wireless communications

Stay or Switch: Online Conformal Bayesian Optimization Guided Fluid Antenna Configuration

arXiv:2607.26547

summary

The paper proposes an online conformal Bayesian optimization method to decide when to stay on or switch fluid antenna ports, accounting for slot-level sensing‑communication performance and switching energy costs.

Abstract

Fluid antenna systems (FAS) introduce additional spatial degrees of freedom to enable integrated sensing and communication (ISAC) in air-ground networks. However, conventional studies often overlook or simplify the physical overheads and switching costs of FAS. In practice, port switching incurs non-negligible time, during which communication and sensing may continue but with potentially degraded slot-level performance. This leads to two key challenges: (1) the characterization of a slot-level, cost-aware ISAC metric is difficult, and (2) the large port space and accompanying abrupt environmental variations demand more reliable online decision-making. To address these challenges, a cost-aware multi-objective FAS switching problem is formulated, jointly considering slot-level ISAC performance and switching energy. The online conformal Bayesian optimization (OCBO) algorithm is then proposed to learn the unknown gray-box ISAC objectives and calibrate surrogate uncertainty for robust stay-or-switch decisions. Simulation results demonstrate that the proposed cost-aware optimization framework achieves substantially improved long-term ISAC performance compared to existing baselines.

6 pages, 5 figures, conference

Topics & keywords

#fluid antenna#integrated sensing and communication#online optimization#bayesian optimization#cost-aware switching#conformal predictionfluid antenna systemISACconformal Bayesian optimizationstay-or-switch decisionmulti-objective optimizationswitching energy
Stay or Switch: Online Conformal Bayesian Optimization Guided Fluid Antenna Configuration · wovepaper