Optimal Beamforming for Multi-User Continuous Aperture Array (CAPA) Systems
Zhaolin Wang, Chongjun Ouyang, Yuanwei Liu

TL;DR
This paper develops a novel optimal beamforming framework for multi-user continuous aperture array (CAPA) systems, providing closed-form solutions, globally optimal algorithms, and low-complexity designs that outperform traditional discrete arrays.
Contribution
It introduces the first closed-form optimal structure for CAPA beamforming, along with globally optimal and low-complexity practical designs, advancing continuous array system optimization.
Findings
CAPA outperforms traditional discrete arrays in communication performance.
MMSE design nearly achieves optimal performance across scenarios.
MRT and ZF designs are asymptotically optimal in low and high SNR regimes.
Abstract
The optimal beamforming design for multi-user continuous aperture array (CAPA) systems is proposed. In contrast to conventional spatially discrete array (SPDA), the beamformer for CAPA is a continuous function rather than a discrete vector or matrix, rendering beamforming optimization a non-convex integral-based functional programming. To address this challenging issue, the closed-form optimal structure of the CAPA beamformer is first derived for maximizing generic system utility functions, by addressing the inversion of continuous functions and using the Lagrangian duality and the calculus of variations. The derived optimal structure is a linear combination of the continuous channel responses for CAPA, with the linear weights determined by the channel correlations. As a further advance, a monotonic optimization method is proposed for obtaining globally optimal CAPA beamforming based on…
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Taxonomy
TopicsAntenna Design and Optimization · Antenna Design and Analysis · Radio Astronomy Observations and Technology
