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New technologies for simpler adjustable speed brushless motor drives.

机译:简化变速无刷电动机驱动器的新技术。

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摘要

Recent advances in the power semiconductor technology, including developments of smart-power (High Voltage Integrated Circuits, HVICs), have a direct impact on the research and development efforts in the motor drive technology. Brushless Electronically Commutated Motor (ECM) and Switched Reluctance (SR) motor, along with their drive control systems, are being developed to satisfy the criteria of high efficiency, high reliability and enhanced performance at low cost.; Efficient control techniques are developed in this dissertation for the control of brushless ECM and SR motor drives.; A new current regulation technique is developed which uses current feedback information from current sensors, integrated into the new generation of MOS-gated power switches i.e., MOSFETS and IGBTs, thus eliminating the need for discrete current sensors. Algorithms are developed to cope with the lack of current feedback information when the switch is not conducting. Experimental results on a fractional ECM motor show that the new current regulation algorithm has excellent performance characteristics. It is further shown that the use of smart-power devices lead to a high level integration and protection for the ECM drives enabling operation at bus voltages up to 500 VDC with power ratings from fractional to greater than 10 HP. A novel regeneration scheme which does not require additional switches is also developed. Extensive simulation and experimental results show salient features of the fully integrated four quadrant ECM drive with current regulation.; In another aspect of technology simplification for motor drives, a four-quadrant SR motor controller and its commutation schemes are developed using low resolution position feedback. Experimental results on a fractional horse power SR motor show that high performance from the SR drive can be obtained at low cost. The drive has excellent dynamic reversing capability and the required operating mode can be easily selected.
机译:功率半导体技术的最新进展,包括智能功率(高压集成电路,HVIC)的发展,对电机驱动技术的研究与开发工作产生了直接影响。开发无刷电子换向电动机(ECM)和开关磁阻(SR)电动机及其驱动控制系统,以满足低成本,高效率,高可靠性和增强性能的标准。本文开发了有效的控制技术来控制无刷ECM和SR电机驱动器。开发了一种新的电流调节技术,该技术使用了来自电流传感器的电流反馈信息,并集成到新一代MOS门控功率开关(即MOSFET和IGBT)中,从而消除了对分立电流传感器的需求。开发了算法来应对开关不导通时缺少电流反馈信息的问题。在分数ECM电动机上的实验结果表明,新的电流调节算法具有出色的性能特征。进一步表明,使用智能电源设备可为ECM驱动器提供高水平的集成和保护,从而使其能够在总线电压高达500 VDC且额定功率从分数到大于10 HP的情况下运行。还开发了不需要附加开关的新颖的再生方案。大量的仿真和实验结果表明,具有电流调节功能的完全集成的四象限ECM驱动器的显着特征。在电机驱动技术简化的另一方面,使用低分辨率位置反馈开发了四象限SR电机控制器及其换向方案。分数马力SR电动机的实验结果表明,可以以低成本获得SR驱动器的高性能。该驱动器具有出色的动态换向能力,可以轻松选择所需的运行模式。

著录项

  • 作者

    Becerra, Roger Carlos.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 201 p.
  • 总页数 201
  • 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

  • 入库时间 2022-08-17 11:50:49

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