Linear electric machines, drives, and MAGLEVs Handbook
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According to the policy of Aristotle written in 360 BC. J.-C., a society worth living if it brings freedom and prosperity for its people. While technology is believed to be one of the main drivers of prosperity, Energy deficiency is a major concern on the way to a better quality of life. Electric power accounts for about 40% of the total energy used today because it improves industrial productivity and causes less Pollution. Electrical motion control in industry ultimately involves the conversion of electrical energy and control its flow. Linear Electromagnetic (LEM) machine realizes the conversion of electrical energy into mechanical energy of linear motion (or vice versa) directly by the electromagnetic force. Linear. Motion is very popular in the industry. The issues were invented in the 19th century; However, they Has the importance of industrial level in 1960 because of the need to use electronic power To control (in case there is no mechanical transmission).
The typical industry LEM application is as follows:
• Magnetic cargo trucks (eg "Transrapid" from Shanghai)
• Movers Urban People (for example, Dallasforth Aerial Suburban.
• Linear compressor electric motor
• X-Y flat motion industry platform
• Espresso coffee steam drivers
• Micro and speakers in mobile phones
• Zoom in digital cameras
• Linear generator for deep space tasks
• Locker Solenoids Hotel
• Solenoids power switch
Lemon is characterized by
• Low initial cost
• Higher reliability
• Less constant thrust (lighter vehicle: Lower wh / passenger / km)
• Best tracking of position (without games)
However, to work better than rotating electric motors with mechanical transmission, the necessary issue
Electronic power for linear position, speed and / or force. Continuous improvement of LISS since 1960 is associated with link structures, materials, modeling, designing and controlling methamphetamine methods ODS; However, the improved motivation of lemons since 2000 has invited us to write this new comprehensive and comprehensive book.This book is mainly dedicated to R & D's engineers and decisions in the industry. and high-end College students and graduates in electricity, mechanical, robot, electronic electronics, and technical control. It is mainly based on the author's extensive experience in this field (40 years), which includes five books in English published in 1976, 1985, 1987, 1996 and 2001, but also attracts recent strong contribution to the field worldwide. The book includes a guide and a monograph properties.Therefore, it covers a wide range of topics from simple to complex, from classification to actual topology, modeling, design, and control, and provides numerous case studies, 4,444 examples, and up-to-date field survey-based sample results. The content of the book, which consists of 22 chapters, clearly reflects this state of conflict (the manual and monograph) nature. Many thanks to my collaborators Sorin Agarlita, Ana Moldovan, Ana Maria Ungurean, Mircea Baba and Dragos Ursu, who understood the content and edited the text with all its aspects. tons and drawings, incorporate my corrections into the manuscript. Thanks also to the staff members of CRC Press / Taylor & Francis Group for their skill and patient support during the compilation of this book. Like any other book, this book reflects possibilities as well as limitations field stations. I hope it presents a balanced and thorough presentation, but in reality, treatment of topics focuses heavily on R&D efforts worldwide, but also gives due consideration to those Personal Contribution.
Book Title : Linear electric machines, drives, and MAGLEVs Handbook
Authors : Ion Boldea
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