徐志伟

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教授 博士生导师

招生学科专业:
仪器科学与技术 -- 【招收博士、硕士研究生】 -- 航空学院
机械 -- 【招收博士、硕士研究生】 -- 航空学院

毕业院校:西安交通大学

学历:西安交通大学

学位:工学博士学位

所在单位:航空学院

办公地点:南京航空航天大学明故宫校区航空学院 A18-911室

联系方式:手机:013814066350 办公室电话:025-84893466-188 电子邮箱:zhwxu@nuaa.edu.cn

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Adaptive feedforward compensating self-sensing method for active flutter suppression

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所属单位:航空学院

发表刊物:Sensors

摘要:A single piezoelectric patch can be used as both a sensor and an actuator by means of the self-sensing piezoelectric actuator, and the function of self-sensing shows several advantages in many application fields. However, some problems exist in practical application. First, a capacitance bridge circuit is set up to realize the function of self-sensing, but the precise matching of the capacitance of the bridge circuit is hard to obtain due to the standardization of electric components and variations of environmental conditions. Second, a local strain is induced by the self-sensing actuator that is not related to the global vibration of the structure, which would affect the performance of applications, especially in active vibration control. The above problems can be tackled by the feedforward compensation method that is proposed in this paper. A configured piezoelectric self-sensing circuit is improved by a feedforward compensation tunnel, and a gain of compensation voltage is adjusted by the time domain and frequency domain’s steepest descent algorithms to alleviate the capacitance mismatching and local strain problems. The effectiveness of the method is verified in the experiment of the active vibration control in a wind tunnel, and the control performance of compensated self-sensing actuation is compared to the performance with capacitance mismatching and local strain. It is found that the above problems have negative effects on the stability and performance of the vibration control and can be significantly eliminated by the proposed method. © 2018 by the authors. Licensee MDPI, Basel, Switzerland.

ISSN号:1424-8220

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发表时间:2018-10-13

合写作者:Wang, Yizhe

通讯作者:徐志伟