In the context of an increasing interest toward reducing the number of traffic accidents and of associated victims, communication-based vehicle safety applications have emerged as one of the best solutions to enhance road safety. In this area, visible light communications (VLC) have a great potential for applications due to their relatively simple design for basic functioning, efficiency, and large geographical distribution. Vehicular Visible Light Communication (VVLC) is preferred as a vehicle to everything (V2X) communications scheme. Due to its highly secure, low complexity, and radio frequency (RF) interference-free characteristics, exploiting the line of sight (LoS) propagation of visible light and usage of already existing vehicle light-emitting diodes (LEDs). This research is addressing the application of the Non-Orthogonal Multiple Access (NOMA) technique in VLC based Vehicle-to- Vehicle (V2V) communication. The proposed system is simulated in almost realistic conditions and the performance of the system is analyzed under different scenarios.
翻译:在人们越来越关心减少交通事故和相关受害者的数量的背景下,基于通信的车辆安全应用已成为加强道路安全的最佳解决办法之一,在这方面,可见光通信具有巨大的应用潜力,因为其设计相对简单,能够促进基本运作、效率和广泛的地理分布;视觉光通信(VVLC)更倾向于作为一切通信(V2X)的载体;由于其高度安全、低复杂性和无射频(RF)干扰特性,利用视线线线(LOS)的可见光传播和现有车辆发光二极管(LEDs)的使用;这一研究涉及在VLC车辆对车辆(V2V)的载体通信中应用非正式多重访问技术;拟议的系统在几乎现实的条件下模拟,对系统的性能进行了不同的分析。