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Integrating driving and traffic simulators for the study of railway level crossing safety interventions: a methodology

机译:集成驾驶和交通模拟器以研究铁路平交道口安全干预措施:一种方法

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Safety at Railway Level Crossings (RLXs) is an important issue within the Australian transport system. Crashes at RLXs involving road vehicles in Australia are estimated to cost $10 million each year. Such crashes are mainly due to human factors; unintentional errors contribute to 46% of all fatal collisions and are far more common than deliberate violations. This suggests that innovative intervention targeting drivers is particularly promising to help improve RLX safety. In recent years there has been a rapid development of a variety of affordable technologies which can be used to increase driver's risk awareness around crossings. To date, no research has evaluated the potential effects of such technologies at RLXs in terms of safety, traffic and acceptance of the technology. Integrating driving and traffic simulations is a safe and affordable approach for evaluating these effects. This methodology will be implemented in a driving simulator, where we recreated realistic driving scenario with typical road environments and realistic traffic. This paper presents a methodology for evaluating comprehensively potential benefits and negative effects of such interventions: this methodology evaluates driver awareness at RLXs, driver distraction and workload when using the technology. Subjective assessment on perceived usefulness and ease of use of the technology is obtained from standard questionnaires. Driving simulation will provide a model of driving behaviour at RLXs which will be used to estimate the effects of such new technology on a road network featuring RLX for different market penetrations using a traffic simulation. This methodology can assist in evaluating future safety interventions at RLXs.
机译:铁路平交道口(RLX)的安全性是澳大利亚交通运输系统中的重要问题。 RLX涉及澳大利亚道路车辆的撞车事故估计每年造成1000万澳元的损失。这种崩溃主要是由于人为因素造成的。意外错误占所有致命碰撞的46%,比故意违规更为常见。这表明针对驾驶员的创新干预措施特别有助于改善RLX安全性。近年来,各种可负担得起的技术得到了飞速发展,可用于提高驾驶员对过境点的风险意识。迄今为止,尚无研究评估此类技术在RLX的安全性,交通性和技术接受性方面的潜在影响。集成驾驶和交通模拟是评估这些影响的安全且负担得起的方法。该方法将在驾驶模拟器中实现,在该模拟器中,我们使用典型的道路环境和现实交通情况重新创建了现实的驾驶场景。本文提出了一种方法,用于全面评估此类干预措施的潜在收益和负面影响:该方法可评估使用该技术时驾驶员对RLX的认识,驾驶员分心和工作量。可从标准调查表获得对技术的有用性和易用性的主观评估。驾驶模拟将提供RLX处驾驶行为的模型,该模型将用于通过交通模拟来评估这种新技术对具有RLX的公路网络的影响,以针对不同的市场渗透率。这种方法可以帮助评估RLX的未来安全干预措施。

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