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1)  hysteresis compensation
磁滞补偿
1.
The hysteresis compensation method is studied.
研究了磁滞补偿控制的方法,建立了基于Jiles-Atherton模型的磁滞补偿控制系统。
2)  time delay compensation
时滞补偿
1.
The characteristics and shortcomings of traditional time delay compensation method were clarified,and the time delay in wind-induced vibration control system of spatial latticed structure was compensated with combination of neural network technique and other compensation methods.
结合神经网络方法和传统补偿方法,研究空间结构风振控制系统的时滞补偿问题。
2.
The phase shift method for time delay compensation is described and studied numerically for magnetorheological fluid damper(MRFD) systems as well as actively controlled systems under different conditions.
控制系统中的时滞现象成为影响控制效果的不可忽视的因素,采用移相法对磁流变阻尼控制系统的算法进行仿真计算,分析在不同情况下移相法对磁流变阻尼控制系统的时滞补偿效果,并与主动控制系统进行比较。
3.
An improved neural network time delay compensation method for the wind-induced vibration control of spatial latticed structures was developed,based on the neural network strategy and state predictive compensation technique.
构造了基于神经网络的多步预测时滞补偿策略。
3)  time-delay compensation
时滞补偿
1.
Modal control and time-delay compensation of linear systems;
线性系统模态控制及其时滞补偿
2.
A multiple-step prediction compensation method based on discrete state feedback networked controlled system model and the corresponding realizations of time-delay compensation by setting up buffers in the actuator are put forward in this paper.
本文基于离散的状态反馈网络化控制系统,提出了一种基于对象模型的多步预测补偿方法,通过在执行器端设置消息缓冲的办法实现时滞补偿的策略。
3.
A time-delay compensation design for dynamic matrix control (DMC) is presented for the difficulty of controlling large-time-delay object and the application of advanced control algorithm.
考虑到大时滞对象的难控制性与先进控制算法的应用问题,提出了一种具有时滞补偿特性的动态矩阵控制(DMC)设计方法。
4)  delay compensation
时滞补偿
1.
A numerical example of real-time substructure testing with delay compensation shows that the accuracy and the convergence speed of the delay estimation method and the effect of delay compensation are rather satisfactory.
实时子结构试验时滞补偿算例表明,所提出的估计方法的精度、反应速度和时滞补偿效果都比较理想。
5)  hysteresis compensation
迟滞补偿
6)  time lag compensation
时滞补偿
1.
A self-learning neural network time lag compensation and fuzzy control approach to the controlled uncertain objects with time lag is presented in this paper.
本文对具有时滞的不确定性控制对象提出了一种神经网络时滞补偿模糊自学习控制方法。
补充资料:磁补偿材料


磁补偿材料
magnetic compensation materials

引匕IJc目ang col!旧。磁补偿材料(magnetieeotnpensationma-terials)补偿因温度变化而引起的磁路磁通变化的材料。含有永久磁铁的磁路,气隙磁通常随温度而变化,精密仪表需进行温度补偿,即磁补偿。常用的磁补偿合金有Ni一Fe,Ni一Cu和Ni一Fe一Cr等。仪表的使用温度一般为室温左右。磁补偿材料的居里温度就在室温附近。因此,当温度升高时,鱼是经尧五降‘为了得到良好的补偿,应选用磁导率与温度成线性关系的区域。不同的磁补偿合金有不同的线性区,分别适用于不同的温度范围。例如在20一80’C范围内选用31:69的Ni一Fe合金,在一20一40℃范围内选用30:70的Ni一Fe合金。在o~一40℃范围内选用掺Cr的Ni一Fe合金。当Ni、Fe、C:的比例为31:61:8时,在上述磁导率与温度成线性关系的温度范围内使用,该磁补偿合金的磁导率基本上随温度升高而线性地下降,可以用来设计出良好的磁补偿分路。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条