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An innovative environmentally-friendly full-electric drive solution for the actuation of shipboard loads: Analysis based on prototype testing results

机译:一种创新的环保型全电动驱动解决方案,用于船舶载荷的致动:基于原型测试结果的分析

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This paper analyzes a different approach for actuation of shipboard loads such as rudders, stabilizing fins, or other linear drives, which are usually powered by oil-fed actuators. Hydrostatic transmissions are classically used when the highest torques/forces with low speeds are demanded. However, the oil used as force-transmission fluid is troublesome due to environmental issues. Oil production, use, and final disposal is costly and presents environmental risks. Also the maintenance onboard ship is intensive and hazardous for the operators. A full electric solutions is ulteriorly studied in this paper, based on a prototyped linear machine using permanent magnets and inverter feeding. Copper, friction, and iron losses are the main limiting factors in developing the required thrust at low speed, which is, ultimately, the main obstacle to a gear-less or direct-drive full-electric application. This paper shows incremental work on the prototype, through a dedicated circuit model accounting for all the machine losses and providing an affordable model of machine overall efficiency. The model will be used in further works to asses the machine performances in typical onboard service duties.
机译:本文分析了一种不同的方法,用于致动船舶载荷,例如舵,稳定翅片或其他线性驱动器,这些载荷通常由油馈执行器供电。当需要低速的最高扭矩/力时,静液压传输经典使用。然而,由于环境问题,用作力传动流体的油是麻烦的。石油生产,使用和最终处置成本高昂,呈现环境风险。此外,船上的维护是对运营商的密集和危险性。本文含有全电动解决方案,基于使用永磁体和逆变器进料的原型线性机器。铜,摩擦和铁损是在低速发展所需推力的主要限制因素,最终是齿轮或直接驱动全电气应用的主要障碍。本文通过专用电路模型占所有机器损耗的专用电路模型,本文显示了对原型的增量工作,并提供了一个实惠的机器整体效率模型。该模型将用于进一步的作用,以赋予典型的车载服务职责中的机器性能。

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