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On Optimal Sensing and Capacity Trade-off in Cognitive Radio Systems with Directional Antennas

机译:具有定向天线的认知无线电系统中的最佳传感和容量折衷

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We consider a cognitive radio system, in which the secondary users (SUs) and primary users (PUs) coexist. The SUs are equipped with steerable directional antennas. In our system, the secondary transmitter (SUtx) first senses the spectrum (with errors) for a duration of τ, and, then transmits data to the secondary receiver (SUrx) if spectrum is sensed idle. The sensing time as well as the orientation of SUtx's antenna affect the accuracy of spectrum sensing and yield a trade-off between spectrum sensing and capacity of the secondary network. We formulate the ergodic capacity of secondary network which uses energy detection for spectrum sensing. We obtain optimal SUtx transmit power, the optimal sensing time τ and the optimal directions of SUtx transmit antenna and SUrx receive antenna by maximizing the ergodic capacity, subject to peak transmit power and outage interference probability constraints. Our simulation results show the effectiveness of these optimizations to increase the ergodic capacity of the secondary network.
机译:我们考虑一个认知无线电系统,其中辅助用户(SU)和主要用户(PU)共存。 SU装有可定向的定向天线。在我们的系统中,辅助发送器(SU tx )首先在持续时间τ内感测频谱(有误差),然后将数据传输到辅助接收器(SU rx )如果频谱被感知为空闲。 SU的感应时间和方向 tx 的天线影响频谱感测的准确性,并在频谱感测和辅助网络的容量之间进行权衡。我们制定了二次网络的遍历容量,该二次网络使用能量检测进行频谱感测。我们获得最佳SU tx 发射功率,最佳感测时间τ和SU的最佳方向 tx 发射天线和SU rx 受最大发射功率和峰值干扰功率以及中断干扰概率约束的限制,从而最大程度地提高接收天线的性能。我们的仿真结果表明,这些优化方法对于增加次级网络遍历能力的有效性。

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