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Power Allocation for OFDM-Based Cognitive Radio Systems under Primary User Activity

机译:根据主要用户活动的基于OFDM的认知无线电系统的功率分配

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This paper presents an efficient power allocation algorithm based on primary user (PU) activity for orthogonal frequency division multiplexing cognitive radio systems. Because of PU activity, the power allocation optimization problem becomes maximizing the sum expected capacity (i.e., the sum capacity minus the expected capacity loss), rather than maximizing the sum capacity in the traditional power allocation optimization problem. To solve this problem efficiently, we first transform the expected capacity loss into the peak power constraint and then reformulate the problem as maximizing the sum capacity under the peak power constraint. With this problem reformulation, the optimal power distribution can be reached by iteratively performing the water-filling (WF) algorithm. Instead of using the WF algorithm, we also propose a simple method to update the water level. Simulation results show that the proposed approach achieves a sum expected capacity close to that of the optimal solution, regardless of the change in the probability that the PU will reoccupy the sub-carriers.
机译:本文介绍了基于主用户(PU)活动的高效功率分配算法,用于正交频分复用认知无线电系统。由于PU活动,功率分配优化问题变得最大化总和预期容量(即,总和容量减去预期容量损耗),而不是最大化传统功率分配优化问题中的总容量。为了有效地解决这个问题,我们首先将预期容量丢失转换为峰值功率约束,然后重新重构问题,以最大化峰值功率约束下的总济容量。利用该问题的重构,可以通过迭代地执行水填充(WF)算法来达到最佳功率分布。我们还提出了一种简单的方法来更新水位。仿真结果表明,该方法实现了靠近最佳解决方案的预期容量,无论PU将再次携带子载波的概率的变化如何。

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