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Adaptive Cooperative Spectrum Sharing Based on Fairness and Total Profit in Cognitive Radio Networks

机译:认知无线电网络中基于公平和总利润的自适应合作频谱共享

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A cooperative model is presented to enable sharing of the spectrum with secondary users. Compared with the optimal model and competitive model, the cooperative model could reach the maximum total profit for secondary users with better fairness. The cooperative model is built based on the Nash equilibrium. Then a conceding factor is introduced so that the total spectrum required from secondary users will decrease. It also results in a decrease in cost which the primary user charges to the secondary users. The optimum solution, which is the maximum total profit for the secondary users, is called the collusion state. It is possible that secondary users may leave the collusion state to pursue the maximum of individual profit. The stability of the algorithm is discussed by introducing a vindictive factor to inhabit the motive of deviation. In practice, the number of secondary users may change. Adaptive methods have been used to deal with the changing number of secondary users. Both the total profit and fairness are considered in the spectrum allocating. The shared spectrum is 11.3893 with a total profit of 65.2378 in the competitive model. In the cooperative model, the shared spectrum is 8.5856 with the total profit of 73.4963. The numerical results reveal the effectiveness of the cooperative model.
机译:提出了一种协作模型,以使能够与二级用户共享频谱。与最优模型和竞争模型相比,合作模型可以以更高的公平性达到二级用户的最大总利润。基于纳什均衡建立合作模型。然后引入一个让步因子,以便减少二级用户所需的总频谱。这还导致主要用户向次要用户收费的成本降低。最佳解决方案是二级用户的最大总利润,称为合谋状态。二级用户可能会退出合谋状态,以追求最大的个人利益。通过引入斗气因素以适应偏差动机来讨论算法的稳定性。实际上,辅助用户的数量可以改变。自适应方法已用于处理不断变化的辅助用户数量。在频谱分配中要考虑总利润和公平性。在竞争模型中,共享频谱为11.3893,总利润为65.2378。在合作模型中,共享频谱为8.5856,总利润为73.4963。数值结果表明了该合作模型的有效性。

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