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Fast and Precise Control for the Vibration Amplitude of an Ultrasonic Transducer Based on Fuzzy PID Control

  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

This work presents a novel constant frequency ultrasonicamplitude control (CFUAC) method based on fuzzy proportional-integral-derivative (FPID) and amplitude direct feedback. The frequency shift and amplitude nonlinearity of the piezoelectric transducer (PT) are measured to determine the optimal constant control frequency of 19.2 kHz. The FPID controller is designed to adapt to the nonlinear changes in different target amplitudes and loads. A direct PT amplitude feedback method is used to improve the signal's anti-interference ability and accuracy. The 5% settling time and steady-state error of FPID can reach 92.22 ms and ± 0.18 μm at the step response under 24 μ m. The 5% settling time and steady-state error of FPID are less than 131.44 ms and ± 0.26 μm at 10 μ m under 150 N. The results confirmthat fast and precise control of the vibration amplitude of an ultrasonic transducer can be realized by the proposed method. The new CFUAC method lays a foundation for revealing the ultrasonic welding and metal processing (UWMP) mechanism and helps to expand the application of ultrasonic vibration in the fields of precision machining and high dynamic ultrasonicmedical equipment.

Original languageEnglish
Article number9427205
Pages (from-to)2766-2774
Number of pages9
JournalIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control
Volume68
Issue number8
DOIs
StatePublished - Aug 2021

Keywords

  • Constant frequency
  • direct amplitude feedback
  • fuzzy proportional-integral-derivative (FPID)
  • precise amplitude control
  • ultrasonic transducer

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