System Identification and Mathematical Modeling of A Piezoelectric Actuator through A Practical Three-Stage Mechanism

被引:2
作者
Levy, Dror A. [1 ]
Shapiro, Amir [1 ]
机构
[1] Ben Gurion Univ Negev, Dept Mech Engn, IL-84105 Beer Sheva, Israel
关键词
amplification mechanism; analytical models; hysteresis; modelling; piezoelectric actuators; system identification; PARAMETER-IDENTIFICATION; HYSTERESIS COMPENSATION; PIEZOCERAMIC ACTUATOR; TRACKING CONTROL; MODAL-ANALYSIS; VIBRATION; DESIGN; ALGORITHMS;
D O I
10.3390/mi14010088
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Piezoelectric elements (PEMs) are used in a variety of applications. In this paper, we developed a full analytical model and a simple system identification (SI) method of a piezoelectric actuator, which includes piezostack elements and a three-stage amplification mechanism. The model was derived separately for each unit of the system. Next, the units were combined, while taking into account their coupling. The hysteresis phenomenon, which is significant in piezoelectric materials, is described extensively. The theoretical model was verified in a laboratory setup. This setup includes a piezoelectric actuator, measuring devices and an acquisition system. The measured results were compared to the theoretical results. Some of the most well-known forms of system identification are shown briefly, while a new and simple algorithm is described systematically and verified by the model. The main advantage of this work is to provide a solid background and domain knowledge of modelling and system identification methods for further investigations in the field of piezoelectric actuators. Due to their simplicity, both the model and the system identification method can be easily modified in order to be applied to other PEMs or other amplification mechanism methods. The main novelty of this work lies in applying a simple system identification algorithm while using the system-level approach for piezoelectric actuators. Lastly, this review work is concluded and some recommendations for researchers working in this area are presented.
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页数:18
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共 62 条
[51]   N4SID - SUBSPACE ALGORITHMS FOR THE IDENTIFICATION OF COMBINED DETERMINISTIC STOCHASTIC-SYSTEMS [J].
VANOVERSCHEE, P ;
DEMOOR, B .
AUTOMATICA, 1994, 30 (01) :75-93
[52]  
Verboven P., 2002, THESIS U BRUSSELS BR
[53]   Two-State GMS-based Friction Model for Precise Control Applications [J].
Villegas, Fernando ;
Lorenzo Hecker, Rogelio ;
Pena, Miguel .
INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING, 2016, 17 (05) :553-564
[54]  
Ward Heylen., 1998, Modal Analysis Theory and Testing, V2nd
[55]  
Wischnewski M., 2021, P ACTUATOR INT C EXH, P1
[56]   System identification: a multi-signal approach for probing neural cardiovascular regulation [J].
Xiao, XS ;
Mullen, TJ ;
Mukkamala, R .
PHYSIOLOGICAL MEASUREMENT, 2005, 26 (03) :R41-R71
[57]   Robust Disturbance Observer for Two-Inertia System [J].
Yun, Jong Nam ;
Su, Jianbo ;
Kim, Yong Il ;
Kim, Yong Chun .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2013, 60 (07) :2700-2710
[58]  
Zadeh L. A., 1956, IRE Transactions on Circuit Theory, V3, P277, DOI DOI 10.1109/TCT.1956.1086328
[59]   Experimental-Analytical Qualification of a Piezoelectric Mechanism for a Critical Space Application [J].
Zanoni, Carlo ;
Bortoluzzi, Daniele .
IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2015, 20 (01) :427-437
[60]   A Friction-Inertial-Based Rotary Motor: Design, Modelling and Experiments [J].
Zhang, Bo ;
Chen, Fangxin ;
Li, Haiyang ;
Du, Zhijiang ;
Sun, Lining ;
Dong, Wei .
MATERIALS, 2018, 11 (06)