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等效输入阻抗的英文

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"等效输入阻抗"怎么读用"等效输入阻抗"造句

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  • equivalent input impedance

例句与用法

  • This paper researches and analyses the developments of web technology and magnetostrictive transducers from world wide region . the paper also analyes the characteristics curve of magnetostrictive transducers based on its equivalent circuit and researches the method how to make sure its syntony frequency and its electric simulation network parameters . at the same time , by using jsp technology , a magnetostrictive transducer electric simulation application is designed based on b / s three - tier system structure . the experiment data is fitted by curve fitting module . the equivalent input impedance of it with stimulate loop is separated based on the results of curve fitting and the syntony frequency and electric simulation network parameters of magnetostrictive transducers is determined by the input impedance . the method presented in this paper can determine the syntony frequency and electric simulation network parameters of magnetostrictive transducers with a better accuracy than the testing method of syntony & anti - synton y . further more , jsp , the advanced technology at current , has been used to realize a magnetostrictive transducer web electric simulation system . the system has good human computer interface and the function of resource sharing and information publishing . the research of this paper and its achievements have some practical merits in the researchful and applied fields of magnetostrictive transducer
    用java编程语言编写的曲线拟合模块,对输入的实验数据进行了最小二乘法的曲线拟合;根据曲线拟合结果可从带激励线圈的磁致伸缩换能器的输入阻抗中分离出磁致伸缩换能器铁芯在无激励电流时由机械振动形成的等效输入阻抗,并由此输入阻抗确定磁致伸缩换能器的谐振频率及电气模拟网络参数。本课题提出的方法与传统的谐振?反谐振法相比,能更准确地确定磁致伸缩换能器的谐振频率及其电气网络参数。同时,采用当前比较先进的web技术,实现了基于jsp的磁致伸缩换能器web电气模拟系统,该系统具有良好的人机界面和资源共享、信息发布功能。
  • Under windows nt and labview development environment , using the linear fit module , exponential fit module > general polynomial fit module of labview to design a method for fitting the experiment data , the results of curve fitting indicate that the purpose of general polynomial fitting is better than the rest . separating the equivalent input impedance of magnetostrictive transducers without stimulate current from input impedance of it with stimulate loop based on the results of curve fitting , and determining the syntony frequency and electric simulation network parameters of magnetostrictive transducers by this input impedance . finally , with labview network functions , realizing magnetostrictive transducer electric simulation system based on web server and discussing a scheme for this system network by datasocket . the method of this paper can more accurately determine the syntony frequency and electric simulation network parameters of magnetostrictive transducers than the testing method of syntony & anti - syntony . at the same time , discussing virtual instrument measurement system and how to realize magnetostrictive transducer electric simulation network system by labview network functions of network virtual instrument measurement development environment
    在windowsnt系统环境和labview虚拟仪器技术开发平台下,首次利用labview中的直线拟合模块、指数拟合模块以及多项式拟合模块,设计了一种对实验所得数据进行曲线拟合的方法,对三种拟合方法进行了比较,曲线拟合结果表明,多项式拟合方法相对于其它两种拟合方法效果更好;根据曲线拟合的结果可从带激励线圈的磁致伸缩换能器的输入阻抗中分离出磁致伸缩换能器铁芯在无激励电流时机械振动形成的等效输入阻抗,并由此输入阻抗确定了磁致伸缩换能器的谐振频率及其电气模拟网络参数;最后通过labview提供的网络功能,实现了基于web服务器的磁致伸缩换能器电气模拟虚拟仪器测试系统,并探讨了通过datasocket技术实现该系统网络化的方案。
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