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Modelling, simulation and analysis of low-cost direct torque control of PMSM using hall-effect sensors

机译:使用霍尔效应传感器的PMSM低成本直接转矩控制的建模,仿真和分析

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摘要

This thesis focuses on the development of a novel Direct Torque Control (DTC) scheme for permanent magnet (PM) synchronous motors (surface and interior types) in the constant torque region with the help of cost-effective hall-effect sensors. This method requires no DC-link sensing, which is a mandatory matter in the conventional DTC drives, therefore it reduces the cost of a conventional DTC of a permanent magnet (PM) synchronous motor and also removes common problems including; resistance change effect, low speed and integration drift. Conventional DTC drives require at least one DC-link voltage sensor (or two on the motor terminals) and two current sensors because of the necessary estimation of position, speed, torque, and stator flux in the stationary reference frame. Unlike the conventional DTC drive, the proposed method uses the rotor reference frame because the rotor position is provided by the three hall-effect sensors and does not require expensive voltage sensors. Moreover, the proposed algorithm takes the acceleration and deceleration of the motor and torque disturbances into account to improve the speed and torque responses. The basic theory of operation for the proposed topology is presented. A mathematical model for the proposed DTC of the PMSM topology is developed. A simulation program written in MATLAB/SIMULINK???? is used to verify the basic operation (performance) of the proposed topology. The mathematical model is capable of simulating the steady-state, as well as dynamic response even under heavy load conditions (e.g. transient load torque at ramp up). It is believed that the proposed system offers a reliable and low-cost solution for the emerging market of DTC for PMSM drives. Finally the proposed drive, considering the constant torque region operation, is applied to the agitation part of a laundry washing machine (operating in constant torque region) for speed performance comparison with the current low-cost agitation cycle speed control technique used by washing machine companies around the world.
机译:本文致力于借助具有成本效益的霍尔效应传感器,为恒转矩区域中的永磁(PM)同步电动机(表面和内部类型)开发一种新颖的直接转矩控制(DTC)方案。这种方法不需要直流母线感应,这在常规DTC驱动器中是必不可少的,因此,它降低了永磁(PM)同步电动机的常规DTC的成本,并且消除了以下常见问题:电阻变化效果,低速和积分漂移。传统的DTC驱动器至少需要一个直流母线电压传感器(或在电动机端子上两个)和两个电流传感器,这是因为需要估算固定参考系中的位置,速度,转矩和定子磁通。与传统的DTC驱动器不同,本发明的方法使用转子参考系,因为转子位置由三个霍尔效应传感器提供,并且不需要昂贵的电压传感器。此外,所提出的算法考虑了电动机的加速和减速以及转矩扰动,以改善速度和转矩响应。介绍了所提出的拓扑的基本操作原理。建立了用于PMSM拓扑的建议DTC的数学模型。用MATLAB / SIMULINK编写的仿真程序用于验证所提议拓扑的基本操作(性能)。该数学模型甚至在重负载条件下(例如在加速时的瞬态负载转矩)也能够模拟稳态以及动态响应。可以相信,提出的系统为新兴的PMSM驱动器DTC市场提供了可靠且低成本的解决方案。最后,将考虑到恒定转矩区域操作的建议驱动器应用于洗衣机的搅拌部分(在恒定转矩区域操作),以与洗衣机公司当前使用的低成本搅拌周期速度控制技术进行速度性能比较。世界各地。

著录项

  • 作者

    Ozturk Salih Baris;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en_US
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