1)AMB主动磁力轴承
1.A fuzzy control scheme with a fitted modifying factor was proposed according toinherent characteristicsand performance requirementof active magnetic bearings(AMB).结合主动磁力轴承(AMB)自身特性和性能需要,提出了一种拟合修正因子模糊控制器设计方法。
2.Active magnetic bearings(AMB) are controlled by PID controllers in general.主动磁力轴承通常采用PID控制,但由于磁力轴承具有高度的非线性,传统的PID参数整定方法往往效果不佳。
3.Active magnetic bearing (AMB) is a kind of novel high-performance bearing, in which rotor can be suspended stably by controllable magnetic force and realize no mechanical contact completely between rotor and stator.主动磁力轴承是利用受控电磁力将转子稳定悬浮在空中,实现转子和定子之间无机械接触的一种新型高性能轴承。
英文短句/例句
1.Study on the nonlinear dynamic rigidity characteristics of the initiative magnetic bearings主动磁力轴承非线性动刚度特性研究
2.Research on Related Theory and Technology of Fuzzy Control for AMB;主动磁力轴承模糊控制的相关理论与技术研究
3.Research and Design of Embedded Control System for Active Magnetic Bearings;主动磁力轴承的嵌入式控制系统设计与研究
4.Simulation in the Controller of Single Freedom Active Magnetic Bearing Based on MATLAB;基于MATLAB的单自由度主动磁力轴承控制器的仿真设计
5.Robust Control Algorithm Researching of Active Magnetic Bearing and Design of the Control System;主动磁力轴承鲁棒控制算法研究及其控制系统设计
6.Research on Rotor Position Self-sensing and Power Amplifiers of Active Magnetic Bearings;主动磁力轴承转子位置自检测及功率放大器的研究
7.Active Control on Vibration of Multi-Disc Flexible Rotor System Mounted on Magnetic Bearing;磁力轴承支承的多盘柔性转子系统主动控制
8.Studies on Nonlinear Dynamics of Rotor-Active Magnetic Bearings with Time-Varying Stiffness;变刚度主动电磁轴承非线性动力学研究
9.Research on Nonlinear Dynamics of Rotor-AMB System主动磁悬浮轴承-转子系统的非线性动力学研究
10.Research of Active Magnetic Bearing System of Wind Power Generator风力发电机主动磁悬浮轴承系统的研究
11.Research on Position Detection and Drive System for Active Magnetic Suspension Pushing Bearing主动式磁悬浮推力轴承位置检测和驱动系统研究
12.Structural Optimization Design and Electromagnetic Field Analysis for the Permanent Magnet Power Magnetic Bearing永磁型动力磁轴承结构优化设计及电磁场分析
13.Research on the AMB s Control Based on Neural Networks;基于神经网络的主动磁轴承控制研究
14.Fault Diagnosis of Displacement Sensors of Active Magnetic Bearing主动磁悬浮轴承位移传感器故障识别
15.Research on Mass Unbalance Compensation of Spindle Suspended by Positive Magnetic Bearing主动磁轴承转子质量不平衡补偿研究
16.Structure Design of Magnetic Bearing and Rotor Dynamics Analysis;电磁轴承结构设计与转子动力学分析
17.Nonlinear Dynamics of a Rotor Supported by Active Magnetic Bearings;电磁轴承—转子系统的非线性动力学
18.Study on Dynamic and Control Methods of Altra-precision Gas Magnetic Bearing Shafting;超精密气磁轴承轴系动力学及控制方法的研究
相关短句/例句
active magnetic bearing主动磁轴承
1.Finite Element Analysis of Electromagnetic Field of Active Magnetic Bearing Based on ANSYS;基于ANSYS的主动磁轴承电磁场的有限元分析
2.Neural network adaptive PID control of active magnetic bearings;主动磁轴承的神经网络自适应PID控制
3.A power amplifier circuit which applies to active magnetic bearing (AMB) was designed and was experimented in the debugging of singlefreedomdegree.讨论了一种新型的集成脉冲宽度调制开关功率放大器SA60,并与分立元器件开关功放进行了比较,设计了适用于主动磁轴承功放电路,进行了单自由度调试实验。
3)active magnetic bearings主动磁轴承
1.Research on active magnetic bearings control based on CMAC neural networks;基于CMAC神经网络的主动磁轴承控制研究
2.The principle and mathematic model of active magnetic bearings(AMB) were discussed in brief.简述了主动磁轴承的工作原理及数学模型,在传统系统辨识的基础上提出了基于BP神经网络的非线性辨识方案。
3.A structure of precision grinder gas-magnetic bearing spindle system is introduced and,static characteristics of gas-magnetic bearings and influence of electromagnetic force of active magnetic bearings are analyzed.介绍了一种精密磨床气磁轴承主轴系统的结构,分析了气磁轴承的静态特性及主动磁轴承电磁力的影响,并进行了计算机数值分析与仿真。
4)active magnetic bearing(amb)主动磁轴承
5)active magnetic thrust bearings主动型电磁推力轴承
1.This paper reasons about the analytical formulas of the carrying capacity, stiffness, damping and steady region of active magnetic thrust bearings.本文导出了主动型电磁推力轴承的承载能力、刚度、阻尼和稳定区域的解析表达式并对其进行了无量纲化计算,以PD和PID控制为例推导出调节参数与轴承设计参数、偏置电流的关系式和各种静、动力学特性曲线,为进一步研究多自由度控制的电磁轴承转子系统的动力学性能打下基础。
6)Magnetic bearing spindle磁力轴承主轴
延伸阅读
磁力线磁力线magneticforce,lineof图示磁场分布的虚设的有向曲线族。磁力线上每一点的切线方向与该点磁场(指磁感应强度B)的方向一致;磁力线的疏密表示各处磁场的强弱,磁力线越密集,磁场越强。磁力线不仅形象直观地描绘了磁场的空间分布,而且磁力线是闭合的、不中断、不交叉、等基本特征还反映了磁场无源有旋的性质,这也是磁力线与电力线的根本区别。当然,分立的曲线、粗糙的疏密不足以准确地描绘磁场的连续分布,磁力线只是近似的图示。与磁力线根数对应的严格的物理量是磁(感应)通量。M.法拉第在1831年前后提出了磁力线的概念。他认为,磁体和带电体周围存在着某种特殊的状态,他用磁力线和电力线描绘这种状态。他认为力线是物质的,是电磁作用的媒递物。他用力线来解释顺磁性、抗磁性和电容器插入电介质后电容增大以及电磁感应等一系列电磁现象,描绘出一幅近距的电磁作用图像。向当时占统治地位的超距作用观点挑战。这是法拉第的重要贡献。J.C.麦克斯韦就是在力线图像的启发下建立电磁场理论的。现已证实,电磁场是客观存在的特殊物质,力线已经退化为图示电磁场的工具。磁场强度H的空间分布,也可以用H线图示,甚至也称为磁力线,它与磁感应强度B空间分布有区别。
