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A study on correcting the nonlinearity between stack length and back electromotive force in spoke type ferrite magnet motors

机译:辐射型铁氧体磁电机中堆长电动势与背部电动势的非线性的研究

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The accurate estimation of the performance change according to varies in stack length of motors is important in related industries. A permanent magnet (PM) motor usually represents a characteristic in which its back-emf constant is linearly proportional to stack length. It is an enormous advantage in designing and estimating the performance of PM motors. However, the linearity cannot be held in spoke type ferrite magnet synchronous motors (SFMSMs) due to the axial leakage flux that is irrelevant to the stack length. Thus, it is possible to accurately analyze the performance of SFMSM using a 3D-finite element analysis method but this method is very inefficient. In this study, a new correction factor that can consider the nonlinearity between stack length and back-emf constant in SFMSM is proposed. This equation can estimate the back-emf constant in a new stack length based on the results of 2D-FEA and 3D-FEA in a specific stack length. Finally, the validity of this equation is verified through analyzing its accuracy and testing it according to changes in motor parameters.
机译:根据在马达的堆叠长度而变化的性能改变的准确的估计是在相关产业重要。的永磁体(PM)电动机通常代表一个特性,其中其反电动势常数是线性正比于堆叠长度。这是在设计和估算PM电机的性能的巨大优势。然而,线性不能在辐条型铁氧体磁体同步电机(SFMSMs)由于保持的轴向泄漏磁通是无关的堆叠长度。因此,有可能使用3D-有限元分析法准确分析SFMSM的性能,但这种方法是非常低效的。在这项研究中,可以考虑在SFMSM堆叠长度和反电动势常数之间的非线性新的修正系数提出。该方程可以估算基于2D-FEA和3D-FEA在特定的堆叠长度的结果在一个新的堆栈长度的反电动势常数。最后,这个方程的有效性通过分析其精度,并根据电机参数的变化测试它验证。

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