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Design and Analysis of Passive Homopolar

机译:被动同质极的设计与分析

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Electrodynamic Maglev systems (EDSs) and passive magnetic bearings (PMBs) generate magnetic forces by induction through the movement of permanent or superconducting magnets past conducting coils. Nearly all EDSs and PMBs use a null flux coil exposed to changing magnetic fields in the rotation or travel direction. An unusual variant eliminates discrete coils by using field structures that do not vary in the direction of rotation. We discuss the design and analysis of this homopolar variant in this paper. We believe that this is the first combined passive damper/axial support bearing, and we present here the first generalized solution of its governing equations. Actuated brushes during motoring and generating simplify energy exchange when the device is used for flywheel energy storage.
机译:电动磁悬浮系统(EDS)和无源磁轴承(PMB)通过永磁体或超导磁体经过导电线圈的运动而感应产生磁力。几乎所有EDS和PMB都使用零通量线圈,该线圈会暴露在旋转或行进方向上变化的磁场中。一个不寻常的变体通过使用沿旋转方向不变的场结构消除了离散的线圈。我们在本文中讨论了这种同极性变体的设计和分析。我们相信这是第一个组合式被动阻尼器/轴向支撑轴承,并且在这里我们提出了其控制方程式的第一个广义解。当设备用于飞轮储能时,在驱动过程中产生电刷可以简化能量交换。

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