends it by implementing control and user planes. Besides the vehicle-to-network communication via the up-/downlink interface, it provides vehicle-to-vehicle and vehicle-infrastructure communication via the sidelink interface using the managed and the unmanaged mode of Cellular V2X (mode 3 and 4, respectively). The simulator also implements advanced features of 5G mobile networks, such as variable numerologies. For the transmission of of V2X messages, it adds a non-IP interface. Artery-C integrates seamlessly into the simulation framework Artery, which enables the simulation of standardized V2X messages at the facilities layer as well as the coupling to the mobility simulator SUMO. A specific feature of Artery-C is the support of dynamic switching between all modes of Cellular V2X. In order to demonstrate the capabilities of Artery-C, we evaluate V2X-based platooning as a representative use case and present results for mode 3, mode 4 and mode switching in a highway scenario.