Uplink Interference Management in Cellular-Connected UAV Networks Using Multi-Armed Bandit and NOMA

Fatemeh Banaeizadeh, M. Barbeau, Joaquín García, Venkata Srinivas Kothapalli, E. Kranakis
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Abstract

Ground users suffer from severe uplink interference originating from high altitude Unmanned Aerial Vehicle (UAV) line-of-sight channels. Using multi-armed bandit, we propose a method aiming to find the best resource block and transmit power level for a UAV dynamically paired with a ground user using Non-Orthogonal Multiple Access (NOMA). It is done according to the UAV’s location. It results in mitigating the UAV-uplink interference on its co-channel ground user and maximizing the sum of their data rate in the shared resource block. Performance is evaluated via simulating three exploration-exploitation strategies, namely, epsilon-greedy, upper confidence bound and Thompson sampling.
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基于多臂强盗和NOMA的蜂窝连接无人机网络上行干扰管理
地面用户遭受来自高空无人机(UAV)视距信道的严重上行干扰。针对无人机与地面用户采用非正交多址(NOMA)动态配对的情况,提出了一种多臂土方算法,旨在寻找最佳资源块和发射功率水平。这是根据无人机的位置来完成的。它可以减轻无人机上行链路对同信道地面用户的干扰,并最大限度地提高共享资源块中的数据速率总和。通过模拟三种勘探开发策略,即epsilon-greedy、上置信度界和Thompson采样,对性能进行了评估。
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