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Event-triggered Add-on Safety for Connected and Automated Vehicles Using Road-side Network Infrastructure

机译:使用道路侧网络基础设施的连接和自动车辆的事件触发的附加安全性

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This paper proposes an event-triggered add-on safety mechanism to adjust the control parameters for timely braking in a networked vehicular system while maintaining maneuverability. Passenger vehicle maneuverability is significantly affected by the combined slip friction effect, in which larger longitudinal tire slips result in considerable drop in lateral tire forces. This is of higher importance when unexpected dangerous situations occur on the road and immediate actions, such as braking, need to be taken to avoid collision. Harsh braking can lead to high-slip and loss of maneuverability; hence, timely braking is essential to reduce high-slip scenarios. In addition to the vehicles own active safety systems, the proposed event-triggered add-on safety is activated upon being informed about dangers by the road-side infrastructure. The aim is to incorporate the add-on safety feature to adjust the automatic control parameters for smooth and timely braking such that a collision is avoided while vehicle’s maneuverability is maintained. We study two different wireless technologies for communication between the infrastructure and the vehicles, the Long-Term Evolution (LTE) and the fifth generation (5G) schemes. The safety advantages of the proposed framework is validated through high-fidelity software simulations.
机译:本文提出了一种事件触发的附加安全机构,以调整控制参数,以在保持机动性的同时在网络车辆系统中及时制动。乘用车机动性受到组合的滑动摩擦效应的显着影响,其中较大的纵向轮胎滑动导致横向轮胎力相当大的下降。当在道路上发生意外危险情况和立即动作时,这具有更高的重要性,例如制动,需要采取避免碰撞。苛刻的制动可以导致耐滑滑和机动性丧失;因此,及时制动对于减少宽滑度方案至关重要。除了车辆拥有主动安全系统外,在进行路面基础设施的危险时,拟议的事件触发的附加安全性被激活。该目的是纳入附加安全功能,以调整自动控制参数,以便平滑和及时制动,使得避免碰撞,而车辆的操纵性保持。我们研究了两种不同的无线技术,用于基础设施和车辆之间的通信,长期演进(LTE)和第五代(5G)方案。通过高保真软件模拟验证所提出的框架的安全优势。

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