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Performance analysis of Fractional Frequency Reuse based on worst case Signal to Interference Ratio in OFDMA downlink systems

机译:OFDMA下行系统中基于最坏情况信噪比的小数频率复用性能分析

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Fractional Frequency Reuse (FFR) is an efficient method to mitigate Inter Cell Interference in multicellular Orthogonal Frequency Division Multiple Access (OFDMA) systems. In this paper, we analyze the downlink worst case Signal to Interference Ratio for FFR schemes. A closed form expression is derived analytically for the worst SIR, outage probability, and Spectral Efficiency (SE). The proposed analytical technique is used to configure a FFR solution for the downlink of OFDMA cellular system. The analysis is performed using two-tiers cellular network with uniform user density and for three different cases of FFR, namely, Frequency Reuse Factor (FRF) = 3, FRF=4 and sectored FFR. The inner radius configuration depends on equalizing the worst SIR for both inner and outer edges of the cell. Numerical results show that sectored FFR yields the highest SE and low outage probability. Sectored FFR highly balances the needs of interference reduction and resource efficiency.
机译:分数频率复用(FFR)是减轻多小区正交频分多址(OFDMA)系统中小区间干扰的有效方法。在本文中,我们分析了FFR方案的下行链路最坏情况信噪比。对于最差的SIR,中断概率和频谱效率(SE),可以通过分析得出闭合形式的表达式。所提出的分析技术用于为OFDMA蜂窝系统的下行链路配置FFR解决方案。使用具有统一用户密度的两层蜂窝网络并针对FFR的三种不同情况(即频率重用因子(FRF)= 3,FRF = 4和扇形FFR)进行分析。内半径配置取决于对像元的内部和外部边缘的最差SIR进行均衡。数值结果表明,扇形FFR产生最高的SE和较低的中断概率。部门FFR高度平衡了减少干扰和提高资源效率的需求。

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