English

AoI-based Finite Horizon Scheduling for Heterogeneous Networked Control Systems

Systems and Control 2020-05-06 v1 Information Theory Systems and Control math.IT

Abstract

Age of information (AoI) measures information freshness at the receiver. AoI may provide insights into quality of service in communication systems. For this reason, it has been used as a cross-layer metric for wireless communication protocols. In this work, we employ AoI to calculate penalty functions for a centralized resource scheduling problem. We consider a single wireless link shared by multiple, heterogeneous control systems where each sub-system has a time-varying packet loss probability. Sub-systems are competing for network resources to improve the accuracy of their remote estimation process. In order to cope with the dynamically changing conditions of the wireless link, we define a finite horizon age-penalty minimization problem and propose a scheduler that takes optimal decisions by looking HH slots into the future. The proposed algorithm has a worst-case complexity that grows exponentially with HH. However, by narrowing down our search space within the constrained set of actions, we are able to decrease the complexity significantly without losing optimality. On the contrary, we show by simulations that the benefit of increasing HH w.r.t. remote state estimation performance diminishes after a certain HH value.

Keywords

Cite

@article{arxiv.2005.02037,
  title  = {AoI-based Finite Horizon Scheduling for Heterogeneous Networked Control Systems},
  author = {Onur Ayan and H. Murat Gürsu and Sandra Hirche and Wolfgang Kellerer},
  journal= {arXiv preprint arXiv:2005.02037},
  year   = {2020}
}
R2 v1 2026-06-23T15:19:00.251Z