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An energy-efficient game theoretic approach towards resource block and power allocation in femtocell networks

机译:毫微微小区网络中资源块和功率分配的节能博弈论方法

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This study investigates the joint resource block (RB) and power allocation in self-organized femtocell networks. Specifically, the concern here is to maximize the energy efficiency while minimizing the impact of interference in the network. The energy efficiency criterion that is incorporated in this study includes the transmission power and the circuit power. The joint allocation task is modeled as a non-cooperative game, in which the femto base stations are the players and RB and power levels are the actions that are associated with each player. In addition, the proposed non-cooperative game is demonstrated to exhibit pure and unique Nash Equilibrium. In order to minimize the complexity of the proposed non-cooperative game, the joint allocation task is decomposed into two sub problems: a RB allocation and a particle swarm optimization based power allocation. The analysis is carried out regarding energy efficiency and throughput of the femtocell network. Furthermore, the comparison with the traditional methods illustrates the superior performance of the proposed non-cooperative game.
机译:本研究调查了自组织毫微微小区网络中的联合资源块(RB)和功率分配。具体而言,这里的关注点是最大化能量效率,同时最小化网络中的干扰影响。纳入本研究的能效标准包括传输功率和电路功率。联合分配任务被建模为非合作游戏,其中,毫微微基站是参与者,RB和功率水平是与每个参与者相关联的动作。此外,拟议的非合作博弈被证明具有纯净且独特的纳什均衡。为了最小化所提出的非合作博弈的复杂性,联合分配任务被分解为两个子问题:RB分配和基于粒子群优化的功率分配。关于毫微微小区网络的能量效率和吞吐量进行分析。此外,与传统方法的比较说明了所提出的非合作游戏的优越性能。

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