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Enhanced Fractional Frequency Reuse for large-scale OFDMA networks with heterogeneous cell layout: Optimization and performance evaluation

机译:具有异类小区布局的大规模OFDMA网络的增强式分数频率复用:优化和性能评估

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Fractional Frequency Reuse (FFR) is one of the key concepts for mitigating inter-cell interference and improving cell-edge performance in OFDMA networks. The standard FFR scheme is intuitive and optimal for the hexagon-shaped cell pattern. In contrast, real-life OFDMA systems have very irregular cell layout, thus the number of surrounding cells and their respective interference vary significantly over the network. For such scenarios, the standard scheme, if applicable at all, is inadequate because the number of sub-bands and the reuse factor are fixed. To overcome the limitations, we present enhanced FFR (EFFR) that allows for high flexibility in the total number of sub-bands as well as the allocation of sub-bands in edge zones. An optimization algorithm is developed to determine sub-band allocation to maximize the cell-edge throughput. Hence EFFR adapts the allocation and reuse pattern to the irregularity of each individual network. Evaluations based on networks with realistic radio propagation conditions show the high performance of EFFR in improving cell-edge throughput. The improvement allows for better trade-off between cell-center and cell-edge throughput. These results along with the analysis demonstrate the benefits of EFFR to performance engineering of OFDMA networks.
机译:小数频率复用(FFR)是缓解小区间干扰并改善OFDMA网络中的小区边缘性能的关键概念之一。标准FFR方案是直观的,并且对于六边形单元格模式来说是最佳的。相反,现实生活中的OFDMA系统具有非常不规则的小区布局,因此周围小区的数量及其各自的干扰会在网络上发生显着变化。对于这种情况,由于子带的数量和重用因子是固定的,因此标准方案(如果有的话)根本不够用。为了克服这些限制,我们提出了增强的FFR(EFFR),它在子带的总数以及边缘区域中子带的分配方面具有很高的灵活性。开发了一种优化算法来确定子带分配,以最大化小区边缘吞吐量。因此,EFFR使分配和重用模式适应每个单独网络的不规则性。基于具有现实无线电传播条件的网络进行的评估表明,EFFR在改善小区边缘吞吐量方面具有高性能。该改进允许在小区中心吞吐量和小区边缘吞吐量之间进行更好的权衡。这些结果以及分析证明了EFFR对OFDMA网络性能工程的好处。

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