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Multiple Preambles for High Success Rate of Grant-Free Random Access With Massive MIMO

机译:具有大规模MIMO的无授权随机接入的高成功率的多个前同步码

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摘要

Grant-free random access (RA) with massive MIMO is a promising RA technique that provides significant benefits in increasing the channel reuse efficiency with low signaling overhead. Since user equipment (UE) detection and channel estimation in grant-free RA rely solely on the received preambles, preamble designs that enable high success rate of UE detection and channel estimation are very much in need to ensure the performance gain of grant-free RA with massive MIMO. In this paper, a super preamble consisting of multiple consecutive preambles is proposed for the high success rate of grant-free RA with massive MIMO. With the proposed approach, the success of UE detection and channel estimation for a UE depends on two conditions: 1) it is a solvable UE, where we define the UE whose super preamble is not a linear combination of the other UEs' super preambles as a solvable UE and 2) its super preamble is detected. Accordingly, we theoretically analyze the solvable rate of the UEs with multiple preambles and propose a reliable UE detection algorithm to obtain the super preambles of the UEs by exploiting the quasi-orthogonality characteristic of massive MIMO. The theoretical analysis and simulation results show that turning a preamble into a super preamble consisting of two or three shorter preambles, the success rate of UE detection and channel estimation could be significantly increased using the proposed approach.
机译:具有大规模MIMO的免授权随机访问(RA)是一种很有前途的RA技术,在以低信令开销提高信道重用效率方面具有显着优势。由于无授权RA中的用户设备(UE)检测和信道估计仅依赖于所接收的前同步码,因此非常需要能够实现UE检测和信道估计的高成功率的前同步码设计,以确保无授权RA的性能增益。具有大规模MIMO。在本文中,针对具有大规模MIMO的免授权RA的高成功率,提出了由多个连续的前同步码组成的超级前同步码。利用所提出的方法,针对UE的UE检测和信道估计的成功取决于两个条件:1)它是可解决的UE,其中我们定义其超前同步码不是其他UE的超前同步码的线性组合的UE为: 2)检测到其超级前同步码。因此,我们从理论上分析了具有多个前导码的UE的可解速率,并提出了一种可靠的UE检测算法,以利用大规模MIMO的准正交特性来获得UE的超前导码。理论分析和仿真结果表明,将前导码转换为由两个或三个较短的前导码组成的超级前导码,可以显着提高UE检测和信道估计的成功率。

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