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Analysis of torque generation and control in brushless permanent-magnet DC sensorless motors.

机译:无刷永磁直流无传感器电动机的转矩产生和控制分析。

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摘要

Torque generation in a brushless permanent magnet motor is due to the interactions between the flux density in the air gap and the current flowing through one or more energized coils. Brushless motors usually incorporate a device to detect the flux changes of the rotor for energizing corresponding phase coils. The most common and widely used position detector is the Hall sensor. However, it is liable to generate malfunction because of the heat and is prone to failures in manufacturing and in use of motors. Also, it can not be used where the small size is of significant importance because it is a detrimental factor of reducing the air gap length.; This dissertation presents a magnetic field analysis technique for permanent magnet axial gap motors and position detection schemes which do not require position sensors. The magnetic field is modeled by a permeance method of the corresponding Maxwell's equations and boundary conditions and is solved using the simultaneous over-relaxation method for getting numerical solutions. Based on the flux density distribution in the air gap of an axial gap motor, the inductance variation of each phase due to the flowing current and flux changes is examined. The inductance bridge systems are used for determining the relative position of the magnet rotor because the inductance variation of each phase results in the difference voltage between phases when applying a reference signal. The position detection schemes are implemented in an example of the motor drive system. The torque and speed characteristics are investigated with a proportional gain to the error signal between the reference speed and the actual rotational speed. Also, the speed characteristics with the pulse width modulation method are considered.; The current flowing through the phase coils experiences resistive loss and generates heat that is a detrimental factor of motor performance. This heat causes the motor temperature rise that results in the magnet degrade, resistance increase, and power drop. Therefore, the torque and speed characteristics are changed due to temperature rise. The torque constant and back electro-motive force constant variations are considered to get the torque and speed characteristics in the thermal state. The lumped parameter model is presented for determining the thermal characteristics of brushless DC motors. The output speed of the drive system is dropped due to the temperature rise.
机译:无刷永磁电动机中的转矩产生是由于气隙中的磁通密度与流过一个或多个通电线圈的电流之间的相互作用所致。无刷电动机通常包括用于检测转子的磁通变化以激励相应的相线圈的装置。霍尔传感器是最常见且使用最广泛的位置检测器。然而,由于热量容易产生故障,并且在电动机的制造和使用中容易出现故障。另外,在小尺寸非常重要的情况下也不能使用,因为这是减小气隙长度的有害因素。本文提出了一种永磁体轴向间隙电动机的磁场分析技术和不需要位置传感器的位置检测方案。通过相应的麦克斯韦方程和边界条件的磁导方法对磁场进行建模,并使用同步过松弛方法求解磁场以获得数值解。根据轴向间隙电机气隙中的磁通密度分布,检查由于流动电流和磁通量变化而引起的各相电感变化。电感桥系统用于确定磁体转子的相对位置,因为当施加参考信号时,每个相的电感变化会导致相之间的电压差。位置检测方案在电机驱动系统的示例中实现。在参考速度和实际转速之间以与误差信号成比例的增益研究扭矩和速度特性。同样,考虑了脉冲宽度调制方法的速度特性。流过相线圈的电流会遭受电阻损耗并产生热量,这是电动机性能的不利因素。这种热量会导致电动机温度升高,从而导致磁体退化,电阻增大和功率下降。因此,转矩和速度特性由于温度上升而改变。考虑转矩常数和反电动势常数变化以获得热状态下的转矩和速度特性。提出了用于确定无刷直流电动机热特性的集总参数模型。由于温度上升,驱动系统的输出速度下降。

著录项

  • 作者

    Park, Jongyong.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:47:59

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