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Properties of a Synchronous Machine with Self-Regulating Magnetic Suspension of the Rotor when Its Axis Is Skewed

机译:当轴线偏斜时,同步机的性能具有自调节转子的磁悬浮

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摘要

In this paper, the electromagnetic processes in a coreless synchronous machine with a superconducting excitation winding and a stator winding connected by a zero-flow scheme at a skewed rotor axis are considered. It is shown that, in conditions of “pure” nutation, the zero flow contours do not function, and this machine operates as an ordinary synchronous machine. In this regard, the moment of nutation is formed due to the interaction of the unperturbed stator current with the perturbed excitation field and is, therefore, dependent on the load angle. When the longitudinal (in the sense of Gorev) current of the stator changes sign, the moment of nutation also changes its sign and can become either stabilizing (reduce the angle of nutation) or destabilizing. The destabilizing nature of the moment of nutation can appear at small load angles. The basics of this machine theory are described.
机译:在本文中,考虑了具有超导激励绕组的无芯同步机中的电磁过程和通过在偏斜转子轴上连接的零流方案连接的定子绕组。结果表明,在“纯”螺母的条件下,零流轮廓不起作用,该机器用作普通同步机器。在这方面,由于不受干扰的定子电流与扰动激励场的相互作用,因此形成了询问的时刻,因此取决于负载角。当纵向(在Gorev感)的定子的电流发生变化标志时,询问的瞬间也改变了标志,可以变得稳定(减少核对角度)或稳定的稳定性。询问时刻的破坏性性质可以出现在小的负载角度下。描述了该机器理论的基础知识。

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