1986 – Nov – Thomson Rutledge – Flashing Light Level Crossing Protect
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In this paper, we would like to introduce an innovative proposal based on the research conducted by the Hitachi Rail Innovation team to further improve the existing available tablet application, particularly
This Paper investigates the issues regarding use of passive level crossings for livestock movements in the agricultural industry. This unavoidable practice presents a different risk profile to the typical user, with livestock movement being
I started in signalling more than 30 years ago at British Rail, where I learnt how to design interlockings, initially in relay circuits, and then by programming Solid State Interlockings. This work sparked my interest in safety critical syste
The term signalling principles is often referenced with regards to the design of a signalling system. It is also used as part of the title of a person ‘Principles Verifier’ or ‘Principles Tester’. Some rail managers also reference signalling p
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The Public Transport Authority of Western Australia (PTA) is currently building a new mobile radio and backhaul transmission communications network across the Perth metropolitan electrified railway network.
Today’s railway fatalities are arguably more likely to occur at level crossings than in the train collisions we tend to focus most attention on controlling. Designing for level crossing safety can be messy and grey, especially when the dependen
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Cybersecurity is a hot topic worldwide with regular attacks being performed against multiple domains.
Peter R. Milton Southern District Manager Australian National This paper reviews the concrete sleeper project being carried out on the Adeiaide to Melbourne Broad Gauge line between KiKi and Wolseley, and inciudes details of the processes involved and problems encountered in manufacture and installation.
G. K. Kelly, B.Sc, B.E.Hons Project Manager, Railway Communications, Applied Technology Systems, Telecom Australia This paper describes the Trans Australian Railway Communications System, which provides the backbone infrastructure for the Austrac Train Control System, as well as mobile voice communications and wayside communications requirements. The system is based on optical fibre transmission, and covers a 1700 km track through some of the most remote areas of Australia. Most of the system is solar powered.