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Design and implementation of spatial interweave LTE-TDD cognitive radio communication on an experimental platform

机译:实验平台上空间交织LTE-TDD认知无线电通信的设计与实现

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Cognitive radio, which enables smart use of wireless resources, is a key ingredient to achieve high spectral efficiency. LTE, the latest evolution of cellular standards, is widely adopted and also targets high spectral efficiency. Hence, to enable wide adoption of cognitive radio, using LTE as the physical layer is a natural choice. Targeting a real-time implementation of LTEbased cognitive radio, we focus on spatial interweave cognitive radio, in which a secondary user uses an antenna array to perform null-beamforming in the primary user??s direction, hence reusing the spectrum spatially. To allow this, without any help from the primary system, we use the time-division duplex mode and take advantage of the channel reciprocity. However, this reciprocity is jeopardized by the mismatch between the RF front-ends. Hence, we design a calibration protocol to restore it. A key contribution is that this cognitive system calibration does not require cooperation from the primary user. The whole system is implemented and evaluated on EURECOM's experimental OpenAirInterface platform. Performance results are presented, showing the feasibility of spatial interweave cognitive radio on a real-time platform.
机译:认知无线电能够智能地使用无线资源,是实现高频谱效率的关键因素。 LTE是蜂窝标准的最新发展,已被广泛采用,并以高频谱效率为目标。因此,为了能够广泛采用认知无线电,使用LTE作为物理层是自然的选择。针对基于LTE的认知无线电的实时实现,我们专注于空间交织的认知无线电,其中次要用户使用天线阵列在主要用户的方向上执行零波束成形,从而在空间上重用频谱。为此,在主系统没有任何帮助的情况下,我们使用时分双工模式并利用通道互易性。但是,RF前端之间的不匹配会损害这种互惠性。因此,我们设计了一个校准协议来恢复它。一个关键的贡献是这种认知系统的校准不需要主要用户的配合。整个系统在EURECOM的实验性OpenAirInterface平台上实施和评估。提出了性能结果,表明了在实时平台上进行空间交织认知无线电的可行性。

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