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Demagnetization fault detection by a novel and flexible modeling method for outer rotor permanent magnet synchronous machine

机译:外转子永磁同步电机新颖柔性型号的去磁性故障检测

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摘要

The research presents a novel technique for modeling of Outer Rotor Permanent Magnet Synchronous Machines (OR-PMSMs) in healthy and faulty cases with demagnetization fault based on an improved Magnetic Equivalent Circuit (MEC) method. Saturation effect is considered by a new method, where the B-H curve fitting is performed by using a novel nonlinear function. The machine properties such as the number of poles, number of slots, magnets size and all of the other parameters can be selected arbitrarily in the proposed model. Noticing to machine structure, the machine geometry is divided into 11 individual zones. Each of the flux tubes in the core is modeled by a nonlinear reluctance and the machine performances in both transient and steady-state conditions are studied. Various machine properties such as magnets arc, winding configuration, and slot skewing angle are analyzed and the dynamic behaviour is compared in various cases. Comparison with Finite-Element-Method (FEM) shows the effectiveness and accuracy of the proposed MEC method and much shorter processing time compared to FEM.
机译:该研究提出了一种新颖的基于改进的磁性等效电路(MEC)方法,对具有退磁故障的健康和故障情况下的外转子永磁同步机(OR-PMSMS)的建模新技术。通过使用新的非线性函数来执行饱和效应,通过使用新的非线性函数来执行B-H曲线拟合。在所提出的模型中可以任意选择诸如极数,槽数,槽数,磁体尺寸和所有其他参数的机器属性。注意到机器结构,机器几何形状分为11个单个区域。芯中的每个磁通管由非线性磁阻建模,并且研究了瞬态和稳态条件中的机器性能。分析了各种机器性质,如磁铁,绕组配置和槽偏斜角,并在各种情况下比较动态行为。与有限元 - 方法(FEM)的比较显示了所提出的MEC方法的有效性和准确性和与FEM相比的加工时间更短。

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