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首页> 外文期刊>EURASIP journal on advances in signal processing >Energy-efficient downlink resource management in self-organized OFDMA-based two-tier femtocell networks
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Energy-efficient downlink resource management in self-organized OFDMA-based two-tier femtocell networks

机译:自组织基于OFDMA的两层毫微微小区网络中的节能下行链路资源管理

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Femtocell is a novel technology that is used for escalating indoor coverage as well as the capacity of traditional cellular networks. However, interference is the limiting factor for performance improvement due to co-channel deployment between macrocells and femtocells. The traditional network planning is not feasible because of the random deployment of femtocells. Therefore, self-organization approaches are the key to having successful deployment of femtocells. This study presents the joint resource block (RB) and power allocation task for the two-tier femtocell network in a self-organizing manner, with the concern to minimizing the impact of interference and maximizing the energy efficiency. In this study, we analyze the performance of the system in terms of the energy efficiency, which is composed of both the transmission and circuit power. Most of the previous studies investigate the performance regarding the throughput requirement of the two-tier femtocell network while the energy efficiency aspect is largely ignored. Here, the joint allocation task is modeled as a non-cooperative game which is demonstrated to exhibit pure and unique Nash equilibrium. In order to reduce the complexity of the proposed non-cooperative game, the joint RB and power allocation task is divided into two subproblems: an RB allocation and a particle swarm optimization-based power allocation. The analysis of the proposed game is carried out in terms of not only energy efficiency but also throughput. With practical 3rd Generation Partnership Project (3GPP) Long-Term Evolution (LTE) parameters, the simulation results illustrate the superior performance of the proposed game as compared to the traditional methods. Also, the comparison is carried out with the joint allocation scheme which only considers the throughput as the objective function. The results illustrate that significant performance improvement is achieved in terms of energy efficiency with slight loss in the throughput. The analysis in regard to energy efficiency and throughput of the two-tier femtocell network is carried out in terms of the performance metrics, which include convergence, impact of varying RBs, impact of femtocell density, and the fairness index.
机译:Femtocell是一项新颖的技术,可用于提升室内覆盖范围以及传统蜂窝网络的容量。然而,由于宏小区和毫微微小区之间的同信道部署,干扰是性能提高的限制因素。由于毫微微小区的随机部署,传统的网络规划是不可行的。因此,自组织方法是成功部署毫微微小区的关键。这项研究以自组织的方式提出了两层毫微微小区网络的联合资源块(RB)和功率分配任务,着眼于使干扰的影响最小化和能量效率最大化。在这项研究中,我们根据能效来分析系统的性能,该能效由传输功率和电路功率组成。先前的大多数研究都对有关两层毫微微小区网络吞吐量要求的性能进行了研究,而能源效率方面却被大大忽略。在这里,联合分配任务被建模为一个非合作博弈,被证明表现出纯净而独特的纳什均衡。为了降低所提出的非合作博弈的复杂性,将RB和功率分配联合任务分为两个子问题:RB分配和基于粒子群优化的功率分配。所提出的游戏的分析不仅在能源效率方面,而且在吞吐量方面。通过实用的第三代合作伙伴计划(3GPP)长期演进(LTE)参数,仿真结果说明了与传统方法相比,所提出游戏的出色性能。而且,比较是通过联合分配方案进行的,该方案仅将吞吐量视为目标函数。结果表明,在能源效率方面实现了显着的性能改进,而吞吐量却略有下降。根据性能指标对两层毫微微小区网络的能量效率和吞吐量进行分析,这些性能指标包括收敛,变化的RB的影响,毫微微小区密度的影响以及公平性指标。

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