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Starting and Ultra Low-Speed Control Strategy for Gearless Traction Permanent Magnet Synchronous Machine

机译:无齿轮牵引永磁同步电机的启动及超低速控制策略

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摘要

This paper proposes an improved control strategy of gearless traction permanent magnet synchronous machine installed with an incremental encoder for the direct-drive elevator applications. To achieve the accurate current vector decoupling control for the traction machine at starting operation, the initial rotor position estimation at standstill based on a hybrid signal injection method is present. Firstly, 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 the negative direction to identify the magnet polarity. On the basis of the traction machine state equations, a continuous speed observer is proposed adopting a full-order state observer. Therefore the continuous speed feedback information can be obtained according to the output signal from an ordinary incremental encoder. This way can make the traction machine drive achieve high-performance extra low-speed operation. The experimental results demonstrate the feasibility of the control strategy by an 11.7kW gearless elevator traction machine.
机译:本文提出了一种安装有增量编码器的无齿轮牵引永磁同步电机的改进控制策略,用于直接驱动电梯应用。为了实现牵引机在启动时的精确电流矢量解耦控制,提出了一种基于混合信号注入方法的静止时初始转子位置估计的方法。首先,注入高频振荡正弦电压信号以获得磁极位置。然后,在正方向和负方向上注入两个脉冲电压矢量,以识别磁体极性。基于牵引机状态方程,提出了采用全阶状态观测器的连续速度观测器。因此,可以根据来自普通增量式编码器的输出信号来获得连续的速度反馈信息。这样可以使牵引机驱动器实现高性能的超低速运行。实验结果证明了采用11.7kW无齿轮电梯曳引机控制策略的可行性。

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