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Power Allocation and 3-D Placement for Floating Relay Supporting Indoor Communications

机译:浮动继电器支持室内通信的功率分配和3D放置

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With the rapid development of mobile Internet and urban constructions, high-volume and dynamic indoor communications bring challenges to cellular systems. High penetration loss and deep shadowing channels of indoor users may substantially degrade the transmission efficiency and system throughput. To address this issue, this paper proposes a solution using Floating Relay (FR) given the mature technologies of unmanned aerial vehicle (UAV). We target the undesirable channel conditions of indoor users, introduce the FR into the cellular system to improve transmission efficiency and maximize system throughput. Considering the capacity limit of the FR's back-haul link and the maximum transmission power of each user, an optimization problem is formulated to maximize the system throughput. The optimal power allocation strategy is then obtained for each user, and two effective online 3-D placement algorithms are proposed for the FR to approach the optimal location in the unpredictable and predictable scenarios, respectively. Extensive simulations are conducted. The achieved maximum system throughput, convergence rate, and accumulated throughput are used to evaluate the proposed algorithms. According to the comparisons between the two proposed algorithms and with off-line schemes, they show superiorities in their targeted scenarios, respectively.
机译:随着移动互联网和城市建设的飞速发展,大容量,动态的室内通信给蜂窝系统带来了挑战。室内用户的高穿透损耗和较深的阴影通道可能会大大降低传输效率和系统吞吐量。为了解决这个问题,鉴于无人飞行器(UAV)的成熟技术,本文提出了一种使用浮动继电器(FR)的解决方案。我们针对室内用户的不良信道状况,将FR引入蜂窝系统以提高传输效率并最大化系统吞吐量。考虑到FR的回程链路的容量限制和每个用户的最大传输功率,提出了一个优化问题以使系统吞吐量最大化。然后为每个用户获得最佳功率分配策略,并针对FR提出了两种有效的在线3-D放置算法,以分别在不可预测和可预测的场景中接近最佳位置。进行了广泛的模拟。实现的最大系统吞吐量,收敛速度和累积吞吐量用于评估所提出的算法。根据两种建议算法之间的比较以及离线方案,它们分别在目标方案中显示出优势。

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