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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Generalizing and optimizing fractional frequency reuse in broadband cellular radio access networks
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Generalizing and optimizing fractional frequency reuse in broadband cellular radio access networks

机译:概括和优化宽带蜂窝无线接入网中的分数频率复用

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For broadband cellular access based on orthogonal frequency division multiple access (OFDMA), fractional frequency reuse (FFR) is one of the key concepts for mitigating inter-cell interference and optimizing cell-edge performance. In standard FFR, the number of OFDMA sub-bands and the reuse factor are fixed. Whereas this works well for an idealized cell pattern, it is neither directly applicable nor adequate for real-life networks with irregular cell layouts. In this article, we consider a generalized FFR (GFFR) scheme to allow for flexibility in the total number of sub-bands as well as the number of sub-bands in each cell-edge zone, to enable network-adaptive FFR. In addition, the GFFR scheme takes power assignment in consideration. We formalize the complexity of the optimization problem, and develop an optimization algorithm based on local search to maximize the cell-edge throughput. Numerical results using networks with realistic radio propagation conditions demonstrate the applicability of the GFFR scheme in performance engineering of OFDMA networks.
机译:对于基于正交频分多址(OFDMA)的宽带蜂窝接入,分数频率复用(FFR)是缓解小区间干扰和优化小区边缘性能的关键概念之一。在标准FFR中,OFDMA子带的数量和重用因子是固定的。尽管这对于理想化的小区模式非常有效,但它既不直接适用也不适合具有不规则小区布局的现实网络。在本文中,我们考虑了通用FFR(GFFR)方案,以允许子带总数以及每个小区边缘区域中子带数目的灵活性,以实现网络自适应FFR。此外,GFFR方案考虑了功率分配。我们将优化问题的复杂性形式化,并开发一种基于局部搜索的优化算法,以最大化小区边缘吞吐量。使用具有现实无线电传播条件的网络的数值结果证明了GFFR方案在OFDMA网络的性能工程中的适用性。

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