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首页> 外文期刊>IEEE Transactions on Intelligent Transportation Systems >A Study of the Effectiveness of Message Content, Length, and Rate Control for Improving Map Accuracy in Automated Driving Systems
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A Study of the Effectiveness of Message Content, Length, and Rate Control for Improving Map Accuracy in Automated Driving Systems

机译:消息内容,长度和速率控制对提高自动驾驶系统的地图准确性的有效性研究

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By providing information about the objects that are non-line of sight and/or beyond the detection range of the local sensors, inter-vehicle communication compensates for the limitations of vehicle tracking subsystem in automated driving systems that relies on on-board sensing devices. Tracking capability in such systems can further be improved by making optimal use of the communication channel through sharing of locally created map data instead of transmitting only beacon messages. Message length adaptation, together with transmit rate control can address the scalability issue inherent in the vehicular network. The content of the exchanged information is another important aspect that has significant impact on the map accuracy in cooperative driving systems. In this paper, we study different congestion and content control schemes for a communication architecture aimed at map sharing, and evaluate their performance in terms of a situational awareness metric, namely position tracking error. This paper determines that message content should be concentrated on mapped objects that are located farther away from the sender, but near the edge of local sensor range. This paper also finds that optimized combination of message length and transmit rate ensures the optimal channel utilization for cooperative vehicular communication, which in turn improves the situational awareness of the whole system.
机译:通过提供关于非视线和/或超出本地传感器的检测范围的对象的信息,车辆间通信补偿了依赖于车载传感设备的自动驾驶系统中车辆跟踪子系统的局限性。通过共享本地创建的地图数据而不是仅发送信标消息来优化通信信道的使用,可以进一步提高此类系统中的跟踪能力。消息长度自适应以及传输速率控制可以解决车载网络固有的可伸缩性问题。交换信息的内容是另一个重要方面,对协作驱动系统中的地图准确性有重大影响。在本文中,我们针对旨在共享地图的通信体系结构研究了不同的拥塞和内容控制方案,并根据情境感知度量(即位置跟踪误差)评估了它们的性能。本文确定邮件内容应集中在距离发件人较远但在本地传感器范围边缘附近的映射对象上。本文还发现,消息长度和传输速率的优化组合确保了用于协作车辆通信的最佳信道利用率,从而提高了整个系统的态势感知能力。

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