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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Full-Duplex-Based Rate/Mode Adaptation Strategies for Wi-Fi/LTE-U Coexistence: A POMDP Approach
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Full-Duplex-Based Rate/Mode Adaptation Strategies for Wi-Fi/LTE-U Coexistence: A POMDP Approach

机译:Wi-Fi / LTE-U共存的基于全双工的速率/模式自适应策略:一种POMDP方法

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摘要

The rapid increase in wireless demand prompted the FCC to open up parts of the 5-GHz band for unlicensed access. This caught the interest of 4G/LTE providers, who wish to extend their LTE-A services to the unlicensed spectrum (LTE-U). In LTE-U, small-cell base stations aggregate unlicensed and licensed bands to increase the throughput. Wi-Fi/LTE-U coexistence is a challenging issue due to the different access mechanisms of these two systems, which may cause high collision rates and delays. By leveraging self-interference-suppression techniques, we propose joint mode/rate adaptation strategies for Wi-Fi/LTE-U coexistence. Specifically, a full-duplex enabled Wi-Fi station can transmit and receive data simultaneously to increase the throughput, or transmit and sense (TS mode) simultaneously to monitor the LTE-U activity. We model the LTE-U interference as a hidden Markov process, and solve the problem of jointly adapting Wi-Fi rates/modes using a framework of partially observable Markov decision process. A detection approach based on the sliding window correlator is analyzed for the TS mode, which can differentiate between Wi-Fi and LTE-U signals. Our results indicate that our scheme provides 1.5x (1.9x) average throughput gain for Wi-Fi system in the low (high) signal-to-interference-and-noise regime relative to a half-duplex-based scheme.
机译:无线需求的快速增长促使FCC开放了5 GHz频段的一部分以进行无许可访问。这引起了希望将其LTE-A服务扩展到非授权频谱(LTE-U)的4G / LTE提供商的兴趣。在LTE-U中,小小区基站聚合未经许可和经许可的频带以增加吞吐量。由于这两个系统的访问机制不同,Wi-Fi / LTE-U共存是一个具有挑战性的问题,这可能会导致高冲突率和延迟。通过利用自我干扰抑制技术,我们提出了Wi-Fi / LTE-U共存的联合模式/速率自适应策略。具体而言,启用了全双工的Wi-Fi站可以同时发送和接收数据以增加吞吐量,或者同时发送和检测(TS模式)以监视LTE-U活动。我们将LTE-U干扰建模为隐马尔可夫过程,并使用部分可观察的马尔可夫决策过程框架解决了共同调整Wi-Fi速率/模式的问题。针对TS模式,分析了基于滑动窗口相关器的检测方法,该方法可以区分Wi-Fi和LTE-U信号。我们的结果表明,相对于基于半双工的方案,我们的方案在低(高)信号干扰噪声的情况下为Wi-Fi系统提供了1.5倍(1.9倍)的平均吞吐量增益。

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