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首页> 外文期刊>Wireless Communications Letters, IEEE >Robust Design for IRS-Aided Communication Systems With User Location Uncertainty
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Robust Design for IRS-Aided Communication Systems With User Location Uncertainty

机译:具有用户位置不确定性的IRS辅助通信系统的强大设计

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摘要

In this letter, we propose a robust design framework for IRS-aided communication systems in the presence of user location uncertainty. By jointly designing the transmit beamforming vector at the BS and phase shifts at the IRS, we aim to minimize the transmit power subject to the worse-case quality of service (QoS) constraint, i.e., ensuring the user rate is above a threshold for all possible user location error realizations. With unit-modulus, this problem is not convex. The location uncertainty in the QoS constraint further increases the difficulty of solving this problem. By utilizing techniques of Taylor expansion, S-Procedure and semidefinite relaxation (SDP), we transform this problem into a sequence of semidefinite programming (SDP) sub-problems. Simulation results show that the proposed robust algorithm substantially outperforms the non-robust algorithm proposed in the literature, in terms of probability of reaching the required QoS target.
机译:在这封信中,我们在存在用户位置不确定性的情况下为IRS辅助通信系统提出了一种强大的设计框架。通过在IRS的BS和相移中共同设计发射波束成形矢量,我们的目标是最小化经受较差的服务质量(QoS)约束的发射功率,即确保用户速率高于阈值可能的用户位置错误实现。使用单位模量,这个问题不是凸。 QoS限制的位置不确定性进一步提高了解决这个问题的难度。通过利用泰勒膨胀,S-PROGRALY和SEMIDEFINITE放松的技术(SDP),我们将此问题转化为一系列半纤维编程(SDP)子问题。仿真结果表明,在达到所需QoS目标的概率方面,所提出的稳健算法基本上超出了文献中提出的非鲁棒算法。

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