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Rethinking Rail Track Switches for Fault Tolerance and Enhanced Performance

机译:重新思考轨道道岔的容错性和增强性能

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Abstract: Railway track switches, commonly referred to as ‘turnouts’ or ‘points’, are a necessary element of any rail network. However, they often prove to be performance limiting elements of networks. A novel concept for rail track switching has been developed as part of a UK research project with substantial industrial input. The novel design meets the set of functional requirements for track switching solutions, in addition to offering several features that current designs are unable to, in particular to enable multi-channel actuation and rail locking, and provide a degree of fault tolerance. This paper describes the design and operation of this switching concept, from requirements capture and solution generation through to the construction of the laboratory demonstrator. The novel concept is contrasted with the design and operation of the ‘traditional’ switch design. Conclusions to the work show that the novel concept meets all functional requirements whilst exceeding the capabilities of existing designs in most non-functional requirement areas.
机译:摘要: 铁路轨道道岔,通常称为“道岔”或“点”,是任何铁路网络的必要元素。然而,它们通常被证明是网络的性能限制元素。作为英国研究项目的一部分,开发了一种新颖的铁路轨道转换概念,并投入了大量工业投入。新颖的设计满足了轨道切换解决方案的一系列功能要求,此外还提供了当前设计无法实现的多项功能,特别是实现多通道驱动和导轨锁定,并提供一定程度的容错能力。本文描述了这种切换概念的设计和操作,从需求捕获和解决方案生成到实验室演示器的构建。新颖的概念与“传统”开关设计的设计和操作形成鲜明对比。工作结论表明,新颖的概念满足了所有功能要求,同时在大多数非功能需求领域超越了现有设计的能力。

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