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Distributed joint power and access control algorithm for secondary spectrum sharing

机译:用于二次频谱共享的分布式联合功率和访问控制算法

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Based on interference temperature model, the problem of efficient secondary spectrum sharing is formulated as a power optimization problem with some constraints at physical layer. These constraints and optimization objective limit a feasible power vector set which leads to the need of access control besides power control. In this paper, we consider the decentralized cognitive radio network scenario where short-term data service is required, and the problem of distributed joint power and access control is studied to maximize the total secondary system throughput, subject to Quality of Service (QoS) constraints from individual secondary users and interference temperature limit (ITL) from primary system. Firstly, a pricing-based game model was used to solve distributed power allocation optimization problem in both high and low signal to interference noise ratio (SINR) scenarios. Secondly, when not all the secondary links can be supported with their QoS requirement and ITL, a distributed joint power and access control algorithm was introduced to find the allowable links which results in maximum network throughput with all the constraints satisfied, and the convergence performance is tested by simulations.
机译:基于干扰温度模型,将有效的二次频谱共享问题表述为在物理层有一定约束的功率优化问题。这些约束和优化目标限制​​了可行的功率矢量集,这导致除了功率控制之外还需要访问控制。在本文中,我们考虑了需要短期数据服务的分散式认知无线电网络方案,并且在服务质量(QoS)约束下,研究了分布式联合功率和访问控制问题,以最大程度地提高辅助系统的总吞吐量来自单个二级用户的干扰和来自主系统的干扰温度限制(ITL)。首先,基于定价的博弈模型用于解决高信噪比和低信噪比场景下的分布式功率分配优化问题。其次,当不是所有的辅助链路都可以满足其QoS要求和ITL时,引入了分布式联合电源和访问控制算法来找到允许的链路,从而在满足所有约束的情况下实现最大的网络吞吐量,并且收敛性能为通过模拟测试。

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