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Adaptive beaconing for safety enhancement in vehicular networks

机译:自适应信标提高车辆网络的安全性

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For automotive safety applications, vehicles directly exchange periodic beacons that contain status information such as position, speed, acceleration, etc., and the application layer issues warnings if a hazardous situation is detected. The update rate of these beacons should be high enough to allow the application to swiftly react to prevent accidents and current recommendations provide fixed values for different safety use cases. This approach is sub-optimal since wireless resources might be used when not necessary, e.g., when cars are queuing at a traffic light, and the proposals made for variable beacon periodicity (BP) typically do not take into account the safety aspect or are strictly related to the access technology in use. This paper presents a new algorithm called beaconing adaptation for safety enhancement (BASE) that adapts the BP to minimize the amount of radio resources used by the safety application without breaching safety requirements. BASE is access technology agnostic and focuses on common traffic and traveling conditions (not on particular crossroads, overtaking, etc.), and the results presented in this paper show how it allows for substantial capacity gains in a highway collision-avoidance scenario.
机译:对于汽车安全应用,车辆直接交换包含状态信息(例如位置,速度,加速度等)的定期信标,并且如果检测到危险情况,则应用层会发出警告。这些信标的更新率应足够高,以使应用程序能够迅速做出反应以防止事故发生,并且当前的建议为不同的安全用例提供了固定值。这种方法是次优的,因为在不需要时(例如,当汽车在交通信号灯处排队时)可能会使用无线资源,而可变信标周期(BP)的建议通常不考虑安全性或严格考虑与使用中的访问技术有关。本文提出了一种新的算法,称为增强安全性信标适配(BASE),该算法可对BP进行适配,以在不违反安全要求的情况下,使安全应用程序使用的无线电资源量最小化。 BASE是与访问技术无关的,它专注于常见的交通和行驶条件(而不是特定的十字路口,超车等),并且本文提供的结果表明,它如何在避免高速公路碰撞的情况下大幅提高通行能力。

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