电磁悬浮

  • 网络Electromagnetic levitation;ems;eml;Electromagnetic Suspension EMS
电磁悬浮电磁悬浮
  1. 与常导电磁悬浮系统相比,高温超导混合悬浮系统在降低能耗、增大悬浮气隙及节约成本方面具有很大的优势,已逐渐开始被国内外学者所关注研究。

    Compared with traditional EMS , the High Temperature Superconductor hybrid EMS has following advantages , reducing energy consumption , increasing suspension gap and saving cost .

  2. 基于DSP和PWM技术的电磁悬浮隔振系统

    Electromagnetic Suspension Vibration Isolation System Based on DSP and PWM Techniques

  3. 模糊PID控制在电磁悬浮平台中的应用

    Application of fuzzy-PID control to electromagnetic suspension platform

  4. 电磁悬浮熔炼(TbDy)Fe2合金的耦合生长

    Coupled Growth of ( TbDy ) Fe_2 Alloys under Electromagnetic Levitation Melting

  5. 真空电磁悬浮测定(TbDy)Fe2合金高温热辐射系数

    Emissivity of ( TbDy ) Fe_2 Alloy by Vacuum Electromagnetic Levitation Measurement

  6. 针对电磁悬浮(EMS)型磁浮列车用凸极直线同步电机定子和转子齿槽不连续分布的特点,提出一种基于解析的驱动力和悬浮力计算新方法。

    Considering the alveolus discontinuous distribution of stator and rotor in salient pole synchronous motor applied to electromagnetic suspension ( EMS ) maglev train , a novel analytical computation method of thrust force and levitation force was put forward .

  7. 特斯拉基于气压输送管的概念,采用电磁悬浮技术发展了Hyperloop项目。

    The Hyperloop , developed by Tesla through electromagnetic levitation technology , is based on a pneumatic tube concept .

  8. 电磁悬浮转子微陀螺(MGELR)是一种新型的角速率传感器,它和传统机械陀螺具有相同的工作机理。

    Micromachined gyroscope with electromagnetically levitated rotor ( MGELR ) is a new kind of an-gular rate sensor , which has the same working mechanism as traditional mechanical gyroscope .

  9. 运用有限元法对太阳电池硅片电磁悬浮熔炼离心铸造(ELCC)技术中成形模具的稳态温度场进行了计算机模拟。

    Omputer simulation of the temperature field of the mold , which is used for producing the low cost solar cell silicon sheet with the Electromagnetic Levitation-melt Centrifugal Casting ( ELCC ) technology , is carried out with the finit element method .

  10. 一种无位置传感器的四极电磁悬浮系统控制方法

    A Control Method for 4-Pole Electromagnetic Suspension System without Gap Sensor

  11. 电磁悬浮技术中导体元受电磁力的计算

    Calculation of Electromagnetic Force Suffered by Conductor Element in Electromagnetic Levitation

  12. 我从来没见过用于单车上的电磁悬浮。

    I 've never seen electro-mag suspension on a bike before .

  13. 电磁悬浮熔炼系统的结构及其悬浮力的研究

    On the construction of electromagnetic levitation melting system and levitating force

  14. 电磁悬浮熔炼试样的最低温度计算分析

    Calculation and Analysis of Minimum Temperature in Electromagnetic Levitation Melting

  15. 电磁悬浮控制系统磁场有限元分析

    A Finite Element Analysis of Magnetic Field of Electromagnetic Suspension Control System

  16. 镁合金电磁悬浮连续铸造过程数值模拟

    Numerical Simulation of Electromagnetic Suspension Continuous Casting of Magnesium Billets

  17. 电磁悬浮轴承刚度和阻尼设计磁悬浮轴承的原理

    Design of Electromagnetic Bearing Stiffness and Damping THE PRINCIPLE OF MAGNETIC SUSPENSION BEARING

  18. 高频电磁悬浮熔炼的设计与实践

    Design and practice of high frequency electromagnetic levitation melting

  19. 液体密度的电磁悬浮测试技术研究

    Magnetic suspension technique for measuring the density of liquids

  20. 电磁悬浮转子的非线性控制

    Nonlinear Control for the Electromagnetic Suspension of a Rotor

  21. 电磁悬浮平台系统的滑模控制研究

    Research on Sliding Mode Control for Electromagnetic Suspension Platform

  22. 以导向系统的线性化模型为基础进行电磁悬浮气隙控制器设计。

    According to the linear model , the levitation air-gap controller is designed .

  23. 电磁悬浮熔炼离心铸造设备的研制

    Development of the electromagnetic levitation melt centrifugal casting apparatus

  24. 直流磁场控制电磁悬浮熔炼旋转稳定性的理论分析

    Theory analysis of steady magnetic field on rotational stability of electromagnetic levitation melting

  25. 电磁悬浮隔振系统控制方法

    The Control Method for Electromagnetic Suspension Vibration Isolation System

  26. 常导电磁悬浮动态特性研究具有反馈控制的电磁悬浮体的动力稳定性

    Dynamic Characteristics of Electromagnetic Levitation Systems Dynamic Stability of Electromagnetic Levitation with Feedback Control

  27. 电磁悬浮式微驱动器的有限元分析研究

    Finite element analysis of an electromagnetic levitation micro-actuator

  28. 太阳能级硅的电磁悬浮熔炼

    Levitation melting of solar - grade silicon material

  29. 为电磁悬浮设计线圈提供一种简明的计算方法。

    A simple calculation method for design coil of electromagnetic levitation is put forward .

  30. 电磁悬浮微驱动器的快速跟踪模糊控制

    Fast track Fuzzy Control of Electromagnetic Levitation Micro-actuator