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Power control algorithm for cognitive radio systems

机译:认知无线电系统的功率控制算法

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Cognitive radio (CR) is the enabling technology for dynamic spectrum access, which may potentially mitigate the radio spectrum scarcity problem encountered in many countries. This paper is concerned with power allocation spectrum sharing CR networks, where a secondary user (SU) communicates simultaneously over the same frequency band with an existing primary users (PUs) link. In addition, this method uses PU feedback information. It is assumed that the SU transmitter has the perfect channel state information (CSI) on the fading channels from SU transmitter to both PU and SU receivers, as well as the fading channel from PU transmitter to PU receiver. Furthermore, the proposed method takes into account the statistical variation of the signal to interference plus noise ratio (SINR) of each transmitter/receiver pair and optimally allocates power to minimize probability of fading-induced outage probability. Such approaches can guarantee convergence towards the optimal solution with an acceptable convergence speed. Therefore, equipment designers and system operators can use their judgment to find the best SU pairs to meet their specific needs. Simulation results are provided for the optimal power control performance.
机译:认知无线电(CR)是实现动态频谱访问的一项启用技术,它可能潜在地缓解许多国家遇到的无线电频谱稀缺问题。本文涉及功率分配频谱共享CR网络,其中次要用户(SU)在同一频带上同时与现有主要用户(PU)链路进行通信。另外,该方法使用PU反馈信息。假定SU发射机在从SU发射机到PU和SU接收机的衰落信道以及从PU发射机到PU接收机的衰落信道上具有完美的信道状态信息(CSI)。此外,所提出的方法考虑了每个发射机/接收机对的信号与干扰加噪声比(SINR)的统计变化,并最佳地分配了功率以使衰落引起的中断概率最小。这样的方法可以保证以可接受的收敛速度收敛到最优解。因此,设备设计人员和系统操作员可以根据自己的判断找到最佳的SU对,以满足其特定需求。仿真结果提供了最佳的功率控制性能。

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