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Modeling and analysis of interference in Listen-Before-Talk spectrum access schemes

机译:先听后讲频谱接入方案中的干扰建模和分析

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Spectrum measurement studies have shown that substantial portions of the allocated wireless spectrum are highly underutilized. Frequency-agile radios (FARs) have the potential to make opportunistic use of such spectrum holes without causing harmful interference to users of the allocated spectrum. Toward this goal, we develop a framework for modeling the interference caused by FARs employing spectrum access mechanisms based on the simple Listen-Before-Talk (LBT) scheme. Two variations of LBT are considered: individual LBT, whereby the FARs act independently of each other; and collaborative LBT, whereby the FARs communicate with each other in order to more accurately identify the spectrum holes. Our analysis of the LBT scheme reveals the fundamental interdependencies among key system design metrics and provides a basis for analyzing more complex spectrum access methods. In particular, the analysis of LBT provides a lower bound on the capacity gain achievable by FARs employing spectrum-sharing schemes. Our numerical results show that the individual LBT scheme can provide substantial capacity gains, while even more gain can be achieved using the collaborative LBT schemes. Our analysis suggests that much greater gains should be achievable via spectrum access schemes that incorporate location information and/or more sophisticated group behaviors.
机译:频谱测量研究表明,分配的无线频谱的大部分未被充分利用。捷变频率无线电(FAR)有可能机会性地使用这种频谱空洞而不会对分配频谱的用户造成有害干扰。为了实现这一目标,我们开发了一个框架,用于基于简单的先听后讲(LBT)方案,采用频谱访问机制对由FAR引起的干扰进行建模。考虑了LBT的两种变体:单个LBT,即FAR彼此独立起作用;以及协作式LBT,FAR相互通信以更准确地识别频谱孔。我们对LBT方案的分析揭示了关键系统设计指标之间的基本相互依赖性,并为分析更复杂的频谱接入方法提供了基础。特别是,对LBT的分析为采用频谱共享方案的FAR可实现的容量增益提供了下限。我们的数值结果表明,单个LBT方案可以提供可观的容量增益,而使用协作LBT方案可以实现更大的增益。我们的分析表明,应通过结合位置信息和/或更复杂的群体行为的频谱访问方案来获得更大的收益。

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