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WiFi leakage detection in LTE downlink for in-device interference avoidance

机译:LTE下行链路中的WiFi泄漏检测可避免设备内干扰

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摘要

To allow users to access networks ubiquitously, more user equipments contain multiple radio transceivers. Because of the proximity of transmit and receive frequencies of in-device wireless technologies, the transmitter (TX) of one in-device wireless technology can interfere with the reception of another technology within the same device, and the spurious emissions of the aggressor TX may result in unacceptable interference at the victim receiver. Hence, it is crucial to detect the in-device interference and adapt strategies to avoid harm. Here, we consider one scenario in 3GPP discussions: the co-existence of Long-Term Evolution (LTE) with WiFi. Different from traditional spectrum sensing which detects signal in the background of Gaussian noise, the WiFi leakage detection in this study aims to detect WiFi leakage in the presence of both LTE signal and noise. Furthermore, most of the WiFi signal features are lost in the WiFi leakage because of the LTE RX filtering which makes the WiFi leakage problem very challenging. By identifying unique features of the WiFi leakage, we investigate this problem thoroughly and propose a suite of detection algorithms, including energy-ratio-based, entropy ratio-based and cyclostationary analysis-based algorithms. Simulations under different scenarios are presented to illustrate the effectiveness and efficiency of the proposed techniques.
机译:为了允许用户无处不在地访问网络,更多的用户设备包含多个无线电收发器。由于设备内无线技术的发射和接收频率接近,一种设备内无线技术的发射器(TX)可能会干扰同一设备内另一种技术的接收,并且攻击者TX的杂散发射可能在受害接收机上造成不可接受的干扰。因此,至关重要的是检测设备内干扰并采用避免伤害的策略。在这里,我们考虑3GPP讨论中的一种情况:长期演进(LTE)与WiFi并存。与传统频谱感应技术在高斯噪声背景下检测信号不同,本研究中的WiFi泄漏检测旨在在LTE信号和噪声同时存在的情况下检测WiFi泄漏。此外,由于LTE RX过滤,大多数WiFi信号特征在WiFi泄漏中丢失,这使WiFi泄漏问题非常具有挑战性。通过确定WiFi泄漏的独特特征,我们将彻底研究此问题,并提出一套检测算法,包括基于能量比,基于熵比和基于循环平稳分析的算法。提出了在不同情况下的仿真,以说明所提出技术的有效性和效率。

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