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Robust Energy Efficiency Power Allocation for Uplink OFDM-Based Cognitive Radio Networks

机译:基于上行链路OFDM的认知无线电网络的鲁棒能效功率分配

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This paper studies the energy efficiency power allocation for cognitive radio networks based on uplink orthogonal frequency-division multiplexing. The power allocation problem is intended to minimize the maximum energy efficiency measured by “Joule per bit” metric, under total power constraint and robust aggregate mutual interference power constraint. However, the above problem is non-convex. To make it solvable, an equivalent convex optimization problem is derived that can be solved by general fractional programming. Then, a robust energy efficiency power allocation scheme is presented. Simulation results corroborate the effectiveness of the proposed methods.
机译:本文研究基于上行链路正交频分复用的认知无线电网络的能效功率分配。功率分配问题旨在在总功率约束和鲁棒的总互干扰功率约束下,最小化通过“每比特焦耳”度量测得的最大能量效率。但是,上述问题是非凸的。为了使其可求解,导出了等效的凸优化问题,可以通过通用分数规划来解决。然后,提出了一种鲁棒的能效功率分配方案。仿真结果证实了所提方法的有效性。

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