标题: 轴向磁通无感测器直流无刷马达之速度控制
Velocity Control of Axial Flux Sensorless Brushless DC Motors
作者: 汪智强
Wang, Chih-Chiang
吕宗熙
Liu, Tzong-Shi
工学院精密与自动化工程学程
关键字: 轴向磁通;无感测器;直流无刷马达;速度控制;Axial Flux;Sensorless;Brushless DC Motors;Velocity Control
公开日期: 2011
摘要: 直流无刷马达具有高转数、高扭力、高功率密度、响应快、轻薄短小及易于控制的特性,但传统直流无刷马达是藉由马达内部的磁场感测器做为换相机制,此方式会使体积与成本增加,且马达运转所产生的温度热效应会改变电子构件的特性,而造成换相时机不正常等缺点;因此开始采用无感测器的马达驱动方式。无感测器马达的换相机制是依据未激磁相的反电动势讯号做为换相的基础,即是利用反电动势位置侦测法得知直流无刷马达转子的磁极位置。
一般而言,直流无刷马达依其定子线圈绕阻方式,可分为径向磁通与轴向磁通,在相同的体积条件下,轴向磁通马达比径向磁通马达具有更佳的输出功率与输出扭矩,且薄型化使重量更轻。故本论文以薄型轴向磁通直流无刷马达,搭配无感测器驱动的换相方式,应用于清洁机器人,其目的让使用范围更加宽广,容许环境空间所造成的几何干涉。此外,不同使用条件(地板材质、操作环境、集尘袋脏污程度)会使马达转速的飘移而产生吸力太强或减弱之情况发生,而且假若马达永远在全速运转的情形下操作,也会造成马达寿命减短。所以,本研究进一步设计一系列的速度控制器,包括PID控制器、模糊控制器、以及自调模糊控制器。随不同操作环境来调整马达转速,因应环境特性,调整马达所相对应的控制参数,避免马达持续处于高负载与高转速,以延长马达的使用寿命,亦达到节能的目的。

关键字: 轴向磁通、无感测器、直流无刷马达、速度控制
The characteristics of brushless direct current (BLDC) motors include high speed, high torque, high power density, rapidly transient response, and ease of control. With many advantages, BLDC motors have become more and more popular in our life and are applied to a wide variety of applications like DVD player, hard disk, i-Robot, electrical vehicles, compressor, etc. Conventional BLDC motors use internal magnetic sensors, e.g. Hall effect sensors to feedback signals and obtain rotor position. However, due to cost and size subject to mechanical or environment constraints, and reliability of thermal effect that may cause commutation error. Sensorless control methods without Hall-effect sensors have been widely used in recent years. According to stator winding patterns, BLDC can be radial or axial windings. Axial-flux BLDC motors outperform radial field in aspects of torque, power, efficiency, and compact geometry shape [Krishnan and Beutler, 1985]. Hence this thesis focuses on analyzes and then realizes a sensorless drive for the axial-flux BLDC motor with a position estimation method to control the motor from standstill state to desired speed based on back-EMFs zero-crossing of floating phase; i.e. not excited phase of BLDC motor estimated method and arrange in pairs with open-loop start-up algorithm to implement velocity control of BLDC motors. Finally, simulation and experimental results will demonstrate effectiveness of the proposed sensorless control method.

Keywords: Axial-Flux, Sensorless, BLDC, Velocity control
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079969507
http://hdl.handle.net/11536/50814
显示于类别:Thesis