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March 10, 2026IET Control Theory and Applications0 citationsOpen Access

Vibration Spectrum of an Act‐and‐Wait Controlled System With Significant Damping

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PSPéter SzalaiMAMate Antali

Key Points

  • This research aims to explore the effects of the act-and-wait concept on vibration phenomena in controlled systems.
  • Analyzed a single-degree-of-freedom mechanical model of DC actuators.
  • Derive analytical and semi-analytical results for vibration spectrum at stability limits.
  • Validated findings through numerical calculations and experiments.
  • Demonstrated how act-and-wait concept enhances control quality by reducing steady-state error.
  • Provided new insights into the vibration spectrum at different stability boundaries.
  • Confirmed the analytical results with experimental data from a linear DC actuator.

Abstract

ABSTRACT Act‐and‐wait concept in control theory is a tool for enhancing the control quality by decreasing the destabilising effect of time delay. As was shown in other works, applying the act‐and‐wait concept to a PD position control increases the available range of proportional gains, which reduces the steady‐state error of dry friction. In this paper, we focus on the vibration phenomena at the boundaries of the dynamic stability from the aspect of the vibration spectrum. We consider a single‐degree‐of‐freedom mechanical model of DC actuators that contains significant effective damping. At different types of stability limits, new analytical and semi‐analytical results are derived for the vibration spectrum. The results are validated by numerical calculations and experiments on a linear DC actuator.

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Cite This Study

Szalai et al. (2026) studied this question.

synapsesocial.com/papers/69af951a70916d39fea4c5f9https://doi.org/10.1049/cth2.70111
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