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On the co-channel femtocells exclusion region in fractional frequency reuse macrocells

机译:在部分频率复用宏小区中的同信道毫微微小区排除区域

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Femtocells are capable of achieving high capacity and improving indoor coverage due to a shorter distance between the transmitter and receiver, while fractional frequency reuse (FFR) has been proposed to improve spectral efficiency in emerging OFDMA networks. Due to spectrum limitations, FFR macrocell and femtocells are likely to share the same licensed spectrum, thereby inadvertently creating a possible dead-spot problem due to huge two-tier co-channel interferences. Using outage probability analysis, we derive the femtocell exclusion region (FER) or the minimum distance required for the co-channel femtocell to be able to reuse the same channels as the FFR networks. We show that a minimum of one FER could exist in FFR and at different combination of channel parameters and power ratio, two FER could exist; one in the cell-centre region and the other in the cell-edge region. A new static femtocell resource allocation strategy to improve the system performance is proposed.
机译:由于发射器和接收器之间的距离更短,因此毫微微小区能够实现高容量并改善室内覆盖范围,而有人提出了分数频率复用(FFR)来改善新兴的OFDMA网络中的频谱效率。由于频谱限制,FFR宏小区和毫微微小区可能共享相同的许可频谱,从而由于巨大的两层同信道干扰而无意中造成了可能的死点问题。使用中断概率分析,我们得出毫微微小区排除区域(FER)或同频道毫微微小区能够重用与FFR网络相同的信道所需的最小距离。我们表明,在FFR中至少可以存在一个FER,并且在信道参数和功率比的不同组合下,可以存在两个FER。一个在单元中心区域,另一个在单元边缘区域。提出了一种新的静态毫微微小区资源分配策略,以提高系统性能。

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