Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing

Because of their insane and various capabilities, Magnetic Bearing are progressively and widely being utilized as a part of various applications in different businesses. The most critical issue in utilizing Active MB is its control system which requires systems to execute and dealing with the dynami...

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Main Author: Idris, Muhammad Khairi
Format: Final Year Project
Language: English
Institution: Universiti Teknologi Petronas
Record Id / ISBN-0: utp-utpedia.17357 /
Published: IRC 2016
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Online Access: http://utpedia.utp.edu.my/17357/1/Hardbound_Muhammad%20Khairi_17593_ME.pdf
http://utpedia.utp.edu.my/17357/
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spelling utp-utpedia.173572017-11-15T09:55:10Z http://utpedia.utp.edu.my/17357/ Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing Idris, Muhammad Khairi TJ Mechanical engineering and machinery Because of their insane and various capabilities, Magnetic Bearing are progressively and widely being utilized as a part of various applications in different businesses. The most critical issue in utilizing Active MB is its control system which requires systems to execute and dealing with the dynamic response of rotor. A co-simulation using ADAMS and MATLAB is proposed for the dynamic simulation of high speed rotating flexible rotor supported by active magnetic bearings. A co-simulation using ADAMS and MATLAB is proposed for the dynamic simulation of high speed rotating flexible rotor supported by active magnetic bearings. IRC 2016-09 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/17357/1/Hardbound_Muhammad%20Khairi_17593_ME.pdf Idris, Muhammad Khairi (2016) Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing. IRC, Universiti Teknologi PETRONAS. (Submitted)
institution Universiti Teknologi Petronas
collection UTPedia
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Idris, Muhammad Khairi
Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing
description Because of their insane and various capabilities, Magnetic Bearing are progressively and widely being utilized as a part of various applications in different businesses. The most critical issue in utilizing Active MB is its control system which requires systems to execute and dealing with the dynamic response of rotor. A co-simulation using ADAMS and MATLAB is proposed for the dynamic simulation of high speed rotating flexible rotor supported by active magnetic bearings. A co-simulation using ADAMS and MATLAB is proposed for the dynamic simulation of high speed rotating flexible rotor supported by active magnetic bearings.
format Final Year Project
author Idris, Muhammad Khairi
author_sort Idris, Muhammad Khairi
title Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing
title_short Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing
title_full Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing
title_fullStr Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing
title_full_unstemmed Effect of Sensor-Actuator Non-collocation to Dynamic Response of Flywheel Energy Storage System Supported by Active Magnetic Bearing
title_sort effect of sensor-actuator non-collocation to dynamic response of flywheel energy storage system supported by active magnetic bearing
publisher IRC
publishDate 2016
url http://utpedia.utp.edu.my/17357/1/Hardbound_Muhammad%20Khairi_17593_ME.pdf
http://utpedia.utp.edu.my/17357/
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score 11.62408