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The Contribution of Automation to Resilience in Rail Traffic Control

机译:自动化对铁路交通控制的复原力的贡献

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This paper addresses the challenges of high system complexity within rail traffic control. Based on resilience engineering principles, the different types of traffic control technology are analysed in order to identify either their contributions or hindering factors towards system resilience. Throughout four main generations of technology in traffic control, whilst there is a clear path towards increased automation, evidence from recent research in this domain suggests that the introduction of automation does not necessarily contribute to enhanced resilience. Despite its contributions to efficiency by placing larger areas under the supervision of each control post, it has introduced many new complexities in traffic control decision making. In many cases, automation has created a gap between rail operations and those in charge of their control. Beyond basing their decisions on operational needs and priorities, Traffic Controllers must take into account the possible responses that automated systems might initiate. So far, traffic control technologies are unable to deal with disruptions and much of the variability inherent to complex operations such as the railway but future generations of rail signalling systems may be able to better support resilience if appropriately designed.
机译:本文解决了铁路交通控制中系统高度复杂的挑战。基于弹性工程原理,对不同类型的流量控制技术进行了分析,以确定它们对系统弹性的贡献或阻碍因素。在交通控制的四大主要技术中,尽管有一条明确的途径可以提高自动化程度,但最近在该领域进行的研究表明,自动化的引入并不一定有助于增强弹性。尽管它通过在每个控制站的监督下放置较大的区域来提高效率,但它在交通控制决策中引入了许多新的复杂性。在许多情况下,自动化在铁路运营和负责其运营的运营之间造成了鸿沟。除了根据运营需求和优先级做出决策外,交通管制员还必须考虑自动化系统可能会发起的可能响应。到目前为止,交通控制技术尚无法应对中断以及复杂操作(如铁路)固有的很多可变性,但如果设计得当,下一代的铁路信号系统可能能够更好地支持弹性。

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