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Random Access for Underwater Acoustic Cellular Systems

机译:水下声学蜂窝系统的随机访问

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摘要

In this paper, a random access preamble (RAP) design technique for underwater acoustic cellular systems is proposed. After showing that the conventional RAP used in long term evolution (LTE) systems is not appropriate for underwater acoustic cellular systems, two different types of RAPs (RAP 1 and RAP 2) are proposed to detect the identity of underwater equipmentodes (UEs) and estimate the time delay between a UE and an underwater base station (UBS) at the physical layer. RAP 1 is generated using a Zadoff-Chu (ZC) sequence where the identity of the UE is mapped to its root index, whereas RAP 2 is generated using a linear frequency modulation (LFM) waveform where the identity of the UE is mapped to its frequency sweeping parameter and frequency shifting parameter. Ambiguity functions (AFs) and cross-ambiguity functions (CAFs) of RAP 1 and RAP 2 are derived to investigate their correlation properties under the effect of time delay and Doppler shift. The performance of RAP detection is investigated by analyzing the detection probabilities and false alarm probabilities of RAP 1 and RAP 2 in a Doppler environment. By evaluating the performances of RAP 1 and RAP 2 in various situations, it is concluded that RAP 2 is more suitable for underwater acoustic cellular systems. The AF and CAF analytically obtained in this paper are shown to be similar to those obtained using experimental data.
机译:本文提出了一种用于水下声学蜂窝系统的随机接入前导码(RAP)设计技术。在证明长期演进(LTE)系统中使用的常规RAP不适合水下声学蜂窝系统后,提出了两种不同类型的RAP(RAP 1和RAP 2)来检测水下设备/节点(UE)的身份并在物理层上估计UE与水下基站(UBS)之间的时间延迟。 RAP 1使用Zadoff-Chu(ZC)序列生成,其中UE的身份映射到其根索引,而RAP 2使用线性调频(LFM)波形生成,其中UE的身份映射到其根索引扫频参数和移频参数。推导了RAP 1和RAP 2的歧义函数(AF)和跨歧义函数(CAF),以研究它们在时延和多普勒频移的影响下的相关特性。通过分析多普勒环境中RAP 1和RAP 2的检测概率和虚警概率,研究了RAP检测的性能。通过评估RAP 1和RAP 2在各种情况下的性能,可以得出结论,RAP 2更适用于水下声学蜂窝系统。本文分析得出的AF和CAF与使用实验数据获得的结果相似。

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