5G射频中继器同步信号抽象合成新方法

Kyung-yong Lee, Jae-Seon Jang
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引用次数: 1

摘要

由于下行时隙与上行时隙重叠时存在干扰,在上行和下行时隙分别使用的时分双工(TDD)系统中,实现准确的同步非常重要。对于使用链路天线接收基站信号并将其放大并通过业务天线提供服务的5G RF中继器来说,了解下行和上行的精确定时也很重要,因为5G RF中继器在切换下行和上行时也会切换链路天线和业务天线的角色。同步信号块(SSB)解码方法用于了解基站的下行和上行时序。然而,该方法的缺点是当SS信噪比(SS-SINR)低于可解码的SINR时,例如多个小区的边界,无法使用。本文提出了一种通过接收SSB并识别其模式而无需解码获取同步的方法,提出了一种新的同步信号提取方法,即使在SS-SINR干扰下SS-SINR低于可解码SINR的部分也能获得同步。该同步信号提取方法与SSB译码方法相比,可将5G射频中继器的安装覆盖率提高293%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel method for synthesis of synchronization signal abstraction for 5G RF repeater
It is important to acquire accurate synchronization in the time division duplex (TDD) system that uses downlink and uplink separately in time because interference exists when downlink and uplink time slots overlap. It is also important to know the precise timing of downlink and uplink for the 5G RF repeater that receives the signal of the base station with the link antenna, amplifies it, and serves through a service antenna because the 5G RF repeater also switches the roles of link antenna and service antenna when switching downlink and uplink. The synchronization signal block (SSB) decoding method is used to know the downlink and uplink timings of the base station. However, this method has the disadvantage that it cannot be used when the SS signal to interference and noise ratio (SS-SINR) is below the decodable SINR such as the boundary of multiple cells. This paper proposes a new method of synchronization signal abstraction that can acquire synchronization even in the section where SS-SINR is below the decodable SINR due to SS-SINR interference by introducing a way to acquire synchronization without decoding by receiving SSB and identifying its pattern. The new method of synchronization signal abstraction can increase the installation coverage of the 5G RF repeater by 293% compared to the SSB decoding method.
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