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Simultaneous Cooperative Spectrum Sensing and Energy Harvesting in Multi-antenna Cognitive Radio

机译:多天线认知无线电中的同时合作频谱感知和能量收集

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摘要

In cognitive radio (CR), the secondary user (SU) may use more battery energy to perform spectrum sensing, thus decreasing the transmission energy. In order to guarantee the transmission performance, an energy harvesting-based multi-antenna CR is proposed, which lets the SU harvest the radio frequency (RF) energy of the PU signal and the noise to supplement the energy loss. Time splitting model and antenna splitting model have been proposed to realize the simultaneous cooperative spectrum sensing and energy harvesting for multi-antenna CR, in which cooperative spectrum sensing, energy harvesting and data transmission can be performed in one SU. The joint resource allocations of these two models have been formulated as a class of optimization problems about sensing time, harvesting time, the number of sensing antennas and transmission power. The joint optimization algorithm has been proposed to obtain the optimal solutions to the optimization problems. The simulation results have indicated that the proposed models can achieve larger throughput compared with the sensing-throughput tradeoff model.
机译:在认知无线电(CR)中,次要用户(SU)可能会使用更多的电池能量来执行频谱感测,从而降低了传输能量。为了保证传输性能,提出了一种基于能量采集的多天线CR,可以让SU采集PU信号的射频能量和噪声,以补充能量损失。提出了时间分割模型和天线分裂模型,以实现多天线CR的同时协同频谱感测和能量采集,可以在一个SU中进行协同频谱感测,能量采集和数据传输。这两个模型的联合资源分配已被公式化为关于感测时间,采集时间,感测天线的数量和发射功率的一类优化问题。提出了联合优化算法以获得优化问题的最优解。仿真结果表明,与传感吞吐量折衷模型相比,所提出的模型可以实现更大的吞吐量。

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