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High-speed solid rotor induction motor design with improved efficiency and decreased harmonic effect

机译:高速实心转子感应电动机设计,提高了效率并降低了谐波效应

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摘要

Depending on its mechanical and thermal advantages, solid rotor induction motors (SRIMs) are widely used in demanding high-speed applications. Since eddy currents are set free in SRIMs, great part of rotor losses is caused by space harmonics created in the air-gap. Rotor losses are increased tremendously in high-speed applications with the remarkable increase in driving frequency. Here, an innovative design representing a novel stator and rotor combination that is not achieved in previous studies is proposed by structural changes to stator to eliminate major effective space harmonics. An unconventional stator slotting pattern and winding distribution is calculated by nature-inspired numerical optimisation techniques while keeping the fundamental winding factor relatively high. An example design where novel concepts are implemented is presented and a comparison is given in terms of important operational quantities with that of a standard SRIM.
机译:凭借其机械和热学优势,固体转子感应电动机(SRIM)广泛用于要求苛刻的高速应用中。由于SRIM中释放了涡流,因此转子损耗的很大一部分是由气隙中产生的空间谐波引起的。随着驱动频率的显着提高,在高速应用中转子损耗大大增加。在这里,通过改变定子的结构来消除主要的有效空间谐波,提出了一种创新的设计,该设计代表了以前研究中没有实现的新颖的定子和转子组合。通过自然启发的数值优化技术计算出非常规的定子开槽模式和绕组分布,同时保持基本绕组系数相对较高。给出了一个实施新概念的示例设计,并在重要操作量方面与标准SRIM进行了比较。

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