Abstract detail

35 / 2021-03-25 16:51:50
Active-passive Hybrid Vibration Isolator Based on Multi-line Spectrum Adaptive Control
Low-frequency line spectrum,Active-passive hybrid vibration isolator,Adaptive Control,FxLMS algorithm
Vibration Isolation
Draft Paper Accepted
Qingchao Yang / 海军工程大学
Zhaozhao Ma / 武汉理工大学
Ruiping Zhou / 武汉理工大学
 In order to effectively control the low-frequency vibration of ship machinery, an active-passive hybrid vibration isolator based on multi-line spectrum adaptive control is proposed. Firstly, the structure of this hybrid isolator is designed, and a two-degree-of-freedom vibration isolation system dynamic model is established. Based on the proposed model, the control force requirements of the vibration isolation system in different damping forces are analyzed. Then, the improved wavelet packet decomposition algorithm and Hartley transform are introduced to the FxLMS (filter-x least mean square) algorithm. A multi-line spectrum adaptive control algorithm with time-delay compensation and fast convergence speed is put forward. Finally, experimental results demonstrate that the active-passive hybrid vibration isolator can effectively reduce the low-frequency line spectrum vibration energy. Experiments have shown that the multi-line spectrum adaptive control algorithm has a better control effect than the traditional FxLMS algorithm.

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Important Dates

Abstract Submission Deadline:

 31st March 2021 15th April 2021

Extended Deadline: 1st Aug. 2022

 

Abstract Acceptance:

30th April  2021 Rollover

 

Full Paper Submission Deadline:

30th June 2021  14th July 2021

Extended Deadline: 15th Aug. 2022 

 

Notification of Acceptance:

15th August 2021 1st Sept. 2021

1st Sept. 2022

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