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Modeling and analysis of electric machines with asymmetric rotor poles using a reluctance based, magnetic equivalent circuit.

机译:使用基于磁阻的磁等效电路对具有不对称转子极的电机进行建模和分析。

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摘要

In this research, magnetic equivalent circuit (MEC) techniques are applied to model the behavior of claw-pole alternators. As a first step, a model has been created using a magnetic circuit composed of elements that represent magnetic permeance. The flux throughout the machine is determined from stator and rotor winding flux linkages using nodal analysis techniques. The permeance-based model implements an approach proposed in existing literature, and is shown to accurately predict the behavior of the machine in the linear magnetic region. However, in saturation, measured and simulated results show poor agreement, most notably in the harmonic content of open-circuit voltage. To improve accuracy, an alternative formulation is considered wherein the magnetic paths in the machine are modeled using a reluctance network and solved using mesh circuit analysis. It is observed that a solution procedure based upon mesh formulation results in a more stable numerical algorithm. Additionally, using the mesh approach, saturation is modeled through the relationship between magnetic flux and permeability. This is shown to be more accurate than a permeance model wherein saturation is modeled using the relationship between magnetic potential and permeability. For a two-dimensional rotor structure, the mesh-formulated MEC model is shown to accurately predict the spatial distribution of air gap flux density over a wide range of operating points. A three-dimensional MEC model of the claw structure is also derived. To implement the model, novel algorithms have been developed to generate the set of loop equations and modify the set to incorporate rotation. Predicted results compare favorably with those obtained using three-dimensional finite element analysis.
机译:在这项研究中,磁等效电路(MEC)技术被应用于对爪极式交流发电机的行为进行建模。第一步,使用由代表磁导率的元素组成的磁路创建模型。使用节点分析技术根据定子和转子绕组的磁链确定整个机器的磁通。基于磁导率的模型实现了现有文献中提出的方法,并且被证明可以准确地预测线性磁区中电机的行为。但是,在饱和状态下,测量和模拟结果显示出较差的一致性,最明显的是开路电压的谐波含量。为了提高精度,考虑了一种替代公式,其中使用磁阻网络对电机中的磁路进行建模,并使用网格电路分析进行求解。可以观察到,基于网格公式的求解过程会产生更稳定的数值算法。另外,使用网格方法,通过磁通量与磁导率之间的关系对饱和度进行建模。这表明比磁导模型更准确,在磁导模型中,饱和度是使用磁势和磁导率之间的关系建模的。对于二维转子结构,显示了网格形成的MEC模型,可以在宽范围的工作点上准确预测气隙磁通密度的空间分布。还导出了爪结构的三维MEC模型。为了实现该模型,已经开发了新颖的算法来生成循环方程组并修改该组以包含旋转。预测结果与使用三维有限元分析获得的结果相比具有优势。

著录项

  • 作者

    Williams, Joshua Michael.;

  • 作者单位

    University of Missouri - Rolla.;

  • 授予单位 University of Missouri - Rolla.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:43:16

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