Dispersed operating time control of a mechanical switch actuated by an ultrasonic motor
The ultrasonic motor is an uncertain time-varying nonlinear system because of the nonlinearity of the piezoelectric material, the friction and the temperature. For example, the operating time of the mechanical switch actuated by the ultrasonic motor in regular stroke is highly dispersed. Unfortunate...
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doaj-ce1f57b47a484a76ac8788b1e8ec01f12020-11-24T21:59:00ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602018-02-0120132133110.21595/jve.2017.1823418234Dispersed operating time control of a mechanical switch actuated by an ultrasonic motorXiaoniu Li0Zhiyuan Yao1Lifeng Zhou2Shengli Zhou3State Key Laboratory of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, ChinaState Key Laboratory of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, ChinaState Key Laboratory of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, ChinaState Key Laboratory of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, ChinaThe ultrasonic motor is an uncertain time-varying nonlinear system because of the nonlinearity of the piezoelectric material, the friction and the temperature. For example, the operating time of the mechanical switch actuated by the ultrasonic motor in regular stroke is highly dispersed. Unfortunately, it is difficult to establish accurate mathematical model. In this paper, an analytical autoregressive process model (AR) is employed to identify and control the ultrasonic motor. First of all, dispersed operating time of the mechanical switch actuated by the ultrasonic motor is investigated. Then, the AR model is established to predict the operating time of the ultrasonic motor on the basis of the statistical data to reduce the nonlinear behavior of the ultrasonic motor, and to improve the accuracy and obtain a good time response of the switch. The simulation results are agreed with experimental results, confirming the effectiveness of proposed model. Furthermore, we adopt the predicted result of the AR model to control the mechanical switch actuated by the ultrasonic motor. The analytical investigation is fulfilled with two target operating time ranges, namely 12 ms and 24 ms. Comparison of the results obtained from the AR model and the experimentation reveal that the standard deviations are less than 95.3 μs and 102.7 μs with maximum errors equal to 0.41 % and 0.44 % respectively. Thereby, the proposed dispersed operating time control is performed. Findings indicate that the maximum errors for the operating time of the mechanical switch are less than 140 μs and 110 μs with ±0.85 % and ±0.42 % respectively.https://www.jvejournals.com/article/18234ultrasonic motormechanical switchnonlinear behaviordispersedautoregressive process model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xiaoniu Li Zhiyuan Yao Lifeng Zhou Shengli Zhou |
spellingShingle |
Xiaoniu Li Zhiyuan Yao Lifeng Zhou Shengli Zhou Dispersed operating time control of a mechanical switch actuated by an ultrasonic motor Journal of Vibroengineering ultrasonic motor mechanical switch nonlinear behavior dispersed autoregressive process model |
author_facet |
Xiaoniu Li Zhiyuan Yao Lifeng Zhou Shengli Zhou |
author_sort |
Xiaoniu Li |
title |
Dispersed operating time control of a mechanical switch actuated by an ultrasonic motor |
title_short |
Dispersed operating time control of a mechanical switch actuated by an ultrasonic motor |
title_full |
Dispersed operating time control of a mechanical switch actuated by an ultrasonic motor |
title_fullStr |
Dispersed operating time control of a mechanical switch actuated by an ultrasonic motor |
title_full_unstemmed |
Dispersed operating time control of a mechanical switch actuated by an ultrasonic motor |
title_sort |
dispersed operating time control of a mechanical switch actuated by an ultrasonic motor |
publisher |
JVE International |
series |
Journal of Vibroengineering |
issn |
1392-8716 2538-8460 |
publishDate |
2018-02-01 |
description |
The ultrasonic motor is an uncertain time-varying nonlinear system because of the nonlinearity of the piezoelectric material, the friction and the temperature. For example, the operating time of the mechanical switch actuated by the ultrasonic motor in regular stroke is highly dispersed. Unfortunately, it is difficult to establish accurate mathematical model. In this paper, an analytical autoregressive process model (AR) is employed to identify and control the ultrasonic motor. First of all, dispersed operating time of the mechanical switch actuated by the ultrasonic motor is investigated. Then, the AR model is established to predict the operating time of the ultrasonic motor on the basis of the statistical data to reduce the nonlinear behavior of the ultrasonic motor, and to improve the accuracy and obtain a good time response of the switch. The simulation results are agreed with experimental results, confirming the effectiveness of proposed model. Furthermore, we adopt the predicted result of the AR model to control the mechanical switch actuated by the ultrasonic motor. The analytical investigation is fulfilled with two target operating time ranges, namely 12 ms and 24 ms. Comparison of the results obtained from the AR model and the experimentation reveal that the standard deviations are less than 95.3 μs and 102.7 μs with maximum errors equal to 0.41 % and 0.44 % respectively. Thereby, the proposed dispersed operating time control is performed. Findings indicate that the maximum errors for the operating time of the mechanical switch are less than 140 μs and 110 μs with ±0.85 % and ±0.42 % respectively. |
topic |
ultrasonic motor mechanical switch nonlinear behavior dispersed autoregressive process model |
url |
https://www.jvejournals.com/article/18234 |
work_keys_str_mv |
AT xiaoniuli dispersedoperatingtimecontrolofamechanicalswitchactuatedbyanultrasonicmotor AT zhiyuanyao dispersedoperatingtimecontrolofamechanicalswitchactuatedbyanultrasonicmotor AT lifengzhou dispersedoperatingtimecontrolofamechanicalswitchactuatedbyanultrasonicmotor AT shenglizhou dispersedoperatingtimecontrolofamechanicalswitchactuatedbyanultrasonicmotor |
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1725849738216996864 |