English

Active Propeller Fault Detection and Isolation in Multirotors Via Vibration Model

Systems and Control 2026-04-09 v1 Systems and Control

Abstract

In rotary-wing aircraft, rotating blades are exposed to collisions and subsequent damage. The detection and isolation of blade damage constitute the first step in fault mitigation; however, they are particularly challenging when considerable input redundancy is available, as in the case of multirotors. In this article, we propose an active model-based approach that deliberately perturbs the control inputs to isolate blade faults in multirotor vehicles. By exploiting a model that captures the vibrations caused by blade damage, the isolation method relies solely on vibration data from the onboard inertial measurement unit. The strategy is tested in simulation using an octarotor platform, and both time-domain and frequency-domain features are analyzed. Several accuracy-related metrics of the technique are evaluated on a set of 9600 simulations and compared with the most relevant variables.

Keywords

Cite

@article{arxiv.2604.07281,
  title  = {Active Propeller Fault Detection and Isolation in Multirotors Via Vibration Model},
  author = {Alessandro Baldini and Riccardo Felicetti and Alessandro Freddi and Andrea Monteriù},
  journal= {arXiv preprint arXiv:2604.07281},
  year   = {2026}
}

Comments

To be submitted for publication