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Intelligent Spectrum Resource Allocation Based on Joint Optimization in Heterogeneous Cognitive Radio

机译:基于非均相认知无线电联合优化的智能频谱资源分配

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In conventional cognitive radio (CR), only when a primary user (PU) is detected to be absent, the idle spectrum can be accessed by a secondary user (SU), in addition, the allocation processes for spectrum resources of CR such as sensing time and transmission power are often independent. In this paper, to improve the SU's throughput in a heterogeneous CR, an intelligent spectrum resource allocation based on joint optimization is proposed. The proposed scheme allows the SU to access the PU' s spectrum not only in overlay mode but also in underlay mode. The SU accesses the spectrum with full power when PU is absent and with controlled power when PU is present. The transmission rates in the cases of perfect transmission, false alarm transmission, spectrum sharing transmission and interference transmission are analyzed, respectively, which are then used to achieve the average aggregate throughput of the SU. We have formulated spectrum resource allocation as a joint optimization problem of subchannel transmission power and spectrum sensing time, which can make the SU achieve the maximal throughput subject to the limits of minimal detection probability, maximal total power and maximal interference power for the SU. We propose an alternating diretion optimization (ADO) based joint optimization algorithm to solve the joint optimization problem. The simulation results have indicated that the proposed heterogeneous CR is superior to the traditional CR.
机译:在传统的认知无线电(CR)中,仅当检测到主用户(PU)时,可以通过辅助用户(SU)访问空闲频谱,此外,CR的频谱资源的分配过程如感测时间和传输功率通常是独立的。在本文中,提出了基于联合优化的异构CR中的SU的吞吐量。所提出的方案允许SU不仅在覆盖模式中访问PU的频谱,还可以在底层模式下访问PU的频谱。当PU不存在并在PU时,SU通过全功率进行频谱。分别分别分析了完美传输,假报警传输,频谱共享传输和干扰传输情况的情况下的传输速率,然后用于实现SU的平均骨料吞吐量。我们将频谱资源分配作为子信道传输功率和频谱感测时间的联合优化问题,这可以使SU实现最大吞吐量,以极小的检测概率,最大总功率和最大干扰功率的限制。我们提出了一种交替的小巧优化(ADO)的联合优化算法来解决联合优化问题。模拟结果表明,所提出的异构CR优于传统Cr。

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