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首页> 外文期刊>Electric Power Components and Systems >Modeling, Design, and Sensitivity Analysis of a Continuous Magnetic Gear Using Finite-Element Method
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Modeling, Design, and Sensitivity Analysis of a Continuous Magnetic Gear Using Finite-Element Method

机译:连续电磁齿轮的有限元建模,设计与灵敏度分析

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摘要

Magnetic gears are considered to be an interesting alternative of mechanical torque transmission systems. They offer significant benefits compared with mechanical gears, such as reduced maintenance, improved reliability, inherent overload protection, and physical isolation between the input and output shafts. The continuous ratio for magnetic gears is an important factor that is very useful for many applications, such as wind turbines, electric vehicles, and other related applications in which continuous ratio of the gear box is essential. In this article, modeling and sensitivity analysis of a continuous magnetic gear is carried out. To this end, a continuous magnetic gear is modeled by a magnetic equivalent circuit, and then the output torque, speed, and magnetic field distribution inside the gear box are evaluated thorough the finite-element method.
机译:电磁齿轮被认为是机械扭矩传递系统的有趣替代品。与机械齿轮相比,它们具有显着的优势,例如减少了维护,提高了可靠性,固有的过载保护以及输入轴和输出轴之间的物理隔离。电磁齿轮的连续传动比是重要的因素,对于许多应用非常有用,例如风力涡轮机,电动汽车和其他相关应用,其中齿轮箱的连续传动比是必不可少的。在本文中,对连续电磁齿轮进行了建模和灵敏度分析。为此,用电磁等效电路对连续的电磁齿轮进行建模,然后通过有限元方法评估齿轮箱内的输出扭矩,速度和磁场分布。

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