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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Resource Allocation with Partitioning Criterion for Macro-Femto Overlay Cellular Networks with Fractional Frequency Reuse
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Resource Allocation with Partitioning Criterion for Macro-Femto Overlay Cellular Networks with Fractional Frequency Reuse

机译:具有分数频率重用的宏毫微微蜂窝网络的划分准则的资源分配

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摘要

The interference mitigation technique based on fractional frequency reuse (FFR) provides improved cell-edge performance with similar overall cell capacity as that of systems with the frequency reuse factor of one. Furthermore, frequency sub-band allocation by FFR has the benefit of allowing flexibility for the deployment of femto-cells through frequency partitioning. Determination of a proper frequency partitioning criterion between the cell-center and the cell-edge, and between the cells with femto-cells is an important issue. In addition, time resource partitioning introduces another degree of freedom to the design of time-frequency resource allocation. In this paper, we propose a novel time-frequency resource allocation mechanism using FFR for a macro-femto overlay cellular network. Feasible frequency sub-band and time resource is allocated to the cell-center and the cell-edge region in a cell by the proposed partitioning criterion and the time partitioning ratio. We provide a guideline for how to determine the partitioning criterion for the regions and how to design the amount of time resource. We derive the average capacity of macro-cells and femto-cells, and introduce a new harmonic mean metric to maximize the average capacity of the regions while achieving the fairness among users in a cell.
机译:基于分数频率复用(FFR)的干扰缓解技术可提供更高的小区边缘性能,其总体小区容量与频率复用因子为1的系统相似。此外,通过FFR进行频率子带分配的益处在于允许通过频率划分灵活地部署毫微微小区。确定小区中心与小区边缘之间以及具有毫微微小区的小区之间的适当频率划分标准是重要的问题。另外,时间资源划分为时频资源分配的设计引入了另一个自由度。在本文中,我们针对宏毫微微覆盖蜂窝网络提出了一种使用FFR的新型时频资源分配机制。通过提议的划分标准和时间划分比率,将可行的频率子带和时间资源分配给小区中的小区中心和小区边缘区域。我们为如何确定区域划分标准以及如何设计时间资源提供了指导。我们得出宏小区和毫微微小区的平均容量,并引入新的谐波均值度量,以最大化区域的平均容量,同时实现小区内用户之间的公平性。

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