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An Analytical Framework for Multilayer Partial Frequency Reuse Scheme Design in Mobile Communication Systems

机译:移动通信系统中多层部分频率复用方案设计的分析框架

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Partial frequency reuse (PFR) is one of the key techniques to improving max-min fairness for cell-edge user equipment in the fourth generation of mobile communication systems. Recently, multilayer PFR schemes have been proposed, which are considered to be a promising evolution of this technique. In this paper, we propose an analytical framework for multilayer PFR scheme design, which uses a triplet to completely describe a given PFR scheme. Then, closed-form expressions of the average spatial capacities of certain typical regions of a cell are derived. Based on a comprehensive analysis using this framework, a novel multilayer PFR scheme is designed, which divides each cell into inner, middle, and outer layers, with two homolographic sublayers for the middle layer. Reuse factors for the three layers are 1, 3/2, and 3, respectively, and an orthogonal division of the spectrum among different layers is guaranteed. Based on our numerical results, this novel scheme outperforms the traditional two-layer PFR scheme in max-min fairness without degrading the average spatial capacity. Compared with several representative multilayer PFR schemes, it achieves a better tradeoff between these two metrics.
机译:部分频率重用(PFR)是提高第四代移动通信系统中小区边缘用户设备的最大-最小公平性的关键技术之一。最近,已经提出了多层PFR方案,其被认为是该技术的有希望的发展。在本文中,我们提出了多层PFR方案设计的分析框架,该框架使用三元组来完整描述给定的PFR方案。然后,得出单元格某些典型区域的平均空间容量的闭式表达式。在使用此框架进行全面分析的基础上,设计了一种新颖的多层PFR方案,该方案将每个单元划分为内层,中间层和外层,中间层有两个单层子层。这三层的重用因子分别为1、3 / 2和3,并保证了不同层之间频谱的正交划分。根据我们的数值结果,该新颖方案在最大-最小公平性方面优于传统的两层PFR方案,而不会降低平均空间容量。与几种代表性的多层PFR方案相比,它在这两个指标之间实现了更好的权衡。

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