English

An Audio-Based Iterative Controller for Soft Landing of Electromechanical Relays

Systems and Control 2024-05-29 v1 Systems and Control

Abstract

Electromechanical relays and contactors suffer from strong collisions at the end of the switching operations. This causes several undesirable phenomena, such as clicking, mechanical wear and contact bounce. Thus, there is great interest in mitigating these switching impacts while keeping the advantageous features of these devices. This paper proposes a complete control strategy for soft landing. The control structure includes three main components. The first one is a real-time flux-tracking feedback controller, which presents several advantages over voltage or current control. The second one is a feedforward controller, which computes the flux reference signal based on a proposed dynamical model and the desired position trajectory for the switching operations. Lastly, the third control component is a learning-type run-to-run adaptation law that iteratively adapts the model parameters based on an audio signal. It exploits the repetitive nature of these devices in order to circumvent modeling discrepancies due to unit-to-unit variability or small changes between operations. The effectiveness of the proposed control is demonstrated through various experiments.

Keywords

Cite

@article{arxiv.2405.15837,
  title  = {An Audio-Based Iterative Controller for Soft Landing of Electromechanical Relays},
  author = {Eloy Serrano-Seco and Edgar Ramirez-Laboreo and Eduardo Moya-Lasheras and Carlos Sagues},
  journal= {arXiv preprint arXiv:2405.15837},
  year   = {2024}
}

Comments

9 pages, 10 figures. Version accepted for publication in the IEEE Transactions on Industrial Electronics