Robust Access Point Deployment and Adaptive User Assignment for Indoor Millimeter Wave Networks

S. Chatterjee, Mohammad J. Abdel-Rahman, A. B. Mackenzie
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引用次数: 3

Abstract

Millimeter wave (mmW) systems typically use beamforming techniques to compensate for the high pathloss. However, directional communications in the presence of uncertainty in user equipment (UE) locations and channel conditions make maintaining coverage and connectivity challenging. In this context, assuming that mmW access points (APs) use low complexity fixed directional antennas, we propose a joint optimization framework for AP deployment and UE assignment in indoor mmW networks. The goal of our optimization framework is to determine the minimum number of required APs, their optimal locations, their optimal beam directions, and their optimal assignments to individual UEs in order to ensure network-wide coverage and maximize the stability of mmW beams assigned to individual UEs. The network deployment decisions (i.e., the required number of APs, their placements, and their beam directions) are static and are taken before UE locations and channel conditions are revealed. The UE assignment decisions are taken under each realization of UE locations and channel conditions considering the availability and stability of the mmW beams. Our numerical results demonstrate the behavior of the proposed framework under various UE distributions and system parameters.
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室内毫米波网络的鲁棒接入点部署和自适应用户分配
毫米波(mmW)系统通常使用波束形成技术来补偿高路径损耗。然而,在用户设备(UE)位置和信道条件存在不确定性的情况下,定向通信使得保持覆盖和连接具有挑战性。在此背景下,假设毫米波接入点(AP)使用低复杂性的固定定向天线,我们提出了一个室内毫米波网络中AP部署和UE分配的联合优化框架。我们的优化框架的目标是确定所需ap的最小数量、最佳位置、最佳波束方向以及分配给各个终端的最佳分配,以确保网络覆盖范围,并最大限度地提高分配给各个终端的毫米波波束的稳定性。网络部署决策(即,所需ap的数量、它们的位置和它们的波束方向)是静态的,并且是在UE位置和信道条件显示之前进行的。考虑毫米波波束的可用性和稳定性,在不同的终端位置和信道条件下进行终端分配决策。数值结果证明了该框架在不同UE分布和系统参数下的性能。
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