基于Stackelberg博弈的双层飞蜂窝网络优化功率分配方案

Manzoor Ahmed, M. Peng, I. Ahmad, Yuan Li, M. Abana
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引用次数: 11

摘要

两层移动蜂窝网络被认为是一种很有前途的网络结构,以应对前所未有的移动数据速率需求。由于宏蜂窝用户的服务质量(QoS)具有最高的优先级,受到跨层干扰的严重影响。因此,功率控制被认为是最有效的解决方案,其中在下行链路中调整femto基站(FBSs)的功率,使对macrocell用户造成的干扰保持在可接受的水平。在本文中,我们将这种情况建模为Stackelberg博弈,考虑到FBS处于最大传输功率约束下,宏基站通过对每个产生干扰的FBS施加价格来保护其用户。以往的研究工作大多是基于迭代方法来实现Stackelberg平衡(SE)来求解问题。本文给出了基于凸优化方法的Stackelberg对策的唯一闭形式解。数值结果验证了所提出的研究以及宏观和微观用户的性能提升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stackelberg game based optimized power allocation scheme for two-tier femtocell network
Two-tier femtocell network is considered a promising architecture to cope with the unprecedented mobile data rate demand. Since macrocell users' quality of service (QoS) have the highest priority to be maintained, which is severely affected by the cross-tier interference. Therefore power control is considered as the most effective solution, where the power of the femto base stations (FBSs) in the downlink is adjusted such that the interference caused to macrocell user is kept under an acceptable level. In this paper, we model this scenario as Stackelberg game, where the macrocell protects its users by imposing price on each FBS causing the interference, considering FBSs are under maximum transit power constraint. Most of the previous research works are based on iterative methods to achieve Stackelberg equilibrium (SE) for solving the problem. In this paper, we present a unique closed form solution to the Stackelberg game based on convex optimization method considering some assumptions. The numerical results are presented to verify the proposed study and performance enhancement of both the macro and femto users.
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