5G 基站与航空无线电高度计干扰的部署保护

Zhaobin Duan, Zhenyang Ma, Jie Bai, Peng Wang, Ke Xu, Shun Yuan
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摘要

在本手稿中,我们介绍了一种新型部署保护方法,旨在保护航空无线电高度计(RA)免受第五代(5G)电信基站(BS)的干扰。我们的方法涉及一个用于定义禁区的综合干扰模型,并利用功率控制和角度关闭方法来减轻干扰。首先,为了确保可靠的保护,我们定义了水平和垂直禁区,并研究了它们的变化,以增强 RA 对 5G 干扰的免疫力。其次,我们验证了该模型在各种运行场景中的有效性,分析了基站类型、天线参数、飞行高度和飞机姿态等因素的影响,以涵盖广泛的现实世界场景。第三,为减少干扰,我们提出并分析了针对 RMa 禁区的功率控制和角度关闭方法。我们的结果证明了部署保护方法在保护 RA 免受 5G 干扰方面的有效性,为民航运行和机场附近基站部署期间的干扰防护提供了指导。
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Deployment Protection for Interference of 5G Base Stations with Aeronautical Radio Altimeters
In this manuscript, we present a novel deployment protection method aimed at safeguarding aeronautical radio altimeters (RAs) from interference caused by fifth-generation (5G) telecommunication base stations (BSs). Our methodology involves an integrated interference model for defining prohibited zones and utilizes power control and angle shutoff methods to mitigate interference. First, to ensure reliable protection, we define both horizontal and vertical prohibited zones and investigate their variations to immunize RA against 5G interference. Second, we validate the effectiveness of the model in various operational scenarios, analyzing the influence of factors such as base station types, antenna parameters, flight altitude, and aircraft attitudes to cover a wide range of real-world scenarios. Third, to mitigate interference, we propose and analyze the power control and angle shutoff methods through simulation for the RMa prohibited zone. Our results demonstrate the efficacy of the deployment protection method in safeguarding RAs from 5G interference, providing guidance for interference protection during civil aviation operations and base station deployment near airports.
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