Cell Association in Energy-Constrained Unmanned Aerial Vehicle Communications Under Altitude Consideration

Nway Nway Ei, Chit Wutyee Zaw, Min Kyung Lee, C. Hong
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引用次数: 10

Abstract

In this paper, the total transmit power of Unmanned Aerial Vehicles (UAVs) which are deployed as aerial base stations is minimized by adjusting the altitudes of different UAVs. We assume that the UAVs adopt the frequency division multiple access (FDMA) technique to serve ground users that are distributed in a certain geographical area. For the given two-dimensional locations of UAVs and the distribution of ground users, we find the optimal altitude of each UAV so that it covers all the ground users nearby and provides services with the minimum transmit power. Our formulated problem is separated into two sub-problems: (1) cell association and (2) transmit power minimization. We find the optimal altitude of each UAV in the first sub-problem by using K Means clustering algorithm. In the second sub-problem, we minimize the transmit power of UAV by using the solution of the previous sub-problem. Exploiting convex optimization, we jointly find the optimal altitude and the optimal transmit power of each UAV under its QoS constraints. In essence, the resulting optimal altitudes can lead to lower transmit power of the UAVs in the network compared to the cases when UAVs are deployed at a fixed altitude.
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考虑高度的能量约束无人机通信中的单元关联
本文通过调整不同无人机的飞行高度,使作为空中基站部署的无人机的总发射功率最小。假设无人机采用频分多址(FDMA)技术为分布在一定地理区域内的地面用户提供服务。对于给定的无人机二维位置和地面用户分布,求出每架无人机的最优高度,使其覆盖附近所有地面用户,并以最小的发射功率提供服务。我们的公式问题被分成两个子问题:(1)单元关联和(2)发射功率最小化。在第一个子问题中,我们使用K均值聚类算法求出每架无人机的最优高度。在第二个子问题中,我们利用前一个子问题的解最小化无人机的发射功率。利用凸优化算法,共同求出各无人机在QoS约束下的最优飞行高度和最优发射功率。从本质上讲,与无人机部署在固定高度的情况相比,所得到的最佳高度可能导致网络中无人机的发射功率降低。
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