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An optimized handover trigger scheme in LTE systems for high-speed railway

机译:高速铁路LTE系统中的优化切换触发方案

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With the development of high-speed railway all over the world, the reliability and communication of bullet train depends on the wireless communication between train and Base Stations (BSs) along the railroad. Traditional handover scheme of Long Term Evolution (LTE) network is that ‘neighboring cell becomes better than an offset relative to the serving cell’ during Time To Trigger (TTT), it avoids ping-pong between two cells effectively, but in high-speed railway, it would lead to radio link failure as it can''t trigger handover. On the other hand, it would cause false trigger and alternate signaling frequently if just cutting down TTT. This paper includes a brief overview of traditional handover scheme, followed by an analysis of it in high-speed railway based on LTE systems. The analysis emphasizes the effects of velocity on handover. A scheme based on the train''s position is proposed. The scheme adjusts TTT and entering and leaving condition of trigger handover at different positions. The simulation results show that the proposed scheme triggers handover more effectively as compared with traditional handover scheme, thus decreases outage probability and improves handover success probability.
机译:随着世界范围内高速铁路的发展,子弹头列车的可靠性和通信取决于火车与铁路沿线基站(BS)之间的无线通信。长期演进(LTE)网络的传统切换方案是:在触发时间(TTT)期间,“相邻小区比相对于服务小区的偏移要好”,它有效地避免了两个小区之间的乒乓球,但是在高速下铁路,它将导致无线电链路故障,因为它无法触发切换。另一方面,如果仅降低TTT,则将经常引起误触发和交替发信号。本文简要概述了传统的切换方案,然后在基于LTE系统的高速铁路中对其进行了分析。分析强调了速度对切换的影响。提出了一种基于火车位置的方案。该方案在不同位置调整TTT以及触发切换的进入和离开条件。仿真结果表明,与传统切换方案相比,该方案能够更有效地触发切换,从而降低了断电概率,提高了切换成功率。

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