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Automation of Road Vehicles Using V2X: An Application to Intersection Automation

机译:使用V2X的公路车辆自动化:交叉式自动化应用

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Today, automated vehicles mostly rely on ego vehicle sensors such as cameras, radar or LiDAR sensors that are limited in their sensing capability and range. Vehicle-to-everything (V2X) communication has the potential to appropriately complement these sensors and even allow for a cooperative, proactive interaction of vehicles. As such, V2X communication might play a vital role on the way to smart and efficient traffic solutions. In the public funded research project UK Autodrive, we are currently investigating and experimentally evaluating V2X-based applications based on dedicated short range communication (DSRC). Moreover, the novel application intersection priority management (IPM) is part of the research project. IPM aims at automating intersections in such a way that vehicles can pass safely and even more efficiently without the use of traffic lights or signs. After a brief outline of our research project and its experimental setup, we will discuss the challenges that arise with IPM. Assuming fully automated vehicles as a first step, we propose a control concept based on distributed model predictive control to solve the intersection automation problem. Compared to previous concepts, our control scheme is less restrictive such that more vehicles can pass the intersection simultaneously and allows for an implementation in an actual vehicle due to a fully parallelized optimization approach. Finally, first simulation results highlight the efficacy of the proposed control concept.
机译:如今,自动车辆主要依赖于自我车辆传感器,例如摄像机,雷达或激光雷达传感器,其在其传感能力和范围内受到限制。车辆到一切(V2X)通信具有适当补充这些传感器的潜力,甚至允许车辆的合作主动相互作用。因此,V2X通信可能在智能和高效交通解决方案的方式上发挥重要作用。在英国公共资助研究项目中,我们目前正在研究和通过基于专用的短程通信(DSRC)进行基于V2X的应用程序进行实验评估。此外,新的应用程序交叉路口优先级管理(IPM)是研究项目的一部分。 IPM旨在以自动化交叉路口,使车辆可以安全地通过,而无需使用交通灯或标志。在我们的研究项目简要概述及其实验设置之后,我们将讨论IPM出现的挑战。假设全自动车辆作为第一步,我们提出了一种基于分布式模型预测控制来解决交叉自动化问题的控制概念。与以前的概念相比,我们的控制方案限制性较小,使得更多的车辆可以同时通过交叉点,并且由于完全并行优化方法而允许在实际车辆中实现。最后,首先仿真结果突出了所提出的控制概念的功效。

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