Introducing Road Surface Conditions into a Microscopic Traffic Simulation

T. Weber, P. Driesch, D. Schramm
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引用次数: 2

Abstract

The introduction of highly automated driving functions is one of the main research and development efforts in the automotive industry worldwide. In the early stages of the development process, suppliers and manufacturers often wonder whether and to what extend the potential of the systems under development can be estimated in a cheap and timely manner. In the context of a current research project, a sensor system for the detection of the road surface condition is to be developed and it is to be investigated how such a system can be used to improve higher level driving functions. This paper presents how road surface conditions are introduced in various elements of the microscopic traffic simulation such as the actual network, the network editor, a device for detection, and an adaptation of the standard Krauß car following model. It is also shown how the adaptations can subsequently affect traffic scenarios. Furthermore, a summary is given how this preliminary work integrates into the larger scope of using SUMO as a tool in the process of analyzing the effectiveness of a road surface condition sensor.
在微观交通模拟中引入路面状况
引入高度自动化驾驶功能是全球汽车行业的主要研发工作之一。在开发过程的早期阶段,供应商和制造商经常想知道是否能够以廉价和及时的方式评估正在开发的系统的潜力,以及在多大程度上评估这些潜力。在当前研究项目的背景下,将开发一种用于检测路面状况的传感器系统,并研究如何使用这种系统来提高更高级别的驾驶功能。本文介绍了如何在微观交通模拟的各种元素中引入路面条件,例如实际网络,网络编辑器,检测设备以及标准克劳斯汽车跟随模型的改编。它还显示了适应性如何随后影响交通场景。此外,总结了如何将这项初步工作整合到使用SUMO作为分析路面状况传感器有效性过程中的工具的更大范围中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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