Multi-sensor scheduling for remote state estimation over wireless MIMO fading channels with semantic over-the-air aggregation

Tang, Minjie; Stavrou, Photios A.; Kountouris, Marios
ICC 2026, IEEE International Conference on Communications, 24-28 May 2026, Glasgow, Scotland, UK

In this work, we study multi-sensor scheduling for remote state estimation over wireless multiple-input multipleoutput (MIMO) fading channels using a novel semantic overthe-air (SemOTA) aggregation approach. We first revisit Kalman filtering with conventional over-the-air (OTA) aggregation and highlight its transmit power limitations. To balance power efficiency and estimation performance, we formulate the scheduling task as a finite-horizon dynamic programming (DP) problem. By analyzing the structure of the optimal Q-function, we show that the resulting scheduling policy exhibits a semantic structure that adapts online to the estimation error covariance and channel variations. To obtain a practical solution, we derive a tractable upper bound on the Q-function via a positive semidefinite (PSD) cone decomposition, which enables an efficient approximate scheduling policy and a low-complexity remote estimation algorithm. Numerical results confirm that the proposed scheme outperforms existing methods in both estimation accuracy and power efficiency.


Type:
Conference
City:
Glasgow
Date:
2026-05-24
Department:
Communication systems
Eurecom Ref:
8606
Copyright:
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PERMALINK : https://www.eurecom.fr/publication/8606