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Interference avoidance for in-device coexistence in 3GPP LTE-advanced: challenges and solutions

机译:先进的3GPP LTE中避免设备内共存的干扰:挑战和解决方案

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摘要

With the ever growing usage of various wireless technologies and services, more and more handheld devices are equipped with multiple radio transceivers (e.g., LTE, WiFi, Bluetooth, and GNSS). As a result, in-device coexistence interference has become a serious problem due to the extreme proximity of multiple radio transceivers within the same device. It has been shown by the studies of 3GPP that for some specific frequency bands, concurrent operations of LTE and ISM/GNSS radios working in adjacent or sub-harmonic frequencies will result in significant in-device coexistence interference that cannot be completely eliminated by filter technology. This motivates 3GPP to introduce signaling mechanisms and procedures, which enable the devices to effectively solve the indevice coexistence problems with help from the LTE network. This article first discusses the scenarios in which coexistence interference may happen, and then provides an overview of main solutions and related procedures specified in 3GPP Release-11 standards for LTE. In addition, some aspects of device-internal coordination and implementation to facilitate the coexistence scenarios are also discussed.
机译:随着各种无线技术和服务的不断增长的使用,越来越多的手持设备配备了多个无线电收发器(例如LTE,WiFi,蓝牙和GNSS)。结果,由于多个无线电收发器在同一设备内的极端接近,设备内共存干扰已成为严重的问题。 3GPP的研究表明,对于某些特定频带,在相邻或次谐波频率下工作的LTE和ISM / GNSS无线电的并发操作将导致严重的设备内共存干扰,无法通过滤波技术完全消除。这激励3GPP引入信令机制和过程,这些机制和过程使设备能够在LTE网络的帮助下有效解决设备内共存问题。本文首先讨论了可能发生共存干扰的场景,然后概述了LTE的3GPP Release-11标准中指定的主要解决方案和相关过程。此外,还讨论了设备内部协调和实现的某些方面,以促进共存场景。

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