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The Use of Permanent-Magnet Machines in Ship Electrical Systems

机译:永磁电机在船舶电气系统中的使用

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摘要

AbstractShips are autonomous objects in which the capacity of the power plant and volume of available space are limited. Permanent-magnet machines with the maximum coefficient of efficiency and minimum mass and dimensions can be widely used on the ships, first of all, in high-power ship systems—generator sets, propulsion systems, and thrusters. However, there is a danger of fire during interturn faults in the stator winding in permanent-magnet machines. If such a fault occurs in the standard operating mode, then, when the rotor turns by inertia or, under the action of slowing water flow, moves to the propeller in the closed circuit of the stator winding, an electromotive force will be induced since the magnetic field of the rotor remains. This electromotive force will produce a current in the closed circuit, and a large amount of heat will be released in the winding-fault area, which can lead to a fire on the ship. This article considers a method of “damping” of the magnetic field in the rotor in an emergency situation. In this method, the magnetic system of the rotor is made of two parts, one of which is fixed on the rotor, while the second is installed on the rotary sleeve. In the normal condition of the machines, the angular positions of the analogous poles fixed on the rotor and installed on the rotary sleeve coincide. In the emergency condition of the machine, the sleeve turns so that the angular positions of the opposite poles of the rotor and sleeve coincide. As a result, the induction of the magnetic field in the gap and the electromotive force in the stator windings in the emergency condition of the machine will be close to zero.
机译: Abstract 船舶是自治的对象,其中电厂的容量和可用空间的数量受到限制。具有最高效率系数,最小质量和最小尺寸的永磁电机可广泛用于船舶上,首先,可用于大功率船舶系统(发电机组,推进系统和推进器)中。然而,在永磁电机的定子绕组的匝间故障期间存在着火的危险。如果在标准运行模式下发生此类故障,则当转子因惯性转动或在减缓水流的作用下,在定子绕组的闭路状态下移动至螺旋桨时,会产生电动势,因为转子的磁场仍然存在。这种电动势将在闭合回路中产生电流,并且在绕线故障区域会释放大量热量,这可能会导致船舶起火。本文考虑了一种在紧急情况下“抑制”转子中磁场的方法。在这种方法中,转子的磁系统由两部分组成,其中一部分固定在转子上,而第二部分安装在旋转套筒上。在机器的正常状态下,固定在转子上并安装在旋转套筒上的类似极的角位置重合。在机器紧急情况下,套筒会旋转,以使转子和套筒相对极的角位置重合。结果,在机器紧急情况下,间隙中的磁场感应和定子绕组中的电动势将接近于零。

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