Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor

碩士 === 大葉大學 === 電機工程研究所 === 89 === Linear Motors are designed for direct driving payload. They are not only able to eliminate the nonlinear effects that generally exist in transmission systems driven by rotary motors, but also possess higher dynamic response, more precise position control capability...

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Main Author: 曾世峰
Other Authors: 周鵬程
Format: Others
Language:zh-TW
Published: 2001
Online Access:http://ndltd.ncl.edu.tw/handle/83233661794330332672
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spelling ndltd-TW-089DYU004420292015-10-13T12:43:59Z http://ndltd.ncl.edu.tw/handle/83233661794330332672 Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor 線性直流無刷馬達-自調式DSP控制器之設計 曾世峰 碩士 大葉大學 電機工程研究所 89 Linear Motors are designed for direct driving payload. They are not only able to eliminate the nonlinear effects that generally exist in transmission systems driven by rotary motors, but also possess higher dynamic response, more precise position control capability, higher static stiffness, and higher immunity from dust. They have gradually replaced the roles that rotary motors used to be in precision machinery. Due to the prosperous developments of integrated circuit technology, a full digital controller design has become the main stream of the current market for motor control systems. This paper notices the trends, which adopts the DSP technology to implement a full digital controller for both the rotary and linear motor system, and analyses their similarities and differences. An automatic parameter tuning procedure is also proposed that includes the identification of system model and controller design for motor control feedback loops. The method is extensive verified by simulation and experiment observations, and found good feasibility for industrial applications. 周鵬程 黃繼震 黃其泮 2001 學位論文 ; thesis 149 zh-TW
collection NDLTD
language zh-TW
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sources NDLTD
description 碩士 === 大葉大學 === 電機工程研究所 === 89 === Linear Motors are designed for direct driving payload. They are not only able to eliminate the nonlinear effects that generally exist in transmission systems driven by rotary motors, but also possess higher dynamic response, more precise position control capability, higher static stiffness, and higher immunity from dust. They have gradually replaced the roles that rotary motors used to be in precision machinery. Due to the prosperous developments of integrated circuit technology, a full digital controller design has become the main stream of the current market for motor control systems. This paper notices the trends, which adopts the DSP technology to implement a full digital controller for both the rotary and linear motor system, and analyses their similarities and differences. An automatic parameter tuning procedure is also proposed that includes the identification of system model and controller design for motor control feedback loops. The method is extensive verified by simulation and experiment observations, and found good feasibility for industrial applications.
author2 周鵬程
author_facet 周鵬程
曾世峰
author 曾世峰
spellingShingle 曾世峰
Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor
author_sort 曾世峰
title Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor
title_short Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor
title_full Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor
title_fullStr Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor
title_full_unstemmed Auto-tuning of DSP-based Controller Design for Linear Brushless DC Motor
title_sort auto-tuning of dsp-based controller design for linear brushless dc motor
publishDate 2001
url http://ndltd.ncl.edu.tw/handle/83233661794330332672
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