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TSRA: An Adaptive Mechanism for Switching between Communication Modes in Full-Duplex Opportunistic Spectrum Access Systems

机译:TSRA:一种在全双工机会频谱接入系统中的通信模式之间切换的自适应机制

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Full-duplex (FD) communications and self-interference suppression (SIS) techniques can be exploited in opportunistic spectrum access (OSA) systems for simultaneous transmission-sensing (TS) or simultaneous transmission-reception (TR). Motivated by the competing goals of primary user (PU) protection (in the TS mode) and secondary user (SU) performance (in the TR mode), we present an optimal adaptive switching strategy and an associated communication protocol for FD OSA systems. Specifically, we optimize the spectrum-awareness/efficiency tradeoff by allowing the SU link to adaptively switch between various modes, depending on the forecasted PU dynamics. The proposed three-stage adaptive mode-selection strategy maximizes an SU utility function subject to a constraint on the PU collision probability. We also propose a protocol that executes the switching mechanism in a distributed fashion. In practice, SIS is imperfect, resulting in residual self-interference that degrades the sensing performance in the TS mode. Accordingly, we study different spectrum sensing techniques in the TS mode, while illustrating their accuracy-complexity tradeoff. We evaluate the performance of the proposed switching scheme against the listen-before-talk (LBT) scheme using numerical results, simulations, and hardware USRP experiments.
机译:可以在机会频谱接入(OSA)系统中利用全双工(FD)通信和自干扰抑制(SIS)技术来同时进行传输感测(TS)或同时进行传输接收(TR)。受主要用户(PU)保护(在TS模式下)和次要用户(SU)性能(在TR模式下)竞争目标的激励,我们提出了针对FD OSA系统的最佳自适应切换策略和相关的通信协议。具体来说,我们通过允许SU链路根据预测的PU动态自适应地在各种模式之间切换来优化频谱感知/效率权衡。所提出的三阶段自适应模式选择策略使SU效用函数最大化,这取决于对PU碰撞概率的约束。我们还提出了一种协议,该协议以分布式方式执行切换机制。实际上,SIS是不完善的,会导致残留的自干扰,从而降低TS模式下的传感性能。因此,我们在TS模式下研究了不同的频谱传感技术,同时说明了它们的精度-复杂度之间的权衡。我们使用数值结果,仿真和硬件USRP实验评估了针对通话前监听(LBT)方案的拟议交换方案的性能。

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