Marine Propulsion System

The research is an application of a multivariable system control for marine propulsion system where the propeller pitch is controlled to reach stability within different conditions and disturbances. Attention is paid also in fuel consumption in order to reduce the pollution via environment and cost...

وصف كامل

محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: AL SHARIF, HANAN AHMED (author)
منشور في: 2017
الموضوعات:
الوصول للمادة أونلاين:http://bspace.buid.ac.ae/handle/1234/1129
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author AL SHARIF, HANAN AHMED
author_facet AL SHARIF, HANAN AHMED
author_role author
dc.creator.none.fl_str_mv AL SHARIF, HANAN AHMED
dc.date.none.fl_str_mv 2017-09
2018-04-25T06:40:10Z
2018-04-25T06:40:10Z
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv 2013226003
http://bspace.buid.ac.ae/handle/1234/1129
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 marine propulsion system
fuel consumption
engine speed control
MATLAB/ SIMULINK
multivariable control system
dc.title.none.fl_str_mv Marine Propulsion System
dc.type.none.fl_str_mv Dissertation
description The research is an application of a multivariable system control for marine propulsion system where the propeller pitch is controlled to reach stability within different conditions and disturbances. Attention is paid also in fuel consumption in order to reduce the pollution via environment and cost reduction by improving the engine speed control. This dissertation is done on the marine propulsion system model that has been solved mathematically first and then testing the stability of the model using MATLAB/ SIMULINK software. By modeling the ship propulsion system it becomes easier to understand, what parameters are affecting the system and how to control them. The first part of the research is about an introduction of the marine propulsion system. The research problem states a model of multivariable control system for a propeller pitch with two inputs and three outputs. These are the fuel flow rate and the cylinder area controlling the torque and thrust that affects the ship speeds. The method used in this controller is the least effort technique as from the previous control dissertation this method is producing maximum stability, producing best performance and acting as best method for disturbance recovery. As mentioned above and concludes in this research after simulating the model, the least effort control technique shows the best performance and disturbance recovery using the simplest controller. These are the reasons of implementing it in many applications at the main time and the marine propulsion system a good example of the least effort technique application.
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network_name_str The British University in Dubai repository
oai_identifier_str oai:bspace.buid.ac.ae:1234/1129
publishDate 2017
publisher.none.fl_str_mv The British University in Dubai (BUiD)
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spelling Marine Propulsion SystemAL SHARIF, HANAN AHMEDmarine propulsion systemfuel consumptionengine speed controlMATLAB/ SIMULINKmultivariable control systemThe research is an application of a multivariable system control for marine propulsion system where the propeller pitch is controlled to reach stability within different conditions and disturbances. Attention is paid also in fuel consumption in order to reduce the pollution via environment and cost reduction by improving the engine speed control. This dissertation is done on the marine propulsion system model that has been solved mathematically first and then testing the stability of the model using MATLAB/ SIMULINK software. By modeling the ship propulsion system it becomes easier to understand, what parameters are affecting the system and how to control them. The first part of the research is about an introduction of the marine propulsion system. The research problem states a model of multivariable control system for a propeller pitch with two inputs and three outputs. These are the fuel flow rate and the cylinder area controlling the torque and thrust that affects the ship speeds. The method used in this controller is the least effort technique as from the previous control dissertation this method is producing maximum stability, producing best performance and acting as best method for disturbance recovery. As mentioned above and concludes in this research after simulating the model, the least effort control technique shows the best performance and disturbance recovery using the simplest controller. These are the reasons of implementing it in many applications at the main time and the marine propulsion system a good example of the least effort technique application.The British University in Dubai (BUiD)2018-04-25T06:40:10Z2018-04-25T06:40:10Z2017-09Dissertationapplication/pdf2013226003http://bspace.buid.ac.ae/handle/1234/1129enoai:bspace.buid.ac.ae:1234/11292021-09-16T08:06:56Z
spellingShingle Marine Propulsion System
AL SHARIF, HANAN AHMED
marine propulsion system
fuel consumption
engine speed control
MATLAB/ SIMULINK
multivariable control system
title Marine Propulsion System
title_full Marine Propulsion System
title_fullStr Marine Propulsion System
title_full_unstemmed Marine Propulsion System
title_short Marine Propulsion System
title_sort Marine Propulsion System
topic marine propulsion system
fuel consumption
engine speed control
MATLAB/ SIMULINK
multivariable control system
url http://bspace.buid.ac.ae/handle/1234/1129