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A Unified Approach to Optimal Opportunistic Spectrum Access under Collision Probability Constraint in Cognitive Radio Systems

机译:冲突概率约束下认知无线电系统中最佳机会频谱接入的统一方法

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We consider a cognitive radio system with one primary channel and one secondary user, and then we introduce a channel-usage pattern model and a fundamental access scheme in this system. Based on this model and fundamental access scheme, we study optimal opportunistic spectrum access problem and formulate it as an optimization problem that the secondary user maximizes spectrum holes utilization under the constraint of collision tolerable level. And then we propose a unified approach to solve this optimization problem. According to the solution of the optimization problem, we analyze and present optimal opportunistic spectrum access algorithms in several cases that the idle period follows uniform distribution, exponential distribution, and Pareto or generalized Pareto distribution. Theoretical analysis and simulation results both show that the optimal opportunistic spectrum access algorithms can maximize spectrum holes utilization under the constraint that the collision probability is bounded below collision tolerable level. The impact of sensing error is also analyzed by simulation.
机译:我们考虑一个具有一个主要信道和一个次要用户的认知无线电系统,然后介绍该系统中的信道使用模式模型和基本访问方案。基于此模型和基本访问方案,我们研究了最佳机会频谱访问问题,并将其表述为次要用户在冲突可容忍水平的约束下最大化频谱漏洞利用率的优化问题。然后,我们提出了一种统一的方法来解决此优化问题。根据优化问题的解决方案,在空闲周期遵循均匀分布,指数分布以及帕累托或广义帕累托分布的几种情况下,我们分析并提出了最佳机会频谱访问算法。理论分析和仿真结果均表明,最优的机会频谱访问算法可以在将碰撞概率限制在碰撞容忍度以下的情况下最大化频谱孔的利用率。还通过仿真分析了感测误差的影响。

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