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A Traceable Approach to Remote Interference Management for New Radio

机译:一种可追溯的新无线电远程干扰管理方法

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Remote interference, that the downlink signals from a remote base station (BS) propagate beyond guard period (GP) in the atmospheric duct layer and interfere with the local uplink signals, seriously degrades TDD-based system performance. And remote interference management (RIM) will be standardized in 3rd Generation Partnership Project (3GPP) Release 16. Mitigating the impact of remote BS will be one of the most challenging issues. In this paper, we establish a remote interference simulation system by combining refractivity estimation and parabolic equation (PE) methods. This novel simulation system includes dynamic meteorology measurement design, refractivity estimation, communication setting, and path loss computing. It also provides a traceable approach to remote interference. Moreover we also proved the minimum BS separation distance reference (in 3GPP Release 12) is far from satisfied when atmospheric duct happens. Long-term meteorological statistics and antenna parameters are discussed for mitigating remote interference. The traceable approach can be helpful for RIM and the next generation network deployment planning.
机译:来自远程基站(BS)的下行链路信号在大气管道层中传播超过保护期(GP)并干扰本地上行链路信号的远程干扰会严重降低基于TDD的系统性能。远程干扰管理(RIM)将在第三代合作伙伴计划(3GPP)第16版中进行标准化。减轻远程BS的影响将是最具挑战性的问题之一。本文通过结合折射率估计和抛物线方程(PE)方法建立了一个远程干扰仿真系统。这种新颖的仿真系统包括动态气象测量设计,折射率估算,通信设置和路径损耗计算。它还为远程干扰提供了一种可追溯的方法。此外,我们还证明了发生大气导管时最小的BS间隔距离参考值(在3GPP版本12中)远未得到满足。讨论了长期的气象统计数据和天线参数,以减轻远程干扰。可追溯的方法对于RIM和下一代网络部署计划可能会有所帮助。

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