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Cooperative Downlink Interference Transmission and Cancellation for Cellular-Connected UAV: A Divide-and-Conquer Approach

机译:Comperach Connected UAV的协同下行链路干扰传输和取消:分频和征服方法

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The line-of-sight (LoS) dominant air-ground channels have posed critical interference issues in cellular-connected unmanned aerial vehicle (UAV) communications. In this paper, we propose a new base station (BS) cooperative beamforming (CB) technique for the cellular downlink to mitigate the strong interference caused by the co-channel terrestrial transmissions to the UAV. Besides the conventional CB by cooperatively transmitting the UAV's message, the serving BSs of the UAV exploit a novel CB-based interference transmission scheme to effectively suppress the terrestrial interference to the UAV. Specifically, the co-channel terrestrial users' messages are shared with the UAV's serving BSs and transmitted via CB so as to cancel their resultant interference at the UAV's receiver. To optimally balance between the CB gains for UAV signal enhancement and terrestrial interference cancellation, we formulate a new problem to maximize the UAV's receive signal-to-interference-plus-noise ratio (SINR) by jointly optimizing the power allocations at all of its serving BSs for transmitting the UAV's and co-channel terrestrial users' messages. First, we derive the closed-form optimal solution to this problem in the special case of one serving BS for the UAV and draw useful insights. Then, we propose an algorithm to solve the problem optimally in the general case. As the optimal solution requires centralized implementation with exorbitant message/channel information exchanges among the BSs, we further propose a distributed algorithm that is amenable to practical implementation, based on a new divide-and-conquer approach, whereby each co-channel BS divides its perceived interference to the UAV into multiple portions, each to be canceled by a different serving BS of the UAV with its best effort. Numerical results show that the proposed centralized and distributed CB schemes with interference transmission and cancellation (ITC) can both significantly improve the UAV's downlink performance as compared to the conventional CB without applying ITC.
机译:视线(LOS)主导空气地通道在蜂窝连接的无人驾驶飞行器(UAV)通信中提出了关键干扰问题。在本文中,我们提出了一种新的基站(BS)协作波束形成(CB)技术,用于蜂窝下行链路,以减轻由与UAV的共轭地面传输引起的强烈干扰。除了传统的CB之外,通过协同发送UAV的消息,UAV的服务BSS利用新的基于CB的干扰传输方案,以有效地抑制对UAV的地面干扰。具体地,共同信道地面用户的消息与UAV的服务BSS共享并且通过CB传输,以便在UAV的接收器中取消它们的产生干扰。为了在UAV信号增强和地面干扰取消的CB增益之间进行最佳平衡,我们制定了一个新问题,以通过联合优化其所有服务的功率分配来最大化UAV的接收信号到干扰噪声比(SINR) BSS用于传输UAV和Co-Convent地面用户的消息。首先,我们在一个服务于无人机的一个服务BS的特殊情况下,我们将封闭式的最佳解决问题推导出这个问题并绘制有用的见解。然后,我们提出了一种算法在常规情况下最佳地解决问题。随着最佳解决方案需要在BS中的高昂消息/频道信息交换中需要集中实现,我们进一步提出了一种基于新的划分和征服方法的实际实现的分布式算法,其中每个共通道BS划分其将对无人机的干扰感染到多个部分中,每个部分被无人机的不同服务BS取消,其最佳努力。数值结果表明,与传统CB相比,具有干扰传输和取消(ITC)的提出的集中和分布式CB方案(ITC)可以显着提高UAV的下行链路性能而不应用ITC。

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