Feedforward compensation for hysteresis and dynamic behaviors of a high-speed atomic force microscope scanner

  • Otieno, Luke Oduor; 
  • Thi Thu Nguyen; 
  • Park, Sang Joon; 
  • Lee, Yong Joong; 
  • Alunda, Bernard Ouma
Citations

WEB OF SCIENCE

7
Citations

SCOPUS

6

초록

Piezoelectric actuators (PEAs) suffer from inherent creep, hysteresis, and mechanical resonances, and these phenomena have different characteristics. Creep is a low-speed phenomenon. Mechanical resonances are felt at high speeds while hysteresis is present for all speeds of operation. Some type of compensation for the weaknesses of PEAs is required to improve the tracking accuracy using PEA-based nano-positioning scanners. This work presents a feedforward compensation method for a high-speed atomic force microscope (HS-AFM) XY-scanner to mitigate the combined effects of hysteresis and scanner dynamics. Hysteresis is compensated for using an inverse Bouc-Wen (BW) model while the system dynamics are compensated for using the inverse models of the frequency response of the scanner. Cross-coupling effects at high frequencies are compensated for using low-pass filters (LPFs) to attenuate the high-frequency components of the drive signals. The compensated scanner is then used to acquire images of data tracks of a Blu-ray disk to demonstrate the efficacy of the adopted approach. The bandwidth of the scanner is limited by the choice of the LPF and the first occurrence of the scanner's mechanical resonance.

키워드

Atomic force microscope; High-speed atomic force microscope; Feedforward compensation; VIBRATION COMPENSATION; PIEZOACTUATORS; IDENTIFICATION; STAGE; CREEP
제목
Feedforward compensation for hysteresis and dynamic behaviors of a high-speed atomic force microscope scanner
저자
Otieno, Luke Oduor; Thi Thu Nguyen; Park, Sang Joon; Lee, Yong Joong; Alunda, Bernard Ouma
DOI
10.1007/s40042-021-00376-9
발행일
2022-02
유형
Article
저널명
Journal of the Korean Physical Society
권
80
호
4
페이지
325 ~ 336