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Vibrational stability improvement of a mirror system using active mass damping
by
He, Shijing
, Yuan, Haoran
, Zhang, Xinyu
, Liu, Xuerong
, Wu, Tianyu
, Wang, Zhizhuo
, Liu, Fang
, Chen, Nuo
in
Active damping
/ active mass damper
/ Active mirrors
/ active vibration control
/ free-electron laser
/ Pitch (inclination)
/ Research Papers
/ spillover effect
/ Vibration damping
2024
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Vibrational stability improvement of a mirror system using active mass damping
by
He, Shijing
, Yuan, Haoran
, Zhang, Xinyu
, Liu, Xuerong
, Wu, Tianyu
, Wang, Zhizhuo
, Liu, Fang
, Chen, Nuo
in
Active damping
/ active mass damper
/ Active mirrors
/ active vibration control
/ free-electron laser
/ Pitch (inclination)
/ Research Papers
/ spillover effect
/ Vibration damping
2024
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Do you wish to request the book?
Vibrational stability improvement of a mirror system using active mass damping
by
He, Shijing
, Yuan, Haoran
, Zhang, Xinyu
, Liu, Xuerong
, Wu, Tianyu
, Wang, Zhizhuo
, Liu, Fang
, Chen, Nuo
in
Active damping
/ active mass damper
/ Active mirrors
/ active vibration control
/ free-electron laser
/ Pitch (inclination)
/ Research Papers
/ spillover effect
/ Vibration damping
2024
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Vibrational stability improvement of a mirror system using active mass damping
Journal Article
Vibrational stability improvement of a mirror system using active mass damping
2024
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Overview
Addressing the demand for high stability of beamline instruments at the SHINE facility, a high stability mirror regulating mechanism has been developed for mirror adjustments. Active mass damping was adopted to attenuate pitch angle vibrations of mirrors caused by structural vibrations. An internal absolute velocity feedback was used to reduce the negative impact of spillover effects and to improve performance. The experiment was conducted on a prototype structure of a mirror regulating mechanism, and results showed that the vibration RMS of the pitch angle was effectively attenuated from 47 nrad to 27 nrad above 1 Hz. Active damping with internal absolute velocity feedback was implemented to damp the angular vibration of a mirror holder for free‐electron laser beam transportation.
Publisher
International Union of Crystallography,John Wiley & Sons, Inc
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