Mathematical Model of a Tonal Rail Chain without Insulating Joints with Current Receiver in Shunt Mode

Author:

Aliev Ravshan M.1

Affiliation:

1. Tashkent State Transport University Department of Information Systems and Technologies , Tashkent , Uzbekistan

Abstract

Abstract One of the drawbacks of the currently used tonal rail chains without insulating joints is that when the train approaches the controlled section, the train begins to shunt this section at some distance before entry on him. In connection with the traffic light moves on this distance. But being that this distance depends on many variables, it constantly changes these variables. For eliminate this drawback, instead of the traditional potential receiver it is proposed to use electric current track receiver, which has a clear boundary fixation entry of train on the controlled section. By now developed and used methods for determining the main analytical expressions for analysis and synthesis tonal rail circuits with potential receivers in various operating modes, and the theoretical issues of tonal rail chains with current receivers were practically not considered, in this connection, the article considers the development of mathematical models for determining the absolute shunt sensitivity of tonal rail chains without isolating joints with current receivers and methods for calculating determination of the critical location of the minimum shunt sensitivity. The obtained expressions differ significantly from the known equations of absolute shunt sensitivity and the critical location of the minimum value of the shunt sensitivity and will allow to spend analyzing, synthesis and design of tonal rail chains without isolating joints with current receivers, that will allow to increase the safety of train traffic.

Publisher

Walter de Gruyter GmbH

Subject

Computer Science Applications,General Engineering

Reference18 articles.

1. 1. Theeg, G., Vlasenko, S. (2009) Railway Signalling & Interlocking. International Compendium. Editors: A DVV Media Group publication. Eurailpress, 448 p.

2. 2. Lisenkov, V.M., Bestemyanov, P.F., Leushin, V.B. and others. (2009) Train traffic control systems on the tracks. Part 2; edited by Lisenkov, V.M. М.: GOU “Training and Methodological Centre for Railway Education”. Transport book, 175 p. (in Russian)

3. 3. Honcharov, K. V. (2013) Improving the stability of tonal track circuits under fluctuations of ballast resistance Nauka ta progres transportu Vìsnik Dnìpropetrovs’kogo nacìonal’nogo unìversitetu zalìzničnogo transport, 2013, 6 (48), 23-31.

4. 4. Arkatov, V.S. (1992) Rail chains of main railways / V.S. Arkatov, A.I. Bazhenov, N.F. Kotlyarenko. M.: Transport, 384 p. (in Russian)

5. 5. Polevoy, Yu.I. (2005) Improvement of devices for monitoring the state of railway track sections. Samara: 2005. p.133 (in Russian)

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