Coordinated scheduling via frequency and power allocation optimization in LTE cellular networks

Nessrine Trabelsi, Chung Shue Chen, L. Roullet, E. Altman, R. E. Azouzi
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引用次数: 6

Abstract

Due to Orthogonal Frequency Division Multiple Access (OFDMA) mechanism adopted in LTE cellular networks, intra-cell interference is nearly absent. Yet, as these networks are designed for a frequency reuse factor of 1 to maximize the utilization of the licensed bandwidth, inter-cell interference coordination remains an important challenge. In both homogeneous and heterogeneous cellular networks, there is a need for scheduling coordination techniques to efficiently distribute the resources and mitigate inter-cell interference. In this paper, we propose a dynamic solution of inter-cell interference coordination performing an optimization of frequency sub-band reuse and transmission power in order to maximize the overall network utility. The proposed framework, based on game theory, permits to dynamically define frequency and transmission power patterns for each cell in the coordinated cluster. Simulation results show significant benefits in average throughput and also cell edge user throughput of 40% and 55% gains when performing the frequency sub-band muting and power control. Furthermore, we also obtain a meaningful improvement in energy efficiency.
LTE蜂窝网络中基于频率和功率分配优化的协调调度
由于LTE蜂窝网络采用正交频分多址(OFDMA)机制,因此几乎不存在蜂窝内干扰。然而,由于这些网络的频率复用系数为1,以最大限度地利用许可带宽,因此小区间干扰协调仍然是一个重要的挑战。在同构和异构蜂窝网络中,都需要调度协调技术来有效地分配资源和减轻蜂窝间的干扰。本文提出一种小区间干扰协调的动态解决方案,通过优化频率子带复用和传输功率,使网络整体效用最大化。该框架基于博弈论,允许动态定义协调集群中每个小区的频率和发射功率模式。仿真结果表明,当执行频率子带静音和功率控制时,平均吞吐量和小区边缘用户吞吐量分别提高40%和55%。此外,我们还获得了能源效率的显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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