AWS-3 Interference Mitigation: Improving Spectrum Sharing with LTE & 5G Uplink Spectrum Control

H. McDonald, Joy Cantalupo, M. DiFrancisco, A. Rennier, Darcy Swain-Walsh, J. Correia, V. Ramaswamy, Cameron Patterson
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引用次数: 1

Abstract

This paper describes an interference mitigation technique known as Long Term Evolution (LTE) Uplink (UL) Frequency Avoidance (UFA). To mitigate interference LTE base stations can be configured in such a way as to force User Equipment (UE)s communicating with that base station to avoid transmitting in the passband of narrow-band victim receivers that share the same band. The UFA mechanisms include features for allocating uplink assignments within a cell sector (known colloquially as “notching”) and a second technique where the LTE block size is limited, known as Scalable Carrier Bandwidth Reduction (SCBR). The UFA techniques have been evaluated in the laboratory [1], and criteria for its use in the AWS-3 Coordination Request (CR) process have been defined. This paper describes the mechanisms to accomplish UFA within commercial grade LTE base station equipment (evolved Node B (eNodeB or eNB) and the approach to modeling the resulting emissions for interference analysis. The paper also describes how the same technique could be used in 5G networks and addresses the potential use of this technique to prevent “self-interference” by DoD tactical communications systems in constrained, congested, and contested environments where DoD deploys 4G (LTE) and 5G Radio Access Network (RAN) technologies.
AWS-3干扰缓解:通过LTE和5G上行频谱控制改善频谱共享
本文描述了一种被称为长期演进(LTE)上行(UL)频率避免(UFA)的干扰缓解技术。为了减轻干扰,可以这样配置LTE基站,以迫使与该基站通信的用户设备(UE)避免在共享同一频带的窄带受害接收器的通频带中传输。UFA机制包括在小区扇区内分配上行链路分配的功能(俗称“陷波”)和LTE块大小有限的第二种技术,称为可扩展载波带宽缩减(SCBR)。UFA技术已经在实验室中进行了评估,并定义了其在AWS-3协调请求(CR)过程中的使用标准。本文描述了在商用级LTE基站设备(演进的节点B (eNodeB或eNB))中实现UFA的机制,以及为干扰分析所产生的发射建模的方法。该文件还描述了如何在5G网络中使用相同的技术,并解决了该技术的潜在用途,以防止国防部战术通信系统在国防部部署4G (LTE)和5G无线接入网(RAN)技术的受限、拥塞和竞争环境中的“自干扰”。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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