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Distributed joint resource and power allocation in self-organized femtocell networks: A potential game approach

机译:自组织毫微微小区网络中的分布式联合资源和功率分配:一种潜在的博弈方法

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Femtocells, which are widely deployed within a macrocell, are considered to be a novel technology that leads to the escalation of indoor coverage and capacity. However, due to lack of coordination between the femtocell and the macrocell, designing a distributive resource and power allocation is a challenging task. In this study, a potential game (PG)-theoretic approach is proposed for joint resource and power allocation (JRPA), which is demonstrated to exhibit unique Nash Equilibrium. Specifically, femto-base stations, which are considered as the players of the PG, learn the strategies in terms of resource and power allocation by taking into account the interest of other entities. To this end, the utility function of players is designed such that it minimizes the impact interference and the satisfaction for improving the femtocell capacity, without jeopardizing the macrocell performance. Precisely, the utility function incorporates all the sources of interference such as co-tier and cross-tier, and also the reward of each player in terms of capacity. The proposed PG-based JRPA is solved by employing the better response dynamics, which selects the resources and the power levels by utilizing a particle swarm optimization-constriction factor model. The performance of PG-based JRPA is analyzed in regard to average femtocell capacity and system capacity. Additionally, two different traffic cases are considered: high load traffic and low load traffic. For the sake of comparison, random allocation is employed. Simulation results are carried out in terms of the performance metrics, which includes convergence, min-max capacity, varying resource blocks, femtocell density and fairness. The results illustrate the superior performance of the proposed PG in terms of the aforementioned performance metrics. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在宏小区中广泛部署的毫微微小区被认为是导致室内覆盖范围和容量逐步增加的新颖技术。但是,由于毫微微小区和宏小区之间缺乏协调,设计分布式资源和功率分配是一项艰巨的任务。在这项研究中,提出了一种潜在的博弈(PG)理论方法用于联合资源和权力分配(JRPA),并被证明具有独特的纳什均衡。具体而言,被认为是PG参与者的毫微微基站通过考虑其他实体的兴趣来学习有关资源和功率分配的策略。为此,播放器的效用功能被设计为使得其在不损害宏小区性能的情况下最小化冲击干扰和提高毫微微小区容量的满意度。准确地说,效用功能包含了所有干扰源,例如联合层和跨层层,以及每个参与者在容量方面的回报。提出的基于PG的JRPA通过采用更好的响应动力学来解决,该动力学通过使用粒子群优化约束因子模型来选择资源和功率级别。针对平均毫微微小区容量和系统容量,分析了基于PG的JRPA的性能。此外,考虑了两种不同的流量情况:高负载流量和低负载流量。为了比较,采用随机分配。仿真结果是根据性能指标进行的,其中包括收敛,最小-最大容量,变化的资源块,毫微微小区密度和公平性。结果表明,在上述性能指标方面,所提出的PG具有出色的性能。 (C)2014 Elsevier Ltd.保留所有权利。

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