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Robust Multi-Objective Beamforming for Integrated Satellite and High Altitude Platform Network With Imperfect Channel State Information

机译:具有不完善信道状态信息的集成卫星和高空平台网络的鲁棒多目标波束形成

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In this paper, we propose a robust beamforming (BF) scheme for an integrated satellite and high altitude platform network, where a multibeam satellite system shares the millimeter wave spectrum with a high altitude platform system. Specifically, we first exploit the weighted Tchebycheff method and formulate a multi-objective optimization problem to obtain the Pareto optimal trade-off between two conflicting yet desirable objectives, namely, sum rate maximization and total transmit power minimization, while satisfying the quality-of-service constraints of both earth stations and mobile terminals and per-antenna transmit power budget. Then, by using the angular information based imperfect channel state information, we propose a low-complexity discretization method to transform the non-convex objective function and constraints to the convex ones. Furthermore, a monotonic optimization scheme combined with iterative penalty function algorithm is presented to obtain the BF weight vectors with low computational complexity and fast convergence rate. Finally, numerical results are provided to confirm the effectiveness and superiority of the proposed approach in comparison to the existing related works.
机译:在本文中,我们为集成的卫星和高空平台网络提出了一种鲁棒的波束成形(BF)方案,其中多波束卫星系统与高空平台系统共享毫米波频谱。具体来说,我们首先利用加权的Tchebycheff方法并提出一个多目标优化问题,以在两个有冲突但理想的目标之间取得帕累托最优权衡,即总和最大化和总发射功率最小化,同时满足质量要求。地球站和移动终端的服务限制以及每个天线的发射功率预算。然后,通过使用基于角度信息的不完善信道状态信息,提出了一种将非凸目标函数和约束转换为凸目标函数的低复杂度离散化方法。此外,提出了一种结合迭代罚函数算法的单调优化方案,以得到计算量少,收敛速度快的BF加权向量。最后,提供了数值结果,以证实与现有相关工作相比,该方法的有效性和优越性。

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