On Enlarged 5G PRACH Preamble Set Using Alltop Cubic-Phase Sequences

Renaud-Alexandre Pitaval
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Abstract

5G physical random access channel (PRACH) uses several new preamble formats with less Zadoff-Chu (ZC) sequences available for the network than with formats inherited from LTE. We thus recently proposed an enlarged 5G PRACH preamble construction by covering ZC sequences with cubic-phase Alltop sequences. This construction significantly increases the PRACH sequence set while maintaining a similar intra-cell detection performance from a guaranteed low-correlation zone, and with limited inter-cell interference. However, unlike ZC, the new sequences did not come with a low-complexity PRACH detection which then had to naively rely on an exhaustive search, significantly increasing the PRACH receiver complexity. In this paper, we revisit this extended PRACH sequence construction and modify it to enable a detection of the same complexity-order as current 5G PRACH sequence set, without impacting the detection performance and promised PRACH capacity. Moreover, we describe a symmetrical but slightly non-equivalent PRACH sequence construction that achieves a similar performance and enables the same low-detection capability. Interestingly, this latter construction can be reduced to show that only pure Alltop and ZC sequences may concurrently be used in the network.
基于全顶三相序列的5G PRACH扩大化序集研究
5G物理随机接入信道(PRACH)使用几种新的前导格式,与从LTE继承的格式相比,这些格式可用于网络的Zadoff-Chu (ZC)序列更少。因此,我们最近提出了用三相Alltop序列覆盖ZC序列的扩大5G PRACH序文结构。这种结构显著增加了PRACH序列集,同时在保证的低相关区保持了类似的细胞内检测性能,并且细胞间干扰有限。然而,与ZC不同的是,新序列没有低复杂度的PRACH检测,因此不得不天真地依赖于穷举搜索,这大大增加了PRACH接收器的复杂度。在本文中,我们重新审视了这个扩展的PRACH序列构建,并对其进行了修改,使其能够在不影响检测性能和承诺PRACH容量的情况下,检测出与当前5G PRACH序列集相同的复杂度顺序。此外,我们描述了一个对称但稍微不等效的PRACH序列结构,实现了类似的性能,并实现了相同的低检测能力。有趣的是,后一种构造可以简化为只有纯Alltop和ZC序列可以在网络中同时使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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