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Control strategies and parameter compensation for permanent magnet synchronous motor drives.

机译:永磁同步电动机驱动器的控制策略和参数补偿。

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摘要

Variable speed motor drives are being rapidly deployed for a vast range of applications in order to increase efficiency and to allow for a higher level of control over the system. One of the important areas within the field of variable speed motor drives is the system's operational boundary. Presently, the operational boundaries of variable speed motor drives are set based on the operational boundaries of single speed motors, i.e. by limiting current and power to rated values. This results in under-utilization of the system, and places the motor at risk of excessive power losses. The constant power loss (CPL) concept is introduced in this dissertation as the correct basis for setting and analyzing the operational boundary of variable speed motor drives. The control and dynamics of the permanent magnet synchronous motor (PMSM) drive operating with CPL are proposed and analyzed. An innovative implementation scheme of the proposed method is developed. It is shown that application of the CPL control system to existing systems results in faster dynamics and higher utilization of the system. The performance of a motor drive with different control strategies is analyzed and compared based on the CPL concept. Such knowledge allows for choosing the control strategy that optimizes a motor drive for a particular application. Derivations for maximum speed, maximum current requirements, maximum torque and other performance indices, are presented based on the CPL concept. High performance drives require linearity in torque control for the full range of operating speed. An analysis of concurrent flux weakening and linear torque control for PMSM is presented, and implementation strategies are developed for this purpose. Implementation strategies that compensate for the variation of machine parameters are also introduced. A new normalization technique is introduced that significantly simplifies the analysis and simulation of a PMSM drive's performance. The concepts presented in this dissertation can be applied to all other types of machines used in high performance applications. Experimental work in support of the key claims of this dissertation is provided.
机译:为了提高效率并允许对系统进行更高级别的控制,正在将变速电动机驱动器迅速部署到广泛的应用中。变速电动机驱动器领域中的重要领域之一是系统的操作范围。当前,基于单速电动机的操作边界,即通过将电流和功率限制为额定值来设置变速电动机驱动器的操作边界。这会导致系统利用率不足,并使电动机面临过度功率损耗的风险。本文引入恒功率损耗(CPL)概念,作为设置和分析变速电动机驱动器运行边界的正确基础。提出并分析了使用CPL运行的永磁同步电动机(PMSM)驱动器的控制和动力学。提出了一种创新的实施方案。结果表明,将CPL控制系统应用于现有系统会导致更快的动态性能和更高的系统利用率。基于CPL概念,分析并比较了具有不同控制策略的电动机驱动器的性能。这些知识允许选择针对特定应用优化电机驱动的控制策略。基于CPL概念提出了最大速度,最大电流要求,最大扭矩和其他性能指标的推导。高性能驱动器要求转矩控制中的线性度才能实现整个工作速度范围。对永磁同步电机的同时弱磁和线性转矩控制进行了分析,并为此目的制定了实施策略。还介绍了补偿机器参数变化的实施策略。引入了一种新的归一化技术,该技术大大简化了PMSM驱动器性能的分析和仿真。本文提出的概念可以应用于高性能应用中使用的所有其他类型的机器。提供了支持本论文的主要权利要求的实验工作。

著录项

  • 作者

    Monajemy, Ramin.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 165 p.
  • 总页数 165
  • 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

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