Power adjustment and scheduling in OFDMA femtocell networks

Michael Lin, N. Bartolini, T. L. Porta
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引用次数: 4

Abstract

Densely-deployed femtocell networks are used to enhance wireless coverage in public spaces like office buildings, subways, and academic buildings. These networks can increase throughput for users, but edge users can suffer from co-channel interference, leading to service outages. This paper introduces a distributed algorithm for network configuration, called Radius Reduction and Scheduling (RRS), to improve the performance and fairness of the network. RRS determines cell sizes using a Voronoi-Laguerre framework, then schedules users using a scheduling algorithm that includes vacancy requests to increase fairness in dense femtocell networks. We prove that our algorithm always terminate in a finite time, producing a configuration that guarantees user or area coverage. Simulation results show a decrease in outage probability of up to 50%, as well as an increase in Jain's fairness index of almost 200%.
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OFDMA飞蜂窝网络中的功率调整与调度
密集部署的移动蜂窝网络用于增强办公大楼、地铁和学术大楼等公共场所的无线覆盖。这些网络可以增加用户的吞吐量,但边缘用户可能会受到同信道干扰,从而导致服务中断。为了提高网络的性能和公平性,本文提出了一种分布式的网络配置算法——半径缩减和调度(RRS)。RRS使用Voronoi-Laguerre框架确定小区大小,然后使用包含空缺请求的调度算法来调度用户,以增加密集的飞蜂窝网络的公平性。我们证明了我们的算法总是在有限时间内终止,产生保证用户或区域覆盖的配置。仿真结果表明,中断概率降低了50%,Jain公平性指数提高了近200%。
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