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Magnetic bearing
Development and Testing of an Axial Halbach Magnetic Bearing
Dynamic Suspension Modeling of an Eddy-Current Device: an Application to Maglev
Universidade Federal Do Rio De Janeiro 2017
Non-Dimensional Design Approach for Electrodynamic Bearings
Superconducting Magnetic Bearings Simulation Using an H-Formulation Finite Element Model
Magnetic Guidance for Linear Drives
Test and Theory of Electrodynamic Bearings Coupled to Active Magnetic Dampers
Design of a Lorentz, Slotless Self-Bearing Motor for Space Applications
Analysis and Design of a Maglev Permanent Magnet Synchronous Linear Motor to Reduce Additional Torque in Dq Current Control
Superconducting Magnetic Bearings
Effects of Operational Losses in Active Magnetic Bearing Designs
Hyperloop Integration to Reach the NOAH Concept
3.2 Principle of Magnetic Suspension
Analysis and Modeling of the Eds Maglev System Based on the Halbach Permanent Magnet Array
Linear Drives for Industry Applications LDIA2005
Controller Design for Magnetic Levitation System
Research Areas in Space
The Effect of Magnetic Bearing on the Vibration and Friction of a Wind Turbine
Top View
Research and Development Concerning Superconducting Maglev and Research on Applying Superconducting Maglev Technology to the Conventional Railway System
Appendix B Acronyms and Abbreviations
Force Analysis of Linear Induction Motor for Magnetic Levitation System
An Overview on Aerospatiale Magnetic Bearing Products for Spacecraft Attitude Control and for Industry
Electromagnetic and Magnetic Suspension
Flywheel Energy Storage System with Homopolar Electrodynamic Magnetic Bearing*
Magnetic Bearing with Uniaxial Control Using Magnetic, Electrodynamic and Electromagnetic Levitation
Impact-Rubbing Dynamic Behavior of Magnetic-Liquid Double Suspension Bearing Under Different Protective Bearing Forms
Proceedings of the Third Cryocooler Conference
Eddy Currents in a Passive Magnetic Axial Thrust Bearing for a Flywheel
Practical Issues in the Use of Ndfeb Permanent Magnets in Maglev
Controller Design for Magnetic Levitation System
A Stable Sub-Orbital Permanent Structure Based on Readily Attainable Technological Advancements
Development of a Compact, Light Weight Magnetic Bearing
Heat Rejection Concepts for Radioisotope Power Systems (RPS) on the Lunar Surface
Fueling a Clean Energy Future BASIC Science Futures Report
World Congress on Superconductivity Volume I
DISCUSSION D. L. Taylor1 the Authors Have Made a Significant Contribution to the Literature Concerning Magnetic Bearings. the Re
Design and Development of a Compact Magnetic Bearing Momentum Wheel for Micro and Small Satellites
Analysis and Optimization of Permanent Magnet Dimensions in Electrodynamic Suspension Systems
A Multi-Domain Approach to the Stabilization of Electrodynamic Levitation Systems
Electrodynamic Passive Magnetic Bearing Using Reluctance Forces
Barajas Solano2017.Pdf
Integrated Design of a High Speed Magnetic Levitated Brushless Direct Current Motor System
Modeling and Analysis of the Eds Maglev System with the Halbach Magnet Array
SPACECRAFT ENERGY STORAGE SYSTEMS Satcon Technology Corporation • 6245 E
Reluctance Force Magnetic Suspension Characteristics and Control for Cylindrical Rotor Bearingless Motors
General Explanation of How Magnetic Bearings Work
Calculation and Evaluation of Load Performance of Magnetic Levitation System in Medium-Low Speed Maglev Train
Bibliographic Reference of Magnetic Levitation and Linear Electric Motors Patents