Linear-motor topology

Linear-motor topology
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线性电机拓扑

DOI:
10.1049/piee.1973.0070
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发表时间:
1973
影响因子:
20.6
通讯作者:
E. Laithwaite
E. Laithwaite
中科院分区:
计算机科学1区
文献类型:
--
作者:
J. Eastham;E. Laithwaite

文献摘要

被引文献

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在旋转电动机中,工作磁通量通常被假设为基本上在径向平面中穿过气隙,并且在这方面,工作磁通量可以被称为“一维”。在横向磁通电机中,二维或三维磁通回路是可能的,并且可以构建的横向磁通电机的不同形状的数量远远大于仅使用一维时的数量。横向磁通机器发现他们最有吸引力的形式在直线电机,几个“家庭”的横向和纵向磁通机器进行了说明。这些包括电机设计有一个低漏抗,从50赫兹电源(因此,大polepitch)的高速电机馈电,并设计给横向稳定以及不使用额外的初级线圈系统的推力机器。
In rotating electric motors, the working magnetic flux is usually assumed to cross the airgap substantially in radial planes, and, in this respect, the working flux could be said to be ‘1-dimensional’. In transverse-flux machines, 2- or 3-dimensional flux loops are possible, and the number of different shapes of transverse-flux machine which can be built is far greater than when only one dimension is used. Transverse-flux machines find their most attractive forms in linear motors, and several ‘families’ of both transverse- and longitudinal-flux machines are described. These include motors designed to have a low leakage reactance, for high-speed machines fed from 50 Hz supply (and therefore of large polepitch), and machines designed to give lateral stabilisation as well as thrust without the use of an additional primary-coil system.