摘要
为对一款实验所用的定制电磁作动器进行数学建模,对电磁作动器进行大量实验和测量来采集信号数据,并通过将数据进行降噪处理和积分转换等方法分析研究了电磁作动器输入输出信号,研究拟合其数据结果,建立了此电磁作动器的数学模型。结果表明,建立的直观表达输入输出信号之间关系的电磁作动器数学模型满足后续工程使用要求。
In order to build a mathematical model of a custom-made electromagnetic actuator which is used in the experiment,a large number of experiments and measurements were carried out to collect the signal data,and the input and output signals of the electromagnetic actuator.The signals were analyzed and studied by means of noise reduction processing and integral conversion,and the data results were studied and fitted,and the mathematical model of the electromagnetic actuator was established.Results show that a mathematical model of electromagnetic actuator is established to express the relationship between input and output signals intuitively,and meets the requirements of subsequent engineering.
作者
杜闻
王志乾
沈铖武
刘绍锦
杨文昌
李勤文
宋卓达
DU Wen;WANG Zhi-qian;SHEN Cheng-wu;LIU Shao-jin;YANG Wen-chang;LI Qin-wen;SONG Zhuo-da(Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Sciences,Changchun 130033,China;School of Materials Science and Opto-electronics Technology,University of Chinese Academy of Sciences,Beijing 100049,China)
出处
《科学技术与工程》
北大核心
2020年第26期10795-10800,共6页
Science Technology and Engineering
基金
吉林省技术攻关项目(20190302086GX)
吉林省科技攻关计划(20170204050GX)。
关键词
电磁作动器
减振控制
信号处理
相位差
振动幅值
electromagnetic actuator
vibration damping control
signal processing
phase difference
vibration amplitude