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Call Admission Control With Inter-Network Cooperation for Cognitive Heterogeneous Networks

机译:网络间协作的认知异构网络呼叫接纳控制

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摘要

In this paper, a call admission control algorithm based on inter-network cooperation is proposed via a Stackelberg game framework for cognitive heterogeneous networks. The call admission control problem is subject to the variable bandwidth rate traffic, network service selection, feasible subchannel allocation, and call blocking probability. The call admission control algorithm is based on spectrum price at primary heterogeneous networks and subchannel allocation price and network selection at cognitive heterogeneous networks. In order to determine the call blocking probability, a probability upper bound of exceeding the maximum admission number for secondary mobile terminals (MTs) is analyzed based on M/M/∞ model. Then, the subchannel allocation price and network selection are designed via the dual decomposition method, and the vacant spectrum price is determined with Bertrand game theory. Finally, a call admission control algorithm is proposed. Simulation results demonstrate that the proposed algorithm not only improves quality of service at each secondary MT, but also reduces the call blocking probability for cognitive heterogeneous networks.
机译:本文通过Stackelberg博弈框架提出了一种基于网络间协作的呼叫接纳控制算法,用于认知异构网络。呼叫准入控制问题受可变带宽速率流量,网络服务选择,可行的子信道分配和呼叫阻塞概率的影响。呼叫准入控制算法基于主要异构网络的频谱价格以及认知异构网络的子信道分配价格和网络选择。为了确定呼叫阻塞概率,基于M / M /∞模型来分析超过辅助移动终端(MT)的最大接纳数的概率上限。然后,通过对偶分解方法设计子信道分配价格和网络选择,并利用Bertrand博弈理论确定空频谱价格。最后,提出了一种呼叫接纳控制算法。仿真结果表明,该算法不仅提高了每个辅助MT的服务质量,而且降低了认知异构网络的呼叫阻塞概率。

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