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Design of switched reluctance machines for low-acoustic-noise and wide-speed-range operation.

机译:用于低噪声和宽速度范围操作的开关磁阻电机的设计。

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摘要

The dissertation presents a comprehensive design methodology encompassing the effects of machine geometry, configuration, material properties and parameters on the overall performance of the SRM. The developed methodology is verified with system level simulations and finite element analysis (FEA) and experiments.; Two analytical methods have been developed for calculating stator mode frequencies. The first one is the ‘simple method’ having closed form equations that are used for prompt realization of any structural variation of the stator during the design process. The second one named ‘matrix method’ calculates the circumferential mode frequencies including the effects of end-shields and frame attached to the stator structure. An analytical-model has also been developed to find the magnetic radial force in an SRM. The radial force model is used for predicting the noise power level taking only the circumferential mode shapes and frequencies into consideration. The noise prediction model is utilized in the comprehensive design methodology to develop guidelines for selecting configurations, parameters and geometries for a low-noise SRM.; The current research demonstrated the usefulness of two critical rotor positions for an SRM drive requiring extended constant power range. A geometry-based algorithm is developed to determine these critical rotor positions for the SRM. The dissertation provides a design strategy towards extending the separation between these critical rotor positions for a wide-speed-range SRM.; Experiments were conducted to acquire acoustic noise and torque-speed data of the SRM designed and built according to the developed design methodology. The experimental results correlate satisfactory with the theoretical predictions.
机译:论文提出了一种综合的设计方法论,涵盖了机器几何形状,配置,材料特性和参数对SRM整体性能的影响。所开发的方法论已通过系统级仿真,有限元分析(FEA)和实验进行了验证。已经开发出两种分析方法来计算定子模式频率。第一个是具有封闭形式方程的“简单方法”,用于在设计过程中迅速实现定子的任何结构变化。第二种名为“矩阵法”的方法将计算圆周模式频率,包括端罩和固定在定子结构上的框架的影响。还开发了一种分析模型来找到SRM中的径向磁力。径向力模型用于仅考虑圆周模式形状和频率来预测噪声功率水平。噪声预测模型被用于全面的设计方法中,以制定用于选择低噪声SRM的配置,参数和几何形状的指南。当前的研究表明,对于需要扩展恒定功率范围的SRM驱动器,两个关键转子位置非常有用。开发了基于几何的算法来确定SRM的这些关键转子位置。论文提供了一种设计策略,以扩展这些关键转子位置之间的间隔,以实现宽速SRM。进行了实验,以获取根据开发的设计方法设计和制造的SRM的噪声和扭矩速度数据。实验结果与理论预测令人满意。

著录项

  • 作者

    Anwar, Mohammad Nazmul.;

  • 作者单位

    The University of Akron.;

  • 授予单位 The University of Akron.;
  • 学科 Engineering Electronics and Electrical.; Applied Mechanics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 251 p.
  • 总页数 251
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;应用力学;
  • 关键词

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