论文标题
基于OTF的随机访问序列序列传输,用于高移动性方案
OTFS Based Random Access Preamble Transmission For High Mobility Scenarios
论文作者
论文摘要
我们考虑基于正交时间频率空间(OTFS)调制系统的上行链路正时同步的问题,其中信息嵌入延迟多普勒(DD)域中。为此,我们提出了一种基于OTFS调制的新型随机访问(RA)前序波形。我们还提出了一种基于DD域中接收的RA序列的用户终端(UT)和基站(BS)之间的往返传播延迟的方法。此估计值(称为定时提前估计值)被馈回相应的UTS,以便它们可以推进上行链路定时,以便以时间同步的方式在BS接收来自单元格中所有UTS的信号。通过分析和模拟,我们研究了RA的OTF调制参数对定时误差概率的影响,这给出了如何选择这些参数的宝贵见解。对高迁移率方案的详尽数值模拟表明,与第四代(4G)系统中的RA方法相比,相比,基于OTFS的RA的正时误差概率(TEP)性能对于通道诱导的多路径多普勒移动的性能更为强大。
We consider the problem of uplink timing synchronization for Orthogonal Time Frequency Space (OTFS) modulation based systems where information is embedded in the delay-Doppler (DD) domain. For this, we propose a novel Random Access (RA) preamble waveform based on OTFS modulation. We also propose a method to estimate the round-trip propagation delay between a user terminal (UT) and the base station (BS) based on the received RA preambles in the DD domain. This estimate (known as the timing advance estimate) is fed back to the respective UTs so that they can advance their uplink timing in order that the signal from all UTs in a cell is received at the BS in a time-synchronized manner. Through analysis and simulations we study the impact of OTFS modulation parameters of the RA preamble on the probability of timing error, which gives valuable insights on how to choose these parameters. Exhaustive numerical simulations of high mobility scenarios suggests that the timing error probability (TEP) performance of the proposed OTFS based RA is much more robust to channel induced multi-path Doppler shift when compared to the RA method in Fourth Generation (4G) systems.