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Robust Movable-Antenna Position Optimization with Imperfect CSI for MISO Systems

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arxiv 2505.07035 v1 pith:FFE4MVUN submitted 2025-05-11 cs.IT eess.SPmath.IT

Robust Movable-Antenna Position Optimization with Imperfect CSI for MISO Systems

classification cs.IT eess.SPmath.IT
keywords errorsconditionsimperfectpowerreceivedsignalantennachannel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Movable antenna (MA) technology has emerged as a promising solution for reconfiguring wireless channel conditions through local antenna movement within confined regions. Unlike previous works assuming perfect channel state information (CSI), this letter addresses the robust MA position optimization problem under imperfect CSI conditions for a multiple-input single-output (MISO) MA system. Specifically, we consider two types of CSI errors: norm-bounded and randomly distributed errors, aiming to maximize the worst-case and non-outage received signal power, respectively. For norm-bounded CSI errors, we derive the worst-case received signal power in closed-form. For randomly distributed CSI errors, due to the intractability of the probabilistic constraints, we apply the Bernstein-type inequality to obtain a closed-form lower bound for the non-outage received signal power. Based on these results, we show the optimality of the maximum-ratio transmission for imperfect CSI in both scenarios and employ a graph-based algorithm to obtain the optimal MA positions. Numerical results show that our proposed scheme can even outperform other benchmark schemes implemented under perfect CSI conditions.

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