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Energy-efficient transmission strategy for Cognitive Radio systems

机译:认知无线电系统的节能传输策略

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Spectrum sensing and compulsory idling are two important functionalities of the overlaid Cognitive Radio (CR) to facilitate the opportunistic spectrum access and incumbent protection for primary user systems. Since both the spectrum sensing and compulsory idling introduce energy-overheads to CR users, it is critical for CR to balance between these additional energy-overheads and its energy consumption for effective data transmission. We thus propose energy-efficient transmission policies for CR that aims at minimizing its total cost (including both energy consumption and delay cost) to deliver a target traffic payload. We formulate this problem as a stochastic shortest path Markov decision process and obtain the optimal rate-adaptation policy via the value iteration. We further propose a low-complexity rate-adaptation policy through the certainty equivalent control with approximation to save computational complexity. Numerical results show the low-complexity policy achieves comparable performance as the optimal policy.
机译:频谱感测和强制空转是重叠认知无线电(CR)的两个重要功能,可促进机会频谱访问和对主要用户系统的现有保护。由于频谱感测和强制空转都给CR用户带来了能源开销,因此CR必须在这些额外的能量开销及其能耗之间取得平衡,以实现有效的数据传输。因此,我们提出了针对CR的节能传输策略,旨在最大程度地降低其总成本(包括能耗和延迟成本)以交付目标流量有效负载。我们将此问题公式化为随机最短路径马尔可夫决策过程,并通过值迭代获得最优速率自适应策略。我们进一步通过确定性等效控制和近似来提出一种低复杂度的速率自适应策略,以节省计算复杂度。数值结果表明,低复杂度策略可实现与最佳策略相当的性能。

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