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Flux Path Design of Synchronous Reluctance Motor to Analyze Torque Characteristic and Operating Region

机译:同步磁阻电动机的磁通路径设计分析扭矩特性和操作区域

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The performance characteristics of a synchronous reluctance motor (SynRM) are sensitive to the linkage flux and saturation degree at the core by the shape of the stator and rotor, and the input source, as other energy sources, such as magnets, are not placed inside the rotor. Thus, flux path design is a critical parameters to improve the torque characteristics and operating region of the machine. In this paper, the methods of improving the torque characteristics and operating region of the SynRM are proposed by changing the design parameters, such as the flux barrier in the rotor part and the tooth width in the stator part, which are design parameters of the main flux paths. To demonstrate the validity of the method, the SynRM characteristics are analyzed by changing the motor variables. Furthermore, linkage flux, power factor, inductance map by the d-q axis current, and T-N curve are calculated to clarify their effects on the operating region.
机译:同步磁阻电动机(Synrm)的性能特性通过定子和转子的形状对芯的连杆通量和饱和度敏感,以及输入源,作为其他能源,例如磁体,磁铁不放置在内部转子。因此,磁通路径设计是改善机器的扭矩特性和操作区域的关键参数。在本文中,通过改变设计参数,例如转子部件中的磁通屏障,改善了定子部分中的磁阻屏幕的磁通屏幕,提出了改善SYNRM的扭矩特性和操作区域的方法。助焊路径。为了证明该方法的有效性,通过改变电机变量来分析SYNRM特性。此外,计算D-Q轴电流和T-N曲线的连接通量,功率因数,电感图,以阐明它们对操作区域的影响。

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