具有耦合磁通的四极主动磁轴承中的旋转感应电动机

Christian Tshizubu, J. Santisteban
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引用次数: 1

摘要

如今,主动磁轴承(AMBs)可以在多种应用中找到。由于几十年的研究和发展,这些装置的制造可以被认为是一个成熟的问题。然而,其相关部件的建造成本仍然很高。这一点尤其正确,因为调试需要之前的信息,如这些设备将要工作的机器轴尺寸。更重要的是,当没有自动工具来安装它们的绕组时,这项工作仍然是手动的。考虑到这一点,在这项工作中提出了使用传统感应电机来降低主动磁轴承成本的可能性。与传统交流电动机不同的是,四极传统交流电动机的磁通量分布是基于耦合一结构的,具有分布式绕组。通过有限元分析,考虑了两相和三相情况。使用两相版本的实验结果验证了该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Turning induction motors in four poles active magnetic bearings with coupled fluxes
Nowadays, active magnetic bearings (AMBs) can be found operating in several applications. The fabrication of these devices can be considered a mature issue as a consequence of several decades of research and developing. Nevertheless, the related cost of the construction of its parts continues to be high. This is particularly true as the commissioning requires previous information like the machine shaft dimensions where these devices are going to be working. Even more, when there is not an automatic tool to mount their windings, this work continues to be manually. With this in mind, the possibility to use conventional induction motors to reduce the cost of active magnetic bearings is presented in this work. Different to the conventional (AMBs), the magnetic fluxes distribution is based in the coupled one structure as found in a four poles conventional AC motor with distributed windings. Through Finite Elements analysis, a two phase and a three phase cases are considered. Experimental results, using the two phase version, validate this approach.
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