Modelling and control of a cascaded reservoirs hydropower system

The cascaded reservoirs hydropower plant is a complex nonlinear system that involves interacting input and output nonlinear parameters, nonlinear flow rates, and nonlinear dynamical hydraulic heads. This thesis aims to enhance the existing cascaded reservoirs hydropower systems and future ones by ne...

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Main Author: Mahmoud, Mohamed Hassan
Other Authors: Dutton, Ken
Published: Sheffield Hallam University 2003
Subjects:
621
Online Access:https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.232873
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spelling ndltd-bl.uk-oai-ethos.bl.uk-2328732018-11-27T03:18:05ZModelling and control of a cascaded reservoirs hydropower systemMahmoud, Mohamed HassanDutton, Ken2003The cascaded reservoirs hydropower plant is a complex nonlinear system that involves interacting input and output nonlinear parameters, nonlinear flow rates, and nonlinear dynamical hydraulic heads. This thesis aims to enhance the existing cascaded reservoirs hydropower systems and future ones by new designs of control and optimization systems based on fuzzy logic. In this thesis, a new nonlinear mathematical model of a cascaded reservoirs hydropower plant is developed. The developed model was accurate enough to represent and simulate the plant nonlinear dynamics and to design and test three new fuzzy control systems addressing three major cascaded reservoirs hydropower plant problems. The first one is a fuzzy turbine governor replacing the classical PID controller, the second is a fuzzy controller for three hydraulically coupled turbines under nonlinear and interacting process conditions, and the third is a fuzzy supervisory control and optimization system for geographically-separated systems using the same mass of water in a partially-pumped-storage scheme.621Hydro energySheffield Hallam Universityhttps://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.232873http://shura.shu.ac.uk/20001/Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 621
Hydro energy
spellingShingle 621
Hydro energy
Mahmoud, Mohamed Hassan
Modelling and control of a cascaded reservoirs hydropower system
description The cascaded reservoirs hydropower plant is a complex nonlinear system that involves interacting input and output nonlinear parameters, nonlinear flow rates, and nonlinear dynamical hydraulic heads. This thesis aims to enhance the existing cascaded reservoirs hydropower systems and future ones by new designs of control and optimization systems based on fuzzy logic. In this thesis, a new nonlinear mathematical model of a cascaded reservoirs hydropower plant is developed. The developed model was accurate enough to represent and simulate the plant nonlinear dynamics and to design and test three new fuzzy control systems addressing three major cascaded reservoirs hydropower plant problems. The first one is a fuzzy turbine governor replacing the classical PID controller, the second is a fuzzy controller for three hydraulically coupled turbines under nonlinear and interacting process conditions, and the third is a fuzzy supervisory control and optimization system for geographically-separated systems using the same mass of water in a partially-pumped-storage scheme.
author2 Dutton, Ken
author_facet Dutton, Ken
Mahmoud, Mohamed Hassan
author Mahmoud, Mohamed Hassan
author_sort Mahmoud, Mohamed Hassan
title Modelling and control of a cascaded reservoirs hydropower system
title_short Modelling and control of a cascaded reservoirs hydropower system
title_full Modelling and control of a cascaded reservoirs hydropower system
title_fullStr Modelling and control of a cascaded reservoirs hydropower system
title_full_unstemmed Modelling and control of a cascaded reservoirs hydropower system
title_sort modelling and control of a cascaded reservoirs hydropower system
publisher Sheffield Hallam University
publishDate 2003
url https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.232873
work_keys_str_mv AT mahmoudmohamedhassan modellingandcontrolofacascadedreservoirshydropowersystem
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