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Three-dimensional coverage control of common control signals for coverage holes elimination and interference suppression

机译:用于覆盖孔的公共控制信号的三维覆盖控制消除和干扰抑制

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摘要

A new demand of three-dimensional (3D) coverage of wireless signals is arising, since the wireless traffics are gradually distributed in 3D space in the processes of urbanization and high-rise building's popularization. In this paper, 3D coverage control technology based on planar array antenna and 3D beamforming is investigated, and a novel control algorithm HEIS is proposed. Starting from the key performance metrics, i.e., weak coverage ratio (WCR), interference level (IL) and transmission power, an optimization model is established to minimize the transmission power with the constraints of zero WCR and zero IL. Semi-definite relaxation, randomization and compensation adjustment are adopted step by step to obtain suboptimal excitation weights for feeding planar array antenna. It is validated through simulation that the proposed HEIS algorithm outperforms the antenna power-downtilt joint adjustment method in coverage hole elimination, inter-cell interference suppression and energy saving obviously.
机译:由于无线交通逐渐分布在城市化和高层建筑普及的过程中,因此产生了无线信号的三维(3D)覆盖的新需求。本文研究了基于平面阵列天线和3D波束形成的3D覆盖控制技术,提出了一种新的控制算法。从关键性能度量开始,即弱覆盖率(WCR),干扰电平(IL)和传输功率,建立了优化模型,以最小化零WCR和零IL的约束传输功率。通过步骤采用半定宽松,随机化和补偿调整,以获得用于馈送平面阵列天线的次优励磁重量。通过仿真验证,所提出的HEIS算法优于天线电力下降联合调节方法,在覆盖孔中消除,细胞间干扰抑制和节能明显。

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