列车通信高数据速率传输方案的性能研究

É. Masson, M. Chennaoui, M. Berbineau, H. Dumortier
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引用次数: 3

摘要

新的信息和通信技术彻底改变了我们目前的生活方式。这些技术的迅速发展揭示了新的需求,促进了地面运输领域电信的发展。如今的趋势是为运营和乘客的应用提供无缝连接服务。这些服务可使营办商在优化营运及维修成本的同时,透过为乘客提供新服务,提升公共交通的友好、舒适及安全感。所有这些应用都要求在上行和下行方向上有很高的数据速率。为了节省大量的地面基础设施部署,我们的工作考虑了基于卫星使用和每个系统的地面链路功能可用性的架构。在最后的应用程序中,将实现两个链接与系统可用性之间的垂直切换。本文研究了接收机高速移动时仅时变信道的地面链路性能。这种地面链路基于与IEEE802.16a标准非常相似的物理层。通过仿真,分析了该系统在新型瑞利衰落信道模拟器上的性能。给出了基于仿真链的真实传动链低速下的实验结果。
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Performance of High Data Rate Transmission Scheme developed for train communications
New information and communication technologies revolutionized our current way of life. The rapid growth of these techniques reveals new needs, which contribute to the development of telecommunications in terrestrial transportation field. The trend today is to provide seamless connectivity services both for operations and passengers' applications. These services allow operators to optimize exploitation and maintenance costs but also to enhance friendliness, comfort and security feeling of public transport by offering new services to passengers while travelling. All these applications require high data rate in uplink and downlink directions. In order to save huge terrestrial infrastructure deployment, our work considers an architecture based on the use of a satellite and a terrestrial link function of the availability of each system. In the final application, vertical handovers between the two links versus system availability will be implemented. This paper investigates the performance of the terrestrial link only over time varying channel when the receiver moves with a very high speed. This terrestrial link is based on a very similar physical layer to the IEEE802.16a standard. The performances of such a system are analyzed over a new Rayleigh fading channel simulator through simulations. First experimental results obtained at lower speed with a real transmission chain based on the simulated one are presented.
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