A New Preamble Signal Design for Random Access in Sub-Terahertz 6G Cellular Systems

Seunghyun Lee, Woo-Yeol Jeong, Jungsoo Jung, Juho Lee, Sunghyun Choi
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引用次数: 1

Abstract

This paper presents a new physical random access channel (PRACH) preamble design suitable for the next-generation 6G cellular communication systems operating in the sub-Terahertz (THz) bands. In these extremely high frequency channels, the subcarrier spacing (SCS) of the orthogonal frequency-division multiplexing (OFDM) based waveform should be significantly increased at least to MHz-level to mitigate the severe effect of phase noise, thus resulting in the OFDM symbol length of several hundreds of nano-seconds. Under this setup with nano-scale OFDM symbol length, a new paradigm of PRACH preamble design is required, since the conventional 5G PRACH only works under the assumption of sufficiently large OFDM symbol length to enable the base station (BS) to estimate the round-trip propagation delay (RTD) of users' non-synchronized uplink signals in a cell. To this end, we propose a new structure of two-part PRACH preamble and the corresponding two-step detection method. It is shown that the scalable structure of the proposed preamble design facilitates practical estimation of RTD at the BS under various sub-THz environments with very small OFDM symbol length as well as arbitrary cell size. The proposed schemes will provide important insights in designing sub-THz cellular systems adopting MHz-level SCS.
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亚太赫兹6G蜂窝系统随机接入的一种新的前导信号设计
本文提出了一种适用于次太赫兹(THz)频段的下一代6G蜂窝通信系统的新型物理随机接入信道(PRACH)前置设计。在这些极高的频率信道中,为了减轻相位噪声的严重影响,基于正交频分复用(OFDM)的波形的子载波间距(SCS)至少应该显著增加到mhz级,从而使OFDM符号长度达到数百纳秒。在这种纳米级OFDM符号长度的设置下,传统的5G PRACH只能在足够大的OFDM符号长度的假设下工作,以使基站(BS)能够估计小区内用户非同步上行信号的往返传播延迟(RTD),因此需要一种新的PRACH前导设计范式。为此,我们提出了一种新的两部分PRACH序言结构和相应的两步检测方法。结果表明,所提出的序言设计的可扩展结构有助于在各种亚太赫兹环境下,在非常小的OFDM符号长度和任意小区大小的情况下,对BS的RTD进行实际估计。所提出的方案将为设计采用mhz级SCS的亚太赫兹蜂窝系统提供重要见解。
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