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Dynamical analysis and control of longitudinal electromagnetic levitation.

机译:纵向电磁悬浮的动力学分析和控制。

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摘要

Electromagnetic levitation is a unique technique both for measurements of the thermophysical properties of metals and for producing homogeneous melt in material processing. To maintain stability of the levitated sample is one of the most notable difficulties observed in this technique. The longitudinal levitator developed by Bayazitoglu and Shampine overcomes most of the drawbacks that are inherent in currently used levitator and can support more massive samples than those that can be supported by existing devices. On the other hand, the undesired sample oscillations have been experienced unless the sample is released very near its equilibrium position as levitation is begun. To approach this problem, a dynamical model of the process is needed. This study addresses dynamical analysis and control of the longitudinal electromagnetic levitation. The levitation force is analytically derived considering the effect of the sample's motion. Based on the dynamical analysis, a nonlinear dynamical model of the process is derived. Using the numerical solution of the dynamical model, the influences of the system parameters on the dynamical behavior of the sample are illustrated. To achieve stable levitation the derived dynamical model has been linearized and implementing a linear control technique, the sample's undesired oscillations have been successfully eliminated at very beginning of the levitation.
机译:电磁悬浮是一种独特的技术,既可以测量金属的热物理性质,又可以在材料加工过程中产生均匀的熔体。保持悬浮样品的稳定性是该技术中观察到的最明显的困难之一。由Bayazitoglu和Shampine开发的纵向悬浮器克服了当前使用的悬浮器固有的大多数缺点,并且可以支持比现有设备支持的更大的样品。另一方面,除非在悬浮开始时将样品释放到非常接近其平衡位置的位置,否则就会发生不希望的样品振荡。为了解决这个问题,需要一个动态的过程模型。这项研究致力于纵向电磁悬浮的动力学分析和控制。考虑到样品运动的影响,通过分析得出了悬浮力。基于动力学分析,得出了过程的非线性动力学模型。使用动力学模型的数值解,说明了系统参数对样品动力学行为的影响。为了实现稳定的悬浮,已对导出的动力学模型进行了线性化处理并实施了线性控制技术,从而在悬浮开始时就成功消除了样品的不希望有的振荡。

著录项

  • 作者

    Artar, Remzi.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Mechanical.; Engineering Materials Science.
  • 学位 M.S.
  • 年度 2001
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;工程材料学;
  • 关键词

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