Design and construction of a precision tubular linear motor and controller

A design for a novel tubular high-precision direct-drive brushless linear motor has been developed. The novelty of the design lies in the orientation of the magnets in the mover. In conventional linear motors the magnets of the armature are arranged such that the attractive poles are adjacent throug...

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Main Author: Murphy, Bryan Craig
Other Authors: Kim, Won-jong, Howze, Jo W., Lee, Sooyong
Format: Book
Language:English
Published: Texas A&M University 2004
Subjects:
Online Access:https://hdl.handle.net/1969.1/101
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spelling fttexasamuniv:oai:oaktrust.library.tamu.edu:1969.1/101 2023-07-16T04:00:03+02:00 Design and construction of a precision tubular linear motor and controller Murphy, Bryan Craig Kim, Won-jong Howze, Jo W. Lee, Sooyong 2004-09-30 1990533 bytes 140371 bytes electronic application/pdf text/plain born digital https://hdl.handle.net/1969.1/101 en_US eng Texas A&M University https://hdl.handle.net/1969.1/101 actuator linear motor brushless robotic mechatronic Book Thesis Electronic Thesis text 2004 fttexasamuniv 2023-06-27T22:08:53Z A design for a novel tubular high-precision direct-drive brushless linear motor has been developed. The novelty of the design lies in the orientation of the magnets in the mover. In conventional linear motors the magnets of the armature are arranged such that the attractive poles are adjacent throughout, in an NS-NS-NS orientation, where N denotes the north pole and S denotes the south pole of the magnet. In the new design, the magnets in the moving part are oriented in an NS-NS-SN-SN orientation. This change in orientation yields greater magnetic field intensity near the like-pole region. The magnets of the mover are encased within a brass tube, which slides through a three-phase array of current-carrying coils. As the coils are powered, they induce a force on the permanent magnets according to the Lorentz force equation. The primary advantages of the motor are its compact nature, fast, precise positioning due to its low-mass moving part, direct actuation, extended travel range, and ability to extend beyond its base. The linear motor is used in conjunction with a position sensor, power amplifiers, and a controller to form a complete solution for positioning and actuation requirements. Controllers were developed for two applications, with a lead-lag as the backbone of each. For the first application, the principal requirements are for fast rise and settling times. For the second application, the primary requirement is for near-zero overshoot. With the controller for application 1, the motor has a rise time of 55 ms, a settling time of 600 ms, and 65% overshoot. With the controller for application 2 implemented, the motor has a rise time of 1 s, a settling time of 2.5 s, and 0.2% overshoot. The maximum force capability of the motor is measured to be 26.4 N. The positioning resolution is 35 ?m. This thesis discusses the motor's physical design, construction, implementation, testing, and tuning. It includes specifications of the components of the motor and other necessary equipment, desired and actual motor ... Book North Pole South pole Texas A&M University Digital Repository South Pole North Pole
institution Open Polar
collection Texas A&M University Digital Repository
op_collection_id fttexasamuniv
language English
topic actuator
linear motor
brushless
robotic
mechatronic
spellingShingle actuator
linear motor
brushless
robotic
mechatronic
Murphy, Bryan Craig
Design and construction of a precision tubular linear motor and controller
topic_facet actuator
linear motor
brushless
robotic
mechatronic
description A design for a novel tubular high-precision direct-drive brushless linear motor has been developed. The novelty of the design lies in the orientation of the magnets in the mover. In conventional linear motors the magnets of the armature are arranged such that the attractive poles are adjacent throughout, in an NS-NS-NS orientation, where N denotes the north pole and S denotes the south pole of the magnet. In the new design, the magnets in the moving part are oriented in an NS-NS-SN-SN orientation. This change in orientation yields greater magnetic field intensity near the like-pole region. The magnets of the mover are encased within a brass tube, which slides through a three-phase array of current-carrying coils. As the coils are powered, they induce a force on the permanent magnets according to the Lorentz force equation. The primary advantages of the motor are its compact nature, fast, precise positioning due to its low-mass moving part, direct actuation, extended travel range, and ability to extend beyond its base. The linear motor is used in conjunction with a position sensor, power amplifiers, and a controller to form a complete solution for positioning and actuation requirements. Controllers were developed for two applications, with a lead-lag as the backbone of each. For the first application, the principal requirements are for fast rise and settling times. For the second application, the primary requirement is for near-zero overshoot. With the controller for application 1, the motor has a rise time of 55 ms, a settling time of 600 ms, and 65% overshoot. With the controller for application 2 implemented, the motor has a rise time of 1 s, a settling time of 2.5 s, and 0.2% overshoot. The maximum force capability of the motor is measured to be 26.4 N. The positioning resolution is 35 ?m. This thesis discusses the motor's physical design, construction, implementation, testing, and tuning. It includes specifications of the components of the motor and other necessary equipment, desired and actual motor ...
author2 Kim, Won-jong
Howze, Jo W.
Lee, Sooyong
format Book
author Murphy, Bryan Craig
author_facet Murphy, Bryan Craig
author_sort Murphy, Bryan Craig
title Design and construction of a precision tubular linear motor and controller
title_short Design and construction of a precision tubular linear motor and controller
title_full Design and construction of a precision tubular linear motor and controller
title_fullStr Design and construction of a precision tubular linear motor and controller
title_full_unstemmed Design and construction of a precision tubular linear motor and controller
title_sort design and construction of a precision tubular linear motor and controller
publisher Texas A&M University
publishDate 2004
url https://hdl.handle.net/1969.1/101
geographic South Pole
North Pole
geographic_facet South Pole
North Pole
genre North Pole
South pole
genre_facet North Pole
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op_relation https://hdl.handle.net/1969.1/101
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