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Joint Optimization of Clustering and Cooperative Beamforming in Green Cognitive Wireless Networks

机译:绿色认知无线网络中聚类和协作波束成形的联合优化

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摘要

We investigate the trade-off between performance and energy efficiency in cooperative cognitive underlay systems. By cooperating, cognitive base stations mitigate the interference and serve their users more effectively at the cost of spending more power. With a flexible cooperation scheme, we thus jointly optimize the clustering and the beamforming to minimize the overall power consumption while satisfying the secondary users' quality of service and respecting the primary users' interference limits. We formulate this problem as a mixed-integer nonlinear program and decompose it into a master problem and a beamforming subproblem. Then, we derive an iterative algorithm based on the generalized Benders decomposition method to find an optimal solution. Moreover, we propose simple techniques to speed up its convergence. When the clusters are fixed and non-overlapping, we also propose a decentralized algorithm with limited signaling schemes using the alternating direction method of multipliers. In contrast to previous works, our distributed algorithm handles the total interference power constraints coupling the cognitive base stations. Through simulations, we analyze the effectiveness and convergence of the proposed algorithms and show the benefits of the cooperation in cognitive wireless networks.
机译:我们研究了在合作认知底层系统中性能和能效之间的权衡。通过合作,认知基站可以减轻干扰并以花费更多功率为代价更有效地为其用户提供服务。通过灵活的合作方案,我们可以共同优化聚类和波束成形,以最大程度地降低总功耗,同时满足次要用户的服务质量并尊重主要用户的干扰限制。我们将此问题公式化为一个混合整数非线性程序,并将其分解为一个主问题和一个波束成形子问题。然后,基于广义Benders分解方法,推导了一种迭代算法,以求出最优解。此外,我们提出了一些简单的技术来加快其收敛速度。当群集是固定的且不重叠时,我们还使用乘法器的交替方向方法提出了一种具有受限信令方案的分散算法。与以前的工作相反,我们的分布式算法处理耦合认知基站的总干扰功率约束。通过仿真,我们分析了所提出算法的有效性和收敛性,并展示了在认知无线网络中合作的好处。

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