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Improved Preamble Detection and Round-Trip Delay Estimation for Random Access in High-Mobility Airborne Communication Systems

机译:高移动性机载通信系统中随机访问的改进的前同步码检测和往返延迟估计

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In this paper, an improved preamble detection and round-trip delay (RTD) estimation algorithm is proposed for random access, particularly in the context of airborne wireless communication systems. The proposed algorithm is capable of both combating large Doppler shifts occurring in high-mobility scenarios and dealing with the energy leakage problem caused by sampling misalignment at the receiver. Specifically, we use the so-called paired Zadoff-Chu (PZC) sequences as preambles, which are detected by a simple correlator. Then the RTD of the user equipment (UE) is estimated based on the relation between the peak values’ indices (PVI) of the squared absolute values (SAV) of two cross-correlation functions (CCF), helping to combat the severe Doppler shift effect. While the conventional symmetric Zadoff-Chu (SZC) scheme determines the two PVIs independently, the proposed PZC scheme jointly calculates both PVIs, which successfully mitigates the PVI ambiguity problem. As a result, the performance of RTD estimation can be significantly improved. Simulation results validate the proposed scheme under a very high UE mobility of 1020ms, which eliminates the timing error floor observed in conventional SZC-aided systems.
机译:本文针对随机接入,特别是在机载无线通信系统中,提出了一种针对随机接入的改进的前同步码检测和往返延迟(RTD)估计算法。所提出的算法既能够抵抗在高移动性场景中发生的大多普勒频移,又能够处理由于接收器处的采样未对准而引起的能量泄漏问题。具体来说,我们使用所谓的成对Zadoff-Chu(PZC)序列作为前同步码,由简单的相关器来检测。然后,基于两个互相关函数(CCF)的平方绝对值(SAV)的峰值指数(PVI)之间的关系,估算用户设备(UE)的RTD,从而有助于应对严重的多普勒频移影响。传统的对称Zadoff-Chu(SZC)方案独立确定两个PVI,而提出的PZC方案联合计算两个PVI,成功地缓解了PVI的歧义性问题。结果,可以显着改善RTD估计的性能。仿真结果验证了在1020ms的非常高的UE移动性下提出的方案,从而消除了传统SZC辅助系统中观察到的定时误差底限。

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