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Autonomously Driving Trains on Open Tracks - Concepts, System Architecture and Implementation Aspects

机译:在开放轨道上自动驾驶火车-概念,系统架构和实施方面

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This paper describes a cyber-physical system that we called autoBAHN as well as some economic and legal aspects for the realization of the vision of a driverless train operating on openly accessible existing railroads, particularly regional branch lines. Existing autonomous trains, e. g., in use on airports, do not need obstacle recognition because they operate on closed tracks that cannot be accessed by humans and have no intersections with roads. The vision is to economically offer a train frequency of about 10 min on regional branch lines. This requires more but smaller trains. As it would not be economically feasible to operate them with human drivers, they need to be autonomous. As it would again not be economically feasible to change the infrastructure (from open to closed tracks), the autonomous trains need to recognize potential obstacles on or near tracks analogous to autonomous cars. First we describe how train intervals of about 10 min can be achieved on single-track railroads. What kind and degree of changes in infrastructural equipment is necessary was validated with the help of a discrete event simulation. The focus of the paper is on the overall system architecture of the prototypical autonomous train that we have implemented and in particular on obstacle recognition. Finally, the current legislation in German speaking countries is surveyed for the assessment of whether an autonomously operating railway system can become reality in the future.
机译:本文描述了一个我们称为autoBAHN的网络物理系统,以及一些经济和法律方面的内容,以实现在可公开访问的现有铁路(特别是区域分支线路)上运行的无人驾驶火车的愿景。现有的自动火车,e。例如,在机场上使用时,不需要障碍物识别,因为它们在人无法进入且与道路没有交叉路口的封闭轨道上运行。愿景是在区域分支线路上经济地提供约10分钟的火车频率。这需要更多但更小的火车。由于在人工驾驶下操作它们在经济上不可行,因此它们必须具有自主性。由于再次改变基础设施(从开放轨道到封闭轨道)在经济上也不可行,因此自动驾驶列车需要识别类似于自动驾驶汽车的轨道上或附近的潜在障碍物。首先,我们描述如何在单轨铁路上实现约10分钟的火车间隔。在离散事件模拟的帮助下,验证了必须对基础设备进行何种类型和程度的更改。本文的重点是我们已经实现的原型自动火车的整体系统架构,尤其是障碍物识别。最后,对德语国家的现行法律进行了调查,以评估自动驾驶铁路系统将来是否可以成为现实。

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