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Sensing time optimization in energy-harvesting cognitive radio with interference rate control

机译:具有干扰率控制的能量收集认知无线电中的传感时间优化

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摘要

In this paper, an energy-harvesting cognitive radio (CR) is considered, which allows the transmitter of the secondary user (SU) to harvest the primary signal energy from the transmitter of the primary user (PU) when the presence of the PU is detected. Then the harvested energy is converted into the electrical power to supply the transmission of the SU at the detected absence of the PU. By adopting the periodic spectrum sensing, the average total transmission rate of the SU is maximized through optimizing the sensing time, subject to the constraints of the probabilities of false alarm and detection, the harvested energy and the interference rate control. The simulation results show that there deed exists an optimal sensing time that maximizes the transmission rate, and the maximum transmission rate of the energy-harvesting CR can better approach to that of the traditional CR with the increasing of the detection probability.
机译:在本文中,考虑了能量收集认知无线电(CR),当PU存在时,它允许次要用户(SU)的发射机从主要用户(PU)的发射机中收集主要信号能量。检测到。然后,将所收集的能量转换为电能,以在检测到没有PU时提供SU的传输。通过采用周期性频谱感知,通过优化感知时间,使SU的平均总传输速率达到最大,不受虚警和误判概率,能量采集和干扰率控制的约束。仿真结果表明,存在一个最佳的检测时间,可以最大程度地提高传输速率,并且随着检测概率的增加,能量收集CR的最大传输速率可以更好地接近传统CR。

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