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Robust Low-Cost Control Scheme of Direct-Drive Gearless Traction Machine for Elevators Without a Weight Transducer

机译:无重量传感器的电梯直接驱动无齿轮曳引机的鲁棒低成本控制方案

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摘要

This paper proposes a novel low-cost control strategy of gearless traction permanent-magnet synchronous machines for direct-drive elevator applications. It can improve robustness of the weight-sensorless traction machine system installed with an ordinary incremental encoder. In order to improve the riding comfort for the passengers during brake releases, a novel starting torque compensation strategy without a weight transducer is presented. After analyzing the dynamic characteristics and the friction torque of the elevator traction system, two starting torque compensation methods based on the dichotomy and the staircase method are proposed for the weight-sensorless elevator applications. This way, electromagnetic torque can be generated to balance the load torque, and sliding can be prevented when the elevator brake releases during the starting operation. To achieve the current vector decoupling control for the traction machine installed with an incremental encoder, the initial rotor position estimation at standstill based on a hybrid signal injection method is adopted. First, a high-frequency oscillating sinusoidal voltage signal is injected to obtain the magnetic pole position. Then, two pulse voltage vectors are injected in the positive and negative directions to identify the magnet polarity. The experimental results demonstrate the feasibility of the proposed control strategy with an 11.7-kW traction machine.
机译:本文提出了一种新颖的低成本控制策略,用于直接驱动电梯应用的无齿轮牵引永磁同步电机。它可以提高装有普通增量式编码器的无重量传感器牵引机系统的坚固性。为了提高释放制动器期间乘客的乘坐舒适性,提出了一种没有重量传感器的新型起动扭矩补偿策略。在分析了电梯牵引系统的动力学特性和摩擦转矩之后,提出了基于二分法和阶梯法的两种起动转矩补偿方法,用于无传感器电梯应用。这样,可以产生电磁转矩以平衡负载转矩,并且在启动操作期间释放电梯制动器时可以防止滑动。为了实现装有增量编码器的牵引机的电流矢量解耦控制,采用了基于混合信号注入方法的静止时初始转子位置估计。首先,注入高频振荡正弦电压信号以获得磁极位置。然后,在正负两个方向上注入两个脉冲电压矢量,以识别磁体极性。实验结果证明了采用11.7 kW牵引机提出的控制策略的可行性。

著录项

  • 来源
    《Industry Applications, IEEE Transactions on》 |2012年第3期|p.996-1005|共10页
  • 作者

    Wang G.;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:27:14

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