外文翻译-外地弱化永磁电机设计方法.doc
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1、Field Weakening of Permanent Magnet Machines Design ApproachesT. A. Lipo and M. AydinElectrical and Computer Engineering Department University of Wisconsin-Madison 1415 Engineering Drive Madison, WI 53706-1691, U.S.A Email: lipoengr.wisc.eduCaterpillar Inc. Technical Center TC-G 855 P.O. Box 1875 Pe
2、oria, IL, 61656-1875, USA Email: aydin_metinAbstract - Permanent Magnet (PM) machines have been developed for numerous applications due to their attractive features especially after the development of NdFeB magnets. However, their complicated control lets the researchers develop new machine structur
3、es with easy field control. New alternative PM machine topologies with field weakening or hybrid excitation have been introduced in the literature for years to eliminate the effects of problems associated with the cumbersome field weakening techniques used in conventional PM machines. This paper rev
4、iews the field weakening of PM machines covered from machines perspective. Machine structures and features of each structure are clarified for both radial and axial airgap PM machines studied thus far. I. INTRODUCTION Demand for more compact, efficient and cheaper electric machines has grown tremend
5、ously during the last decade. Meanwhile, a great progress has been achieved not only in the development of permanent magnets but in the area of electric machine design and power electronics as well. Therefore, PM machines have been drawing more and more attention. Development of magnet technology ha
6、s allowed increased power/torque density and efficiency of the PM machines. Especially with the use of NdFeB magnets, the PM machines have reached the highest efficiency and power density levels in the 90s. They areusually more efficient because of the fact that field excitation losses are eliminate
7、d. In addition, copper losses in general are reduced in PM machines compared to conventional machines. In other words, due to lower losses, heating of the PM machines will be less, which can result either run the machine at low temperatures or to increase the shaft power so that the maximum allowabl
8、e temperature has been reached. As far as the power electronics is concerned, less power from the converter is required to deliver the same power to the machine because of the high efficiency of the PM machines. Air gap flux control of PM machines can generally be accomplished by two means: control
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