Transmission system model in the track-vehicle relationship based on Long Term Evolution technology

Q2 Engineering Archives of Transport Pub Date : 2023-06-30 DOI:10.5604/01.3001.0016.3237
M. Chrzan, Paweł Pirosz, J. Paś
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Abstract

Because of degradations of the wired infrastructure connecting the element of railroad control systems, and related primarily to their destruction, the use of the radio transmission medium for independent management of rail-road traffic control devices is increasingly being considered. An undoubted problem in implying such solutions is the security of transmission in such systems. It should be noted that security at a certain level of transmission is currently already offered by the radio transmission systems themselves, which has also been used in the GSM-R standard. The creation of a separate dedicated system for railroads involves huge expenditures for the design, testing, certification and, finally, construction and implementation of such technology. Therefore, in the opinion of the author of this dissertation, it is possible to use public open radio networks for the needs of railroads, which significantly reduces costs, since such a system is based on existing infrastructure. It is necessary to develop a way of transmitting information that meets the requirements of secure transmission in the sense of railroad traffic control systems. The task is to develop a general model for open radio transmission in traffic control systems based on the latest public radio standard, which is LTE, 5G or Future Railway Mobile Communications System (FRMCS). The article will present the concept of data transmission in the track vehicle relationship with the use of LTE (Long Term Evolution) technology. It will show the concept of transmission based on the PN-EN50159:2011 standard and the results of the tests conducted during control trips on the railway route. The main element that will be subject to the research will include the transmission safety and its delay. The impact of a type of transmission encryption on its delay will be estimated with the assumed blocks of data sent during the transmission. A probability distribution and density functions of the transmission delay probability distribution with the message sizes in the range from 16B to 10 kB with four ways of the signal encoding according to the PN-EN50159:2011 standard will be also analysed.
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基于长期进化技术的轨道车辆关系传动系统模型
由于连接铁路控制系统元件的有线基础设施的退化,并且主要与它们的破坏有关,越来越多地考虑使用无线电传输介质来独立管理铁路-道路交通控制设备。暗示这种解决方案的一个毋庸置疑的问题是这种系统中传输的安全性。应该注意的是,无线电传输系统本身目前已经提供了一定传输级别的安全性,GSM-R标准中也使用了这种安全性。为铁路创建一个单独的专用系统需要在设计、测试、认证以及最后的此类技术的建设和实施方面投入巨额资金。因此,在本文作者看来,使用公共开放无线电网络来满足铁路的需求是可能的,这大大降低了成本,因为这样的系统是基于现有的基础设施。有必要开发一种满足铁路交通控制系统安全传输要求的信息传输方式。任务是基于最新的公共无线电标准,即LTE、5G或未来铁路移动通信系统(FRMCS),开发交通控制系统中开放无线电传输的通用模型。本文将介绍LTE(长期演进)技术在轨道车辆关系中的数据传输概念。它将展示基于PN-EN50159:2011标准的变速器概念,以及在铁路线路控制跳闸期间进行的测试结果。将进行研究的主要因素将包括传输安全性及其延迟。一种传输加密类型对其延迟的影响将通过传输期间发送的假定数据块来估计。还将分析根据PN-EN50159:2011标准的四种信号编码方式下,消息大小在16B到10kB范围内的传输延迟概率分布的概率分布和密度函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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