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Design optimisation of a slotless brushless permanent magnet DC motor with helically-wound laminations for underwater rim-driven thrusters

机译:用于水下轮辋驱动推进器的螺旋缠绕叠片的无槽无刷永磁直流电动机的设计优化

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摘要

Rim (or tip) driven thrusters with structurally integrated brushless PM motors are now an established technology with an increasing range of applications. In these thrusters, the stator of the motor is housed within the thruster duct, and the rotor forms a ring around the tips of the propeller. Such high pole number motors tend to be very thin radially, have very small axial length to diameter ratios, and have relatively large airgaps to accommodate corrosion protection layers on the surfaces of the rotor and stator. The relatively large diameter stator laminations of such machines tend, therefore, to have a very thin back of core and narrow teeth, which make them expensive and difficult to manufacture. This thesis proposes an alternative motor topology featuring a toothless stator whose laminations are manufactured from a single strip of steel that is edge wound into a spiral. The electromagnetic design of the motor was optimised for maximum efficiency for a given propeller torque and speed. The airgap flux density in was obtained from an analytical solution of Laplace and Poisson's equations of scalar magnetic potential. Electromagnetic torque was calculated for ideal square wave current distribution. Copper and core losses were estimated in the usual manner. Design of the machine was refined using transient finite element analysis, allowing for rotation of the rotor. The design optimisation revealed that there is an optimum radial thickness for the permanent magnet and number of poles at which the efficiency is maximum. A demonstrator machine was built and tested, and yield a 10% lower efficiency when compared with an existing slotted machine of the same diameter, with an increased volume in the slotless machine of 15%. A cost analysis yielded that the slotless edge-wound laminations are cheaper to manufacture than slotted laser-cut laminations, however the costs of the increased magnet material required are higher. This project has demonstrated a potential cost savings in the manufacture of laminations, however, for this specific thruster application the costs are offset by the need for more magnet material.
机译:带有结构集成式无刷PM电动机的轮辋(或叶尖)驱动推进器现已成为一项成熟技术,其应用范围越来越广。在这些推进器中,电动机的定子容纳在推进器导管内,并且转子在螺旋桨的顶端周围形成环。这样的高极数电动机在径向上往往非常薄,轴向长度与直径之比非常小,并且具有相对较大的气隙以在转子和定子的表面上容纳防腐蚀层。因此,这种电机的相对较大直径的定子叠片趋于具有非常薄的铁心背面和窄齿,这使得它们昂贵且难以制造。本论文提出了一种可选的电动机拓扑结构,其特征在于无齿定子,其定子叠片由边缘缠绕成螺旋形的单条钢制成。在给定的螺旋桨扭矩和速度下,电机的电磁设计已针对最大效率进行了优化。气隙磁通密度in是从Laplace和Poisson的标量磁势方程的解析解中获得的。计算出理想的方波电流分布的电磁转矩。铜线和铁芯损耗以通常的方式估算。机器的设计使用瞬态有限元分析进行了改进,从而允许转子旋转。设计优化表明,对于永磁体和极数,存在最佳的径向厚度,这时效率最高。建造并测试了演示机,与同直径的现有开槽机相比,效率降低了10%,无槽机的体积增加了15%。成本分析表明,与开槽激光切割层压板相比,无槽边缘缠绕层压板的制造成本更低,但是所需增加的磁体材料的成本较高。该项目已证明可以在层压板的生产中节省成本,但是,对于这种特殊的推进器应用,成本被需要更多的磁体材料所抵消。

著录项

  • 作者

    Lai Shu Hau;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 English
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