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Design optimization of modern machine drive systems for maximum fault tolerant and optimal operation.

机译:现代机器驱动系统的设计优化,可最大程度地实现容错和最佳操作。

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摘要

Modern electric machine drives, particularly three phase permanent magnet machine drive systems represent an indispensable part of high power density products. Such products include; hybrid electric vehicles, large propulsion systems, and automation products. Reliability and cost of these products are directly related to the reliability and cost of these systems. The compatibility of the electric machine and its drive system for optimal cost and operation has been a large challenge in industrial applications. The main objective of this dissertation is to find a design and control scheme for the best compromise between the reliability and optimality of the electric machine-drive system. The effort presented here is motivated by the need to find new techniques to connect the design and control of electric machines and drive systems.;A highly accurate and computationally efficient modeling process was developed to monitor the magnetic, thermal, and electrical aspects of the electric machine in its operational environments. The modeling process was also utilized in the design process in form finite element based optimization process. It was also used in hardware in the loop finite element based optimization process. The modeling process was later employed in the design of a very accurate and highly efficient physics-based customized observers that are required for the fault diagnosis as well the sensorless rotor position estimation. Two test setups with different ratings and topologies were numerically and experimentally tested to verify the effectiveness of the proposed techniques.;The modeling process was also employed in the real-time demagnetization control of the machine. Various real-time scenarios were successfully verified. It was shown that this process gives the potential to optimally redefine the assumptions in sizing the permanent magnets of the machine and DC bus voltage of the drive for the worst operating conditions.;The mathematical development and stability criteria of the physics-based modeling of the machine, design optimization, and the physics-based fault diagnosis and the physics-based sensorless technique are described in detail.;To investigate the performance of the developed design test-bed, software and hardware setups were constructed first. Several topologies of the permanent magnet machine were optimized inside the optimization test-bed. To investigate the performance of the developed sensorless control, a test-bed including a 0.25 (kW) surface mounted permanent magnet synchronous machine example was created. The verification of the proposed technique in a range from medium to very low speed, effectively show the intelligent design capability of the proposed system. Additionally, to investigate the performance of the developed fault diagnosis system, a test-bed including a 0.8 (kW) surface mounted permanent magnet synchronous machine example with trapezoidal back electromotive force was created. The results verify the use of the proposed technique under dynamic eccentricity, DC bus voltage variations, and harmonic loading condition make the system an ideal case for propulsion systems.
机译:现代电机驱动器,特别是三相永磁电机驱动器系统,是高功率密度产品必不可少的部分。此类产品包括;混合动力电动汽车,大型推进系统和自动化产品。这些产品的可靠性和成本与这些系统的可靠性和成本直接相关。为了实现最佳成本和运行,电机及其驱动系统的兼容性一直是工业应用中的一大挑战。本文的主要目的是寻找一种在电机驱动系统的可靠性和最优性之间取得最佳折衷的设计和控制方案。需要采取新技术来连接电机和驱动系统的设计与控制的动机推动了此处的工作。开发了一种高度精确且计算效率高的建模过程,以监控电气的磁,热和电方面机器在其操作环境中。在基于表单有限元的优化过程中,建模过程也用于设计过程中。它还在基于循环有限元的优化过程中用在硬件中。建模过程随后被用于设计非常准确和高效的基于物理学的定制观察者,这些是故障诊断以及无传感器转子位置估计所必需的。通过数值和实验对两种具有不同额定值和拓扑的测试装置进行了数值和实验测试,以验证所提出技术的有效性。该建模过程还用于机器的实时消磁控制中。各种实时场景已成功验证。结果表明,在最坏的工作条件下,此过程为优化机器永磁体和驱动器的直流母线电压的大小提供了可能的最佳重新定义假设。;基于物理学的物理模型的数学发展和稳定性标准详细介绍了机器,设计优化以及基于物理的故障诊断和基于物理的无传感器技术。为了研究已开发的设计测试台的性能,首先构建了软件和硬件设置。在优化测试台中对永磁电机的几种拓扑进行了优化。为了研究开发的无传感器控制的性能,创建了一个包含0.25(kW)表面安装永磁同步电机示例的试验台。从中速到极低速范围内对所提技术的验证,有效地显示了所提系统的智能设计能力。此外,为了研究开发的故障诊断系统的性能,创建了一个试验台,该试验台包括一个具有梯形反电动势的0.8(kW)表面安装永磁同步电机示例。结果验证了在动态偏心率,直流母线电压变化和谐波负载条件下所提出的技术的使用,使该系统成为推进系统的理想案例。

著录项

  • 作者

    Sarikhani, Ali.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 302 p.
  • 总页数 302
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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