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Adaptive Sensing Schedule for Dynamic Spectrum Sharing in Time-Varying Channel

机译:动态频谱在时变通道中共享的自适应感应计划

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摘要

Dynamic spectrum sharing is considered as one of the key features in the next-generation communications. In this correspondence, we investigate the dynamic tradeoff between the sensing performance and the achievable throughput, in the presence of time-varying fading (TVF) channels. We first establish a unified dynamic state-space model to characterize the involved dynamic behaviors. On this basis, a promising dynamic sensing schedule framework is proposed, whereby the sensing duration is adaptively adjusted based on the estimated real-time TVF channel. We formulate the sensing-throughput tradeoff problem mathematically. We then show that there exists the optimal sensing duration maximizing the throughput for the secondary user (SU), which will change dynamically with channel gains. Relying on our designed recursive sensing paradigm that is able to blindly acquire varying channel gains as well as the PU states, the sensing duration can be then adjusted in line with the evolving channel gains. Numerical simulations are provided to validate our dynamic sensing schedule algorithm, which can significantly improve the SU's throughput by reconfiguring the sensing duration according to dynamic channel conditions.
机译:动态频谱共享被认为是下一代通信中的关键特征之一。在这封对应关系中,我们在存在时变衰落(TVF)通道的情况下,调查感测性能与可实现的吞吐量之间的动态权衡。我们首先建立一个统一的动态状态空间模型,以表征涉及的动态行为。在此基础上,提出了一种有前途的动态感测时间表框架,从而基于估计的实时TVF信道自适应地调整感测持续时间。我们在数学上制定了传感吞吐量权衡问题。然后,我们表明存在最佳感测持续时间,最大化辅助用户(SU)的吞吐量,这将以频道增益动态地改变。依靠我们设计的递归传感范例,能够盲目地获得不同的频道增益以及PU状态,然后可以根据不断变化的信道增益调整感测持续时间。提供了数值模拟以验证我们的动态感测时间表算法,这可以通过根据动态信道条件重新配置感测持续时间来显着提高SU的吞吐量。

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