State of the art in electric propulsion — viewpoint on redundancy

S. Kanerva, J. Hansen
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引用次数: 18

Abstract

Available solutions for redundancy in electric propulsion are outlined, emphasizing their benefits and drawbacks. Two different state-of-the art solutions of redundant electric propulsion are presented. The first example is a cruise ship with two azimuthal thrusters, both of which are equipped with 18 to 21 MW dual-stator synchronous motors and driven by two voltage source inverters (VSI) in a redundant configuration. The phase shift between the stator windings in each motor is 30 degrees, and the motors can also operate with only one stator system in case that another system is lost. The second example is LNG carriers, where one propeller is driven through a gearbox by two 12 to 15 MW dual-stator synchronous motors. The motors are supplied by VSI-type frequency converters with double inverter units and supply units, allowing each motor to operate in half power mode in case of a fault in any of these modules. The both configurations provide 75% redundancy in case of the most common single faults without notably increasing the cost and complexity of the system.
电力推进技术的发展现状——冗余的观点
概述了电力推进系统中可用的冗余解决方案,强调了它们的优点和缺点。提出了两种不同的冗余电力推进方案。第一个例子是一艘有两个方位推进器的游轮,这两个推进器都配备了18到21兆瓦的双定子同步电机,并由两个冗余配置的电压源逆变器(VSI)驱动。每个电机定子绕组之间的相移为30度,并且在另一个系统丢失的情况下,电机也可以只使用一个定子系统运行。第二个例子是液化天然气运输船,其中一个螺旋桨由两个12至15兆瓦的双定子同步电机通过变速箱驱动。电机由带有双逆变器单元和供电单元的vsi型变频器提供,允许每个电机在任何这些模块故障的情况下以半功率模式运行。这两种配置在最常见的单个故障情况下提供75%的冗余,而不会显著增加系统的成本和复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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