Spectrum Sharing in Integrated HAPS and Terrestrial Systems Using an Interference Canceler and Coordination

IF 0.3 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC IEICE Communications Express Pub Date : 2024-03-12 DOI:10.23919/comex.2024SPL0019
Tsutomu Ishikawa;Koji Tashiro;Mitsukuni Konishi;Kenji Hoshino
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Abstract

High-altitude platform stations (HAPSs) have the potential to expand the coverage of sixth-generation mobile communication systems, and several international mobile telecommunications (IMT) bands below 2.7 GHz have already been identified for HAPS service links. Because of the limited frequency resources, spectrum sharing techniques are needed to ensure that HAPSs can coexist with terrestrial base stations (BSs), but this means that a HAPS may interfere with the connection of terrestrial BS users within its line of sight. This letter proposes a scheme that combines an interference canceler and enhanced inter-cell interference coordination to reduce interference in an integrated HAPS-terrestrial system. Numerical simulations demonstrated that the integrated system greatly improved the signal-to-interference-plus-noise ratio of terrestrial BSs and improved the system capacity by 26% compared to a conventional system with no interference reduction.
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利用干扰消除器和协调功能实现 HAPS 和地面集成系统的频谱共享
高空平台站(HAPS)有可能扩大第六代移动通信系统的覆盖范围,目前已经确定了 2.7 千兆赫以下的几个国际移动通信(IMT)频段用于 HAPS 服务链路。由于频率资源有限,需要采用频谱共享技术来确保 HAPS 能与地面基站 (BS) 共存,但这意味着 HAPS 可能会干扰其视线范围内地面 BS 用户的连接。本文提出了一种结合干扰消除器和增强型小区间干扰协调的方案,以减少 HAPS-地面集成系统中的干扰。数值模拟表明,与不减少干扰的传统系统相比,该集成系统大大提高了地面 BS 的信噪比,并将系统容量提高了 26%。
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来源期刊
IEICE Communications Express
IEICE Communications Express ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
33.30%
发文量
114
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