A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د

This research present a study of the control of multivariable systems which are subjected to variable input and external load change. The topic of research is to design a controller to control the air gap of the suspension system of a Maglev Train. The design is conducted by implementing a recent re...

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Al-NASSIR, IBRAHIM AHMED (author)
منشور في: 2017
الموضوعات:
الوصول للمادة أونلاين:http://bspace.buid.ac.ae/handle/1234/1013
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author Al-NASSIR, IBRAHIM AHMED
author_facet Al-NASSIR, IBRAHIM AHMED
author_role author
dc.creator.none.fl_str_mv Al-NASSIR, IBRAHIM AHMED
dc.date.none.fl_str_mv 2017-08-15T10:45:12Z
2017-08-15T10:45:12Z
2017-02
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv 2013215029
http://bspace.buid.ac.ae/handle/1234/1013
dc.language.none.fl_str_mv en
dc.publisher.none.fl_str_mv The British University in Dubai (BUiD)
dc.subject.none.fl_str_mv multivariable feedback control
Maglev train
Least Effort Technique
dc.title.none.fl_str_mv A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
dc.type.none.fl_str_mv Dissertation
description This research present a study of the control of multivariable systems which are subjected to variable input and external load change. The topic of research is to design a controller to control the air gap of the suspension system of a Maglev Train. The design is conducted by implementing a recent research methodology called Least Effort Technique. This methodology were introduced by R. Whalley and M. Ebrahimi in 2006. The significant advantageous of Least effort technique is to reduce the energy consumption in the controller, reducing actuator activity, wear, heat, heat generation, operational and maintenance cost. This research emphasizes this technique enabling comparable transient and disturbance rejection characteristics against results obtained by classical control theories, such as Inverse Nyquist Array and H∞ control theory. The research is focusing on the control problems of the vertical clearance in the suspension system. Initially, the mathematical model of the system is compensated the effect of double integrator which appears in the characteristic equation Simulation of the system is presented to evaluate the effectiveness of the controller to maintain the air gap within the allowable limits, MATLAB-SIMILINK software will be used for simulation purposes and design validation.
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network_name_str The British University in Dubai repository
oai_identifier_str oai:bspace.buid.ac.ae:1234/1013
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publisher.none.fl_str_mv The British University in Dubai (BUiD)
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spelling A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System دAl-NASSIR, IBRAHIM AHMEDmultivariable feedback controlMaglev trainLeast Effort TechniqueThis research present a study of the control of multivariable systems which are subjected to variable input and external load change. The topic of research is to design a controller to control the air gap of the suspension system of a Maglev Train. The design is conducted by implementing a recent research methodology called Least Effort Technique. This methodology were introduced by R. Whalley and M. Ebrahimi in 2006. The significant advantageous of Least effort technique is to reduce the energy consumption in the controller, reducing actuator activity, wear, heat, heat generation, operational and maintenance cost. This research emphasizes this technique enabling comparable transient and disturbance rejection characteristics against results obtained by classical control theories, such as Inverse Nyquist Array and H∞ control theory. The research is focusing on the control problems of the vertical clearance in the suspension system. Initially, the mathematical model of the system is compensated the effect of double integrator which appears in the characteristic equation Simulation of the system is presented to evaluate the effectiveness of the controller to maintain the air gap within the allowable limits, MATLAB-SIMILINK software will be used for simulation purposes and design validation.The British University in Dubai (BUiD)2017-08-15T10:45:12Z2017-08-15T10:45:12Z2017-02Dissertationapplication/pdf2013215029http://bspace.buid.ac.ae/handle/1234/1013enoai:bspace.buid.ac.ae:1234/10132021-09-16T10:58:06Z
spellingShingle A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
Al-NASSIR, IBRAHIM AHMED
multivariable feedback control
Maglev train
Least Effort Technique
title A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
title_full A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
title_fullStr A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
title_full_unstemmed A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
title_short A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
title_sort A Design Study for a Multivariable Feedback Control System for Controlling the Air Gap of Maglev Train Suspension System د
topic multivariable feedback control
Maglev train
Least Effort Technique
url http://bspace.buid.ac.ae/handle/1234/1013