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A Rotational and Straight-line Drive System for Vehicles Levitated though Superconductor Flux Pinning

机译:用于车辆的旋转和直线驱动系统通过超导体磁通钉扎

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摘要

The use of bulk high temperature superconductor material has been proposed for various non-contact transportation systems. Commonly, such systems use permanent magnets to achieve levitation of a vehicle housing bulk superconductors, with motive force provided separately. Recent work has focused on using electromagnets to provide both the levitation, and the motive force. Through energizing appropriately placed electromagnets in a correct pattern, straight line travel and rotation across a horizontal plane are possible.However, significant overshoot and instability can be incurred during motion events, leading to changes in the flux pinning state and misalignment of a vehicle. This paper proposes the design of a planar array of electromagnets and an energization pattern that achieves controlled rotation. Straight line travel is also achieved.Thus, using the proposed drive system, straight-line travel as well as rotation of a levitated vehicle across a horizontal plane is possible. Experimental verification is provided.
机译:已经提出将块状高温超导体材料用于各种非接触式运输系统。通常,这样的系统使用永磁体来实现车辆壳体的散装超导体的悬浮,并单独提供动力。最近的工作集中在使用电磁体同时提供悬浮力和动力。通过以适当的模式给适当放置的电磁体通电,可以在水平面上直线移动和旋转,但是在运动过程中可能会导致明显的过冲和不稳定性,从而导致磁通钉扎状态发生变化和车辆未对准。本文提出了电磁体平面阵列和实现受控旋转的通电模式的设计。也可以实现直线行驶。因此,使用建议的驱动系统,可以直线行驶以及悬浮车辆在水平面上的旋转。提供了实验验证。

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