MIMO Channel Capacity for Rail Transportation Applications: The Impact of Tunnel Curvatures

A. Aziminejad, Yan He
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引用次数: 1

Abstract

Rail transportation industry has drawn a growing interest on the use of Radio Access Technology for critical and non-critical services to improve safety/reliability, performance, and passenger experience. During the past two decades the theory and practice of the MIMO communications has solidified to the point where MIMO is now the main infrastructure for several legacy and emerging radio access standards. In this paper, the impact of subway tunnels’ curvatures on the MIMO channel capacity is explored. A heuristic approach is proposed which provides an efficient and low complexity solution for the MIMO channel capacity in curved subway tunnels for both the C-MIMO and the D-MIMO paradigms. The suggested approach is quite versatile and can be swiftly expanded to the case of multi-segment inhomogeneous tunnels.
轨道交通应用的MIMO通道容量:隧道曲率的影响
铁路运输业对在关键和非关键服务中使用无线接入技术越来越感兴趣,以提高安全性/可靠性、性能和乘客体验。在过去的二十年中,MIMO通信的理论和实践已经得到了巩固,MIMO现在已经成为一些传统和新兴无线电接入标准的主要基础设施。本文探讨了地铁隧道曲率对MIMO信道容量的影响。针对C-MIMO和D-MIMO两种模式,提出了一种求解弯曲地铁隧道中MIMO信道容量的高效、低复杂度的启发式方法。所建议的方法是非常通用的,可以迅速扩展到多段非均匀隧道的情况。
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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