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Energy-Efficient Delay-Constrained Transmission and Sensing for Cognitive Radio Systems

机译:认知无线电系统的节能延迟限制传输和传感

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摘要

In this paper, we study energy-efficient transmission for Cognitive Radio (CR) that opportunistically operates on the primary user's channel through spectrum sensing. Spectrum sensing and compulsory idling (for incumbent protection) introduce energy overheads for Secondary User (SU) operations, and thus, an appropriate balance between energy consumption in data transmission and energy overheads is required. We formulate this problem as a discrete-time Markov decision process in which the SU aims at minimizing its average cost (including both energy consumption and delay cost) to finish a target traffic payload through an appropriate rate allocation. Based on certainty equivalent control, we propose a low-complexity rate-adaptation policy that achieves comparable performance with the optimal policy. With the low-complexity policy, we quantify the impact of energy overheads (including the power consumption for spectrum sensing and compulsory idling) on the SU transmission strategy. Specifically, the SU rate increases with the increase of energy overheads, whose marginal impact, however, diminishes. Moreover, the marginal impact of energy overheads is more significant for delay-insensitive traffic compared with that for delay-sensitive traffic. To mitigate the loss due to imperfect spectrum sensing, we quantify that the SU decreases (increases) its rate with a larger misdetection probability (false alarm probability).
机译:在本文中,我们研究了认知无线电(CR)的高能效传输,它通过频谱感应在主要用户的信道上机会性地工作。频谱感测和强制空转(用于现有保护)会引入辅助用户(SU)操作的能源开销,因此,需要在数据传输的能耗和能源开销之间进行适当的平衡。我们将此问题表述为离散时间马尔可夫决策过程,其中SU旨在最小化其平均成本(包括能耗和延迟成本),以通过适当的速率分配来完成目标流量有效负载。在确定性等效控制的基础上,我们提出了一种低复杂度的自适应策略,该策略可实现与最佳策略相当的性能。利用低复杂度策略,我们可以量化能量开销(包括频谱感测和强制空转的功耗)对SU传输策略的影响。具体而言,SU率随能源开销的增加而增加,但是其边际影响却逐渐减小。此外,与对延迟不敏感的流量相比,对延迟不敏感的流量的能量开销的边际影响更为显着。为了减轻由于频谱感应不完善而造成的损失,我们对SU的误检概率(虚警概率)进行了量化,以降低(增加)其速率。

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