Assessing the usage feasibility of TV White Spaces for railway communication applications

M. Samra, Lei Chen, C. Roberts, C. Constantinou, A. Shukla
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引用次数: 3

Abstract

Since telecommunications represent a strategic asset for the railway industry and a focal point for its evolution, it is important to consider emerging standards and technologies responding to the rapidly growing demand for mobile communication solutions in the railway domain. The prospect of opportunistic access to an inefficiently utilized frequency spectrum, known as TV whitespaces, was mainly proposed to solve the spectrum scarcity problem with desirable railway propagation characteristics. This research investigates the requirements of various railway communication applications against TV whitespaces characteristics, considering Rail Remote Condition Monitoring as an initial case study. The main objective is to specify and enhance the QoS parameters for the spectrum secondary users (rail network) in terms of throughput, availability, reliability and performance at speed while ensuring full protection for the spectrum primary users. A simulation scenario using BRaVE and OMNET++ was introduced for a train moving at maximum speed of 80 Km per hour between Selly-Oak and University Station, Birmingham, United Kingdom. Initial results indicate that TV White Spaces system can deliver average throughput of 1.47 Mbps per train. Coverage radius of 12 Km combined with perfectly aligned directional antenna in rural areas can ensure full protection for TV users while allowing higher transmission power for the rail TVWS network.
评估电视空白空间在铁路通信应用中的可行性
由于电信是铁路行业的战略资产,也是其发展的焦点,因此考虑新兴标准和技术以响应铁路领域对移动通信解决方案快速增长的需求是很重要的。提出了对被称为电视空白空间的频谱进行机会访问的前景,主要是为了解决具有理想铁路传播特性的频谱稀缺问题。本研究以铁路远程状态监测为初步案例,探讨各种铁路通信应用对电视空白特性的需求。主要目标是为频谱次要用户(铁路网络)在吞吐量、可用性、可靠性和高速性能方面指定和增强QoS参数,同时确保对频谱主要用户的充分保护。采用BRaVE和omnet++模拟了一列火车在英国伯明翰的Selly-Oak站和大学站之间以最高时速80公里行驶的情景。初步结果表明,TV空白空间系统可以提供每列1.47 Mbps的平均吞吐量。12公里的覆盖半径与农村地区完美对准的定向天线相结合,可以确保对电视用户的充分保护,同时为铁路TVWS网络提供更高的传输功率。
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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