首页> 外国专利> Method for Control of Support Gaps for a Magnetic Levitation Vehicle and Magnetic Levitation Vehicle with a Control Circuit Operating with Said Method

Method for Control of Support Gaps for a Magnetic Levitation Vehicle and Magnetic Levitation Vehicle with a Control Circuit Operating with Said Method

机译:用于控制磁悬浮车辆的支撑间隙的方法以及具有以所述方法运行的控制电路的磁悬浮车辆

摘要

A method and a magnetic levitation vehicle operating with this method are described. For the control of support gaps (10a, 10b) that are formed during operation of the magnetic levitation vehicle (1) between a track (2, 3, 4) and a number of carrying magnets (6a, 6b) fastened to said magnetic levitation vehicle (1) and provided with windings (16a, 16b), wherein at least two carrying magnets (6a, 6b) in adjacent positions act upon a suspension frame (8) of said magnetic levitation vehicle (1), the electrical currents flowing through the windings (16a, 16b) are so controlled that the support gaps (10a, 10b) between these two carrying magnets (6a, 6b) and the track (2, 3, 4) adopt pre-determined nominal values (na, nb). In accordance with the invention and in case that the currents through the windings (16a, 16b) of the adjacent carrying magnets (6a) are different under normal conditions, the nominal values (na, nb) for the support gaps (10a, 10b) are altered such that the current through the windings (16a or 16b) of a carrying magnet (6a, 6b) with the lower electric current is increased and/or the electric current through the winding (16b and/or 16a) of a carrying magnet (6b, 6a) with the larger electric current is reduced (FIG. 2).
机译:描述了一种方法和使用该方法操作的磁悬浮车辆。为了控制磁悬浮运行过程中形成的支撑间隙( 10 a ,10 b )轨道( 2、3、4 )和多个承载磁铁( 6 a 1 ) > ,6 b )固定在所述磁悬浮车( 1 )上并带有绕组( 16 a ,16 b ),其中至少两个承载磁体( 6 a ,6 b )在相邻位置作用在所述磁悬浮车( 1 )的悬架( 8 )上,控制流过绕组( 16 a ,16 b )的电流以使支撑间隙(这两个携带磁铁( 6 10 a ,10 b > a ,6 b )和轨道( 2、3、4 )采用预定的标称值(na, nb)。根据本发明并且在流过绕组( 16 a ,16 b )的电流的情况下相邻的承载磁体( 6 a )在正常情况下是不同的,支撑间隙的标称值(na,nb)( 10 < I> a ,10 b )经过更改,以使流经绕组的电流( 16 a 16 b )的携带磁体( 6 a ,6 <具有较低电流的I> b )和/或通过绕组( 16 b 和/或 16 a )的承载磁体( 6 b ,6 a )较大的电流会减小(图 2 )。

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