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ICI Mitigation by Estimation of Double Carrier Frequency Offsets in High-Speed-Railway Communication Systems for Smart Cities

机译:通过估算智能城市高速铁路通信系统中双载波频率偏移量来减少ICI

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摘要

The urbanization and the fourth industrial revolution lead to the explosion of smart cities. One of the most prior problems to solve in digital cities is transportation infrastructures and high speed railway (HSR) is an effective solution. In communication aspect of HSR, the passenger's demand and transportation management networks require high-speed data services with reliable connections. Orthogonal frequency division multiplexing (OFDM) is a modulation method in the advanced communication systems to provide broadband communications services. OFDM is substantial against inter-symbol-interference due to long symbol duration, but it is very sensitive to doppler effect that happens when the speed of the train is getting much faster. In addition, inter-carrier interference (ICI) caused by high doppler frequency shift has a severe impact on OFDM in case of high channel variations. In this paper, we propose an ICI mitigation method by utilizing the estimation and pre-compensation of high doppler shifts in HSR communication systems for smart cities. The estimate of the doppler shift is based on a preamble frame of data in communication link between EnodeB and user equipment. The simulation results show that the performance of system has been improved using the proposed model.
机译:城市化和第四次工业革命导致智慧城市的爆炸式增长。在数字城市中,最先要解决的问题之一是交通基础设施,而高速铁路(HSR)是有效的解决方案。在高铁的通信方面,乘客的需求和运输管理网络需要具有可靠连接的高速数据服务。正交频分复用(OFDM)是高级通信系统中的一种调制方法,用于提供宽带通信服务。由于符号持续时间长,OFDM对符号间干扰至关重要,但是对于列车速度越来越快时发生的多普勒效应非常敏感。另外,在高信道变化的情况下,由高多普勒频移引起的载波间干扰(ICI)对OFDM具有严重影响。在本文中,我们提出了一种利用智能城市HSR通信系统中高多普勒频移的估计和预补偿的ICI缓解方法。多普勒频移的估计是基于EnodeB与用户设备之间的通信链路中数据的前导帧。仿真结果表明,该模型提高了系统性能。

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