A Pseudo-Random Subchannel Selection scheme for downlink interference mitigation in two-tier cellular networks

Wei Wang, Yiqing Zhou, Yi Huang, Jinglin Shi
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引用次数: 2

Abstract

Femtocell technology, which is adopted in broadband communication systems, has become an economical way to improve cellular coverage and system capacity. However, it is difficult to exploit the advantages of femtocells in two-tier OFDMA networks because of the interference among the macrocell and femtocells. In this paper, a Pseudo-Random Subchannel Selection (PRSS) scheme is proposed with hybrid frequency allocation for downlink transmission to mitigate the interference. Firstly, the PRSS scheme is performed to randomize the cross-tier interference by aggressor femtocells selecting subchannels pseudo-randomly. Then the proposed scheme utilizes Neighbor Relation Matrix, which could be simplified as the neighbor relationships of adjacent femtocells, to mitigate the co-tier interference. The simulation results showed that the PRSS scheme keeps interference lower while obtains better throughput compared to co-channel frequency allocation (CFA), dedicated frequency allocation (DFA), partial frequency allocation (PFA) and stochastic subchannel allocation (SSA).
一种用于两层蜂窝网络下行干扰抑制的伪随机子信道选择方案
宽带通信系统中采用的Femtocell技术已成为提高蜂窝覆盖和系统容量的一种经济的方法。然而,在两层OFDMA网络中,由于宏基站与飞基站之间存在干扰,难以充分发挥飞基站的优势。本文提出了一种基于混合频率分配的伪随机子信道选择(PRSS)方案,用于下行传输以减轻干扰。首先,采用PRSS方案,攻击飞cell伪随机选择子信道,实现跨层干扰的随机化;然后利用近邻关系矩阵(Neighbor Relation Matrix),将其简化为相邻飞单元间的近邻关系,来缓解协层干扰。仿真结果表明,与同信道频率分配(CFA)、专用频率分配(DFA)、部分频率分配(PFA)和随机子信道分配(SSA)相比,PRSS方案在降低干扰的同时获得了更好的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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