综合空间混合5G-V2X通信链路建模

S. Udeshi, M. Uko, M. Zafar, A. Altaf, B. Adebisi, S. Ekpo
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摘要

车联网(V2X)通信是改变汽车行业的下一个创新技术。它实现了物联网(iot)连接和处理的力量,以提高未来车辆的效率、性能和安全性。V2X通过先进的传感和通信技术,使车辆能够高度了解周围的环境因素、基础设施和其他车辆。现有的通信平台无法完全支持提供这些服务所需的高优先级安全关键数据的传输。单独来看,两种主要的V2X架构(DSRC和C-V2X)都有局限性,无法完全支持V2X平台。因此,本章提出了5G技术的集成,该技术通过集成可重构设备支持所有类型的通信技术,并提供比以往任何平台更高的数据速率和带宽。本章提出的架构由三层组成:用于直接短距离通信的DSR V2X;蜂窝V2X层,结合5G蜂窝平台,提供DSR V2X层故障时的备份通信和多媒体功能;卫星(SAT)-V2X,在DSR和蜂窝V2X都不可用时提供额外的回程连接。系统设计、建模和仿真结果为关键的实时车辆通信应用提供了更可靠和可持续的V2X能力。
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Integrated space-enabled hybrid 5G-V2X communications link modeling
Vehicle-to-everything (V2X) communication is the next innovative technology to transform the automotive industry. It implements the power of Internet of things (IoTs) connectivity and processing to improve the efficiency, performance, and safety of future vehicles. V2X enables vehicles to have a high awareness of the surrounding environmental factors, infrastructures, and other vehicles through the advanced sensing and communication technologies in place. Current communication platforms in place are not able to fully support the transmission of high priority safety critical data required to provide these services. Individually, the two main V2X architectures (DSRC and C-V2X) have limitations which inhibit them from fully supporting the V2X platform. As such, this chapter proposes the integration of 5G technology, which supports all types of communication technologies through the integration of reconfigurable devices and offers higher data rates and bandwidths than any preceding platform. The architecture proposed in the chapter is composed of three layers: DSR V2X for direct short-range communication; cellular V2X layer which will combine 5G cellular platform to provide backup communication when DSR V2X layer fails and multimedia capabilities; and satellite (SAT)-V2X which provides extra backhaul connectivity when both DSR and cellular V2X is unavailable. The system design, modeling, and simulation results yield a more reliable and sustainable V2X capacity for critical real-time vehicular communication applications.
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