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首页> 外文期刊>Communications Letters, IEEE >A Novel Cognitive Radio Adaptation for Wireless Multicarrier Systems
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A Novel Cognitive Radio Adaptation for Wireless Multicarrier Systems

机译:无线多载波系统的新型认知无线电自适应

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This paper deals with the transmission parameter adaptation problem in a dynamic wireless channel environment for multicarrier-based cognitive radio systems. Given the environmental parameters returned by sensors, the cognitive radio will select a set of transmission parameters that can best respond to the new conditions. However, due to many possible values for the transmission parameters, the adaptation of radio parameters to generate optimum transmitted signals according to the changing environment and user needs is rather complex, especially for the multicarrier system with a large number of subcarriers. Inspired by the efficient ability of the cross-entropy (CE) method to find near-optimal solutions in huge search spaces, the application of the CE method to optimize cognitive radio parameters given a set of objectives is proposed. Computer simulation results show that the proposed CE method has significantly faster convergence than the conventional particle swarm optimization (PSO) method. Moreover, the parameters optimized by the proposed CE method have higher fitness values than those optimized by PSO.
机译:本文研究了基于多载波的认知无线电系统在动态无线信道环境中的传输参数自适应问题。给定传感器返回的环境参数,认知无线电将选择一组能够最好地响应新条件的传输参数。但是,由于传输参数有许多可能的值,因此根据不断变化的环境和用户需求调整无线电参数以生成最佳传输信号的过程相当复杂,尤其是对于具有大量子载波的多载波系统而言。受到交叉熵(CE)方法在巨大搜索空间中找到接近最优解的有效能力的启发,提出了在给定一组目标的情况下,使用CE方法优化认知无线电参数的应用。计算机仿真结果表明,与常规粒子群优化(PSO)方法相比,该方法具有更快的收敛速度。此外,通过提出的CE方法优化的参数具有比通过PSO优化的参数更高的适应度值。

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