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Collaborative Beamforming for Cognitive UAV Relaying System Coexisting with Satellite Networks

机译:与卫星网络共存的认知无人机中继系统的协作波束成形

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In this paper, we study a cognitive unmanned aerial vehicle (UAV) relaying system (CURS) which shares the downlink frequency of a satellite network. Specifically, we propose a collaborative beamforming (CBF) scheme that maximizes the signal-to-interference plus noise ratio (SINR) of CURS, subjects to the SINR requirements of the satellite network and the individual transmit power constraints of UAV relays. Since the original optimization problem is non-convex and mathematically intractable, we first transform it into an approximate convex one by means of the Charnes-Cooper transformation and the penalty function method as well as the difference of two-convex functions (D.C.) approach. Then a convergence proven iterative algorithm is designed to find the optimal CBF solution. Simulation results are provided to demonstrate the effectiveness of the proposed scheme and the impact of UAV transmit power and satellite network SINR requirements on the CURS.
机译:在本文中,我们研究了共享卫星网络下行链路频率的认知无人飞行器(UAV)中继系统(CURS)。具体来说,我们提出了一种协作波束成形(CBF)方案,该方案可最大化CURS的信号干扰加噪声比(SINR),并服从卫星网络的SINR要求和UAV继电器的各个发射功率约束。由于最初的优化问题是非凸的并且在数学上是难解的,因此我们首先通过Charnes-Cooper变换和罚函数方法以及二凸函数之差(DC)方法将其转化为近似凸的问题。然后,设计了一种经过收敛证明的迭代算法,以找到最佳的CBF解决方案。仿真结果表明了该方案的有效性以及无人机发射功率和卫星网络SINR要求对CURS的影响。

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