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Parametric instability induced by traveling magnetic load within permanent magnet motors

机译:永磁电动机内的行进磁负载引起的参数不稳定性

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摘要

Magnetic load can cause excessive noise and vibration or even parametric instability, damaging permanent magnet (PM) motors on a permanent basis. This work investigates the parametric vibration of a ring stator with an aim to identify mechanical-magnetic coupling parametric vibration. An analytical model is developed by using energy method, where the stator is treated as a thin smooth ring having radial and tangential deflections and subjected to traveling magnetic load. The modeling leads to a partial differential equation with time-variant coefficients depending on pole/slot combination, excitation order, permanence order, and wave number. Principal instability boundaries are identified by multi-scale method as simple closed-form expressions. The expressions govern the relationships between mechanical-magnetic parameters and instability's occurrence or suppression. Results show that there exist unstable regions that cannot be detectable directly by traditional treatment widely employed when using the multi-scale method, and thus, an alternative avenue is presented. Analytical results are well compared against the numerical ones from the Floque't theory. The analytical results can find application in parameter's selection at preliminary design stage of the PM motors to keep stable running.
机译:磁性负载会导致过度的噪音和振动,甚至出现参数不稳定,从而永久损坏永磁(PM)电动机。这项工作研究了环形定子的参数振动,旨在识别机械-电磁耦合参数振动。利用能量方法建立了一个解析模型,其中将定子视为具有径向和切向挠度并承受行进磁负载的薄光滑环。该建模导致了一个时变系数的偏微分方程,该方程取决于极/缝隙组合,激励阶数,永久阶数和波数。通过多尺度方法将主要不稳定性边界标识为简单的封闭形式表达式。这些表达式控制机械电磁参数与不稳定性的发生或抑制之间的关系。结果表明,存在使用多尺度方法不能被传统方法直接检测到的不稳定区域,因此,提出了一种替代方法。将分析结果与Floque't理论的数值结果进行了很好的比较。分析结果可在永磁电动机初步设计阶段的参数选择中得到应用,以保持稳定运行。

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