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Design and analysis of dual wound machine for electric ships

机译:电动船舶双绞伤机的设计与分析

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Integrated full electric propulsion systems eliminate the direct mechanical coupling between the prime mover and the propeller, enabling easier connection of multiple prime movers and allowing more equitable and fuel-efficient engine loading. These features are important in both cruise ship and naval warship design. Propulsion and ship service systems require different electrical ratings. The general solution is to use multiple electrical machine sets. To approach the most compact design and maximise the weight reduction, a dual wound machine is considered in this paper. It has dual two-layer windings which share the same slots and uses one prime mover, to produce two independent power supplies. This paper designs a dual wound machine with no electromagnetic coupling due to the airgap fields, by algebraically analyzing the harmonic distribution. Further verification of the nil electro-magnetic coupling due to both the airgap and slot leakage fluxes is provided by 2D finite element modeling. Both loaded and unloaded conditions are considered.
机译:集成的全电动推进系统消除了原动机和螺旋桨之间的直接机械耦合,使多个主要移动器的连接更容易连接,并允许更公平和省油的发动机负荷。这些功能在游轮和海军战舰设计中都很重要。推进和船舶服务系统需要不同的电气额定值。通用解决方案是使用多个电机组。为了接近最紧凑的设计并最大限度地减轻重量,本文考虑了双绞伤机。它具有双层绕组,其共用相同的插槽并使用一个主要动力,产生两个独立的电源。本文通过代数分析谐波分布,设计了一种具有由于气隙磁场而没有电磁耦合的双绞伤机。通过2D有限元建模提供由于气隙和槽漏通量引起的NIL电磁耦合的进一步验证。考虑了加载和卸载条件。

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