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Linear Electric Machines, Drives, and MAGLEVs Handbook

Langue : Anglais

Auteur :

Couverture de l’ouvrage Linear Electric Machines, Drives, and MAGLEVs Handbook

Based on author Ion Boldea?s 40 years of experience and the latest research, Linear Electric Machines, Drives, and Maglevs Handbook provides a practical and comprehensive resource on the steady improvement in this field. The book presents in-depth reviews of basic concepts and detailed explorations of complex subjects, including classifications and practical topologies, with sample results based on an up-to-date survey of the field.

Packed with case studies, this state-of-the-art handbook covers topics such as modeling, steady state, and transients as well as control, design, and testing of linear machines and drives. It includes discussion of types and applications?from small compressors for refrigerators to MAGLEV transportation?of linear electric machines. Additional topics include low and high speed linear induction or synchronous motors, with and without PMs, with progressive or oscillatory linear motion, from topologies through modeling, design, dynamics, and control.

With a breadth and depth of coverage not found in currently available references, this book includes formulas and methods that make it an authoritative and comprehensive resource for use in R&D and testing of innovative solutions to new industrial challenges in linear electric motion/energy automatic control.

Fields, Forces, and Materials for LEMs. Classifications and Applications of LEMs. Linear Induction Motors: Topologies, Fields, Forces, and Powers Including Edge, End, and Skin Effects. Linear Induction Motors: Circuit Theories, Transients, and Control. Design of Flat and Tubular Low-Speed LIMs. Transportation (Medium- and High-Speed) SLIM Design. DC-Excited Linear Synchronous Motors (DCE-LSM): Steady State, Design, Transients, and Control. Superconducting Magnet Linear Synchronous Motors. Homopolar Linear Synchronous Motors (H-LSM): Modeling, Design, and Control. Linear Reluctance Synchronous Motors: Modeling, Performance Design, and Control. Linear Switched Reluctance Motors (L-SRM): Modeling, Design, and Control. Flat Linear Permanent Magnet Synchronous Motors. Tubular Linear Permanent Magnet Synchronous Motors. Multi-Pole Coil Three- or Two-Phase Linear PM Reluctance Motors. Plunger Solenoids and Their Control. Linear DC PM Brushless Motors. Resonant Linear Oscillatory Single-Phase PM Motors/Generators. Multiaxis Linear PM Motor Drives. Attraction Force (Electromagnetic) Levitation Systems. Repulsive Force Levitation Systems. Active Guideway MAGLEVs. Passive Guideway MAGLEVs.

Boldea, Ion