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Permanent magnet hysteresis synchronous motor analysis and DSP-based vector control.

机译:永磁磁滞同步电动机分析和基于DSP的矢量控制。

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摘要

The hybrid permanent magnet hysteresis synchronous (PMHS) motor has many distinct advantages over conventional permanent magnet or hysteresis motors. Based on the features of PMHS motor structure and the models of permanent magnet and hysteresis, the magnetic equivalent circuit and electrical equivalent circuit of the PMHS motor are developed. An analytical model including the derivation of state variable equations in the time domain is also developed. The transient current, torque and speed during the starting and synchronizing process have been calculated by solving the state variable equations numerically. Reasonably good agreements between the computed and experimental results of a 5 hp PMHS laboratory motor confirm the validity of the proposed analysis.;Programmed sinusoidal pulse width modulation, which is based on the digital signal processing (DSP), is used for the PMHS motor vector control. Using the frequency domain approach, the direct and quadrature axis current controllers are developed. The control algorithms are then put into a form that could be implemented directly on the real-time digital system. Finally. an experimental verification of the algorithm is carried out by measuring the stator line current at different frequencies.;For the speed controller design, first, the general expression of the developed torque of the PMHS motor is derived. Upon controlling the stator current i;The complete experimental DS1102 DSP based drive system has been built. A detailed description of the system general hardware and software is discussed. Finally, the experimental results of a DSP based PMHS motor vector control system are given. The motor is controlled successfully at inverter frequencies 1 Hz to 60 Hz.;The transient and steady state performances of current and speed show that the vector control of the PMHS motor has important features for smooth and quiet operation over a wide range of speed. The experimental results verify the effectiveness of the motor models for high performance PMHS motor drive.
机译:混合式永磁磁滞同步(PMHS)电动机比常规永磁或磁滞电动机具有许多明显的优势。根据永磁同步电动机的结构特点以及永磁体和磁滞模型,开发了永磁同步电动机的磁等效电路和电气等效电路。还建立了包括时域状态变量方程的推导的分析模型。通过数值求解状态变量方程,可以计算出启动和同步过程中的瞬态电流,转矩和速度。 5 hp PMHS实验室电动机的计算结果与实验结果之间的合理良好一致性证实了所提出分析的有效性。;基于数字信号处理(DSP)的编程正弦脉冲宽度调制被用于PMHS电动机矢量控制。使用频域方法,开发了直接和正交轴电流控制器。然后将控制算法转换为可以直接在实时数字系统上实现的形式。最后。通过测量不同频率下的定子线电流来对该算法进行实验验证。;对于速度控制器设计,首先,推导了PMHS电动机所产生转矩的一般表达式。在控制定子电流i的基础上,已构建了完整的基于DS1102 DSP的实验性驱动系统。讨论了系统通用硬件和软件的详细描述。最后给出了基于DSP的PMHS电机矢量控制系统的实验结果。在1 Hz至60 Hz的逆变器频率下成功地控制了电动机。;电流和速度的瞬态和稳态性能表明,PMHS电动机的矢量控制具有重要的功能,可在较宽的速度范围内平稳运行。实验结果验证了电动机模型对高性能PMHS电动机驱动器的有效性。

著录项

  • 作者

    Qin, Ruifeng.;

  • 作者单位

    Memorial University of Newfoundland (Canada).;

  • 授予单位 Memorial University of Newfoundland (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 216 p.
  • 总页数 216
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

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