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Multi-objective optimization for intercell interference management in advanced multihop cellular networks

机译:高级多跳蜂窝网络中Intercell干扰管理的多目标优化

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In this paper, we present a joint optimization of power control, scheduling and relaying topology for multi-hop cellular networks aware of the intercell interference. To reduce the intercell interference in adjacent cells, cooperative diversity relaying scheme (COOR) is used in the system to reduce the transmission power needed to meet the same SINR threshold as the conventional relaying scheme (CONR). The resulting intercell interference management (I2M) protocols using COOR and CONR schemes will be referred to as I2M-COOR, and I2M-CONR respectively. In this complex scenario, for a given spatial traffic distribution we find the optimum scheduling and relaying topology in order to reduce the overall interference in the network and achieve a proper tradeoff between throughput and power allocation. Numerical results show that I2M-COOR offers an improvement in the network throughput of at least 150% and a reduction of power consumption of at least 130% compared to I2M-CONR. The optimum topology consumes in average 3 times less power than non-optimum options and the variation in throughput between the non-optimum solutions is by factor 5 inferior with respect to the optimum topology.
机译:在本文中,我们介绍了对InterCell干扰意识到的多跳蜂窝网络的功率控制,调度和中继拓扑的联合优化。为了减少相邻电池中的Intercell干扰,在系统中使用协作分集中继方案(Coor)以降低满足与传统中继方案(CONR)相同的SINR阈值所需的传输功率。使用CoOR和CONR方案的所得到的InterCell干扰管理(I 2 M)协议将被称为I 2 M- CONOR,I 2 m-conr分别。在这种复杂的场景中,对于给定的空间流量分布,我们找到了最佳的调度和中继拓扑,以减少网络的整体干扰,实现吞吐量和功率分配之间的适当权衡。数值结果表明,与I 2 相比,I 2 M-COOR提供至少150%的网络吞吐量的提高,并且至少130%的功耗降低m-conr。最佳拓扑平均消耗的功率低于非最优选项,并且非最优解之间的吞吐量的变化是相对于最佳拓扑的因子5差。

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