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Reliable Spectrum Sensing and Opportunistic Access in Network-Coded Communications

机译:网络编码通信中的可靠频谱感知和机会访问

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摘要

We consider the problem of reliable spectrum sensing and opportunistic access on channels with stochastic traffic in batch processing systems such as network coding (NC). We show how a secondary user (SU) can leverage the structure induced by block-based NC on primary users' (PUs) channels to mitigate the effects of channel sensing errors and improve the detection of idle PU spectrum and the throughput. NC is known to improve the transmission efficiency and therefore when applied on a PU channel, it can extend the spectrum availability for the SUs. We refer to the additional gain of spectrum predictability from NC and show that under possible sensing errors the SU can more reliably detect the idle spectrum if the PUs' channels carry network-coded transmissions even when the channel utilization is fixed. We consider two different objectives at the SU. For quickest detection, the SU applies the Cumulative Summation (CUSUM) algorithm to detect idle slots on a PU channel and further improves the detection capability with the Viterbi algorithm, if the PU spectrum dynamics are known. For throughput maximization, the SU tracks the PU spectrum with the Partially Observable Markov Decision Process (POMDP) approach. Our results show that NC renders the spectrum more predictable, which can be used by the SUs to mitigate the effects of sensing errors and improve the throughput. We validate these results with real radio measurements taken in software-defined radio based wireless network tests.
机译:我们考虑在批处理系统(例如网络编码(NC))中具有随机流量的信道上可靠的频谱感知和机会性访问的问题。我们展示了二级用户(SU)如何利用一级用户(PU)通道上基于块的NC诱导的结构来减轻通道感测错误的影响并改善对空闲PU频谱和吞吐量的检测。众所周知,NC可提高传输效率,因此,在将其应用于PU信道时,它可以扩展SU的频谱可用性。我们参考了来自NC的频谱可预测性的其他增益,并表明在可能的检测错误下,即使PU的信道进行网络编码传输,即使信道利用率固定,SU仍可以更可靠地检测空闲频谱。我们在SU考虑两个不同的目标。为了最快地进行检测,如果PU频谱动力学已知,则SU会使用累积求和(CUSUM)算法来检测PU信道上的空闲时隙,并使用Viterbi算法进一步提高检测能力。为了使吞吐量最大化,SU使用部分可观察的马尔可夫决策过程(POMDP)方法跟踪PU频谱。我们的结果表明,NC使频谱更可预测,SU可以使用它来减轻感测错误的影响并提高吞吐量。我们通过基于软件定义的无线电的无线网络测试中进行的实际无线电测量来验证这些结果。

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