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Interference Alignment for Cooperative Femtocell Networks: A Game-Theoretic Approach

机译:协作型家庭基站网络的干扰对准:一种博弈论方法

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The use of small cells serviced by low-power base stations such as femtocells is envisioned to improve the spectrum efficiency and the coverage of next-generation mobile wireless networks. However, one of the major challenges in femtocell deployments is managing interference. In this paper, we propose a novel cooperative solution that enables femtocells to improve their achievable data rates, by suppressing intratier interference using the concept of interference alignment (IA). We model this cooperative behavior among the femtocells as a coalitional game in partition form and we propose a distributed algorithm for the coalition formation. The proposed algorithm allows the femtocell base stations to independently decide on whether to cooperate or not, while maximizing a utility function capturing both the gains and costs from cooperation. Using the proposed algorithm, the femtocells can self-organize into a stable network partition composed of disjoint femtocell coalitions and which constitutes the recursive core of the game. Inside every coalition, cooperative femtocells use advanced IA techniques to improve their downlink transmission rate. Simulation results show that the proposed coalition formation algorithm yields significant gains, in terms of average payoff per femtocell, reaching up to 30 percent relative to the noncooperative case for a network of $(N=300)$ femtocells.
机译:设想使用由诸如毫微微小区之类的低功率基站服务的小型小区来提高频谱效率和下一代移动无线网络的覆盖范围。但是,毫微微小区部署中的主要挑战之一是管理干扰。在本文中,我们提出了一种新颖的协作解决方案,该解决方案可以通过使用干扰对齐(IA)的概念来抑制层内干扰,从而使毫微微小区提高其可达到的数据速率。我们将飞蜂窝之间的这种协作行为建模为分区形式的联盟博弈,并为联盟的形成提出分布式算法。所提出的算法允许毫微微小区基站独立地决定是否合作,同时最大化效用函数来捕获合作带来的收益和成本。使用所提出的算法,毫微微小区可以自组织成由不相交的毫微微小区联盟组成的稳定网络分区,并且构成了游戏的递归核心。在每个联盟内部,协作式毫微微小区都使用先进的IA技术来提高其下行链路传输速率。仿真结果表明,提出的联盟形成算法在每个毫微微小区的平均收益方面产生了可观的收益,相对于$(N = 300)$个毫微微小区的网络的非合作案例,其收益高达30%。

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