Modeling and Design a Pitch Controller

Modeling and Design a Pitch Controller PDF Author: Nurbaiti Wahid
Publisher:
ISBN:
Category : Aerodynamics
Languages : en
Pages : 108

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Modeling and Design a Pitch Controller

Modeling and Design a Pitch Controller PDF Author: Nurbaiti Wahid
Publisher:
ISBN:
Category : Aerodynamics
Languages : en
Pages : 108

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Book Description


Modeling and Control Design of a Wind Tunnel Model Support

Modeling and Control Design of a Wind Tunnel Model Support PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 14

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An Airfoil Pitch Apparatus-modeling and Control Design

An Airfoil Pitch Apparatus-modeling and Control Design PDF Author: Daniel R. Andrews
Publisher:
ISBN:
Category :
Languages : en
Pages : 13

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Blade-Pitch Control for Wind Turbine Load Reductions

Blade-Pitch Control for Wind Turbine Load Reductions PDF Author: Wai Hou (Alan) Lio
Publisher: Springer
ISBN: 3319755323
Category : Technology & Engineering
Languages : en
Pages : 193

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Book Description
This thesis investigates the use of blade-pitch control and real-time wind measurements to reduce the structural loads on the rotors and blades of wind turbines. The first part of the thesis studies the main similarities between the various classes of current blade-pitch control strategies, which have to date remained overlooked by mainstream literature. It also investigates the feasibility of an estimator design that extracts the turbine tower motion signal from the blade load measurements. In turn, the second part of the thesis proposes a novel model predictive control layer in the control architecture that enables an existing controller to incorporate the upcoming wind information and constraint-handling features. This thesis provides essential clarifications of and systematic design guidelines for these topics, which can benefit the design of wind turbines and, it is hoped, inspire the development of more innovative mechanical load-reduction solutions in the field of wind energy.

Modeling and Fuzzy Logic-based Pitch Angle Controller Design of Horizontal Axis Wind Turbine

Modeling and Fuzzy Logic-based Pitch Angle Controller Design of Horizontal Axis Wind Turbine PDF Author: Majid Fard Nour Mohammad Nia
Publisher:
ISBN:
Category : Wind power
Languages : en
Pages : 92

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Book Description


Modeling, Identification and Control Methods in Renewable Energy Systems

Modeling, Identification and Control Methods in Renewable Energy Systems PDF Author: Nabil Derbel
Publisher: Springer
ISBN: 9811319456
Category : Technology & Engineering
Languages : en
Pages : 372

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Book Description
Most of the research and experiments in the fields of modeling and control systems have spent significant efforts to find rules from various complicated phenomena by principles, observations, measured data, logic derivations. The rules are normally summarized as concise and quantitative expressions or “models”. “Identification” provides mechanisms to establish the models and “control” provides mechanisms to improve system performances. This book reflects the relevant studies and applications in the area of renewable energies, with the latest research from interdisciplinary theoretical studies, computational algorithm development to exemplary applications. It discusses how modeling and control methods such as recurrent neural network, Pitch Angle Control, Fuzzy control, Sliding Mode Control and others are used in renewable systems. It covers topics as photovoltaic systems, wind turbines, maximum power point tracking, batteries for renewable energies, solar energy, thermal energy and so on. This book is edited and written by leading experts in the field and offers an ideal reference guide for researchers and engineers in the fields of electrical/electronic engineering, control system and energy.

Modeling and Simulation of Systems Using MATLAB and Simulink

Modeling and Simulation of Systems Using MATLAB and Simulink PDF Author: Devendra K. Chaturvedi
Publisher: CRC Press
ISBN: 1351834223
Category : Technology & Engineering
Languages : en
Pages : 923

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Book Description
Not only do modeling and simulation help provide a better understanding of how real-world systems function, they also enable us to predict system behavior before a system is actually built and analyze systems accurately under varying operating conditions. Modeling and Simulation of Systems Using MATLAB® and Simulink® provides comprehensive, state-of-the-art coverage of all the important aspects of modeling and simulating both physical and conceptual systems. Various real-life examples show how simulation plays a key role in understanding real-world systems. The author also explains how to effectively use MATLAB and Simulink software to successfully apply the modeling and simulation techniques presented. After introducing the underlying philosophy of systems, the book offers step-by-step procedures for modeling different types of systems using modeling techniques, such as the graph-theoretic approach, interpretive structural modeling, and system dynamics modeling. It then explores how simulation evolved from pre-computer days into the current science of today. The text also presents modern soft computing techniques, including artificial neural networks, fuzzy systems, and genetic algorithms, for modeling and simulating complex and nonlinear systems. The final chapter addresses discrete systems modeling. Preparing both undergraduate and graduate students for advanced modeling and simulation courses, this text helps them carry out effective simulation studies. In addition, graduate students should be able to comprehend and conduct simulation research after completing this book.

Wind Turbine Control and Monitoring

Wind Turbine Control and Monitoring PDF Author: Ningsu Luo
Publisher: Springer
ISBN: 3319084135
Category : Technology & Engineering
Languages : en
Pages : 462

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Book Description
Maximizing reader insights into the latest technical developments and trends involving wind turbine control and monitoring, fault diagnosis, and wind power systems, ‘Wind Turbine Control and Monitoring’ presents an accessible and straightforward introduction to wind turbines, but also includes an in-depth analysis incorporating illustrations, tables and examples on how to use wind turbine modeling and simulation software. Featuring analysis from leading experts and researchers in the field, the book provides new understanding, methodologies and algorithms of control and monitoring, computer tools for modeling and simulation, and advances the current state-of-the-art on wind turbine monitoring and fault diagnosis; power converter systems; and cooperative & fault-tolerant control systems for maximizing the wind power generation and reducing the maintenance cost. This book is primarily intended for researchers in the field of wind turbines, control, mechatronics and energy; postgraduates in the field of mechanical and electrical engineering; and graduate and senior undergraduate students in engineering wishing to expand their knowledge of wind energy systems. The book will also interest practicing engineers dealing with wind technology who will benefit from the comprehensive coverage of the theoretic control topics, the simplicity of the models and the use of commonly available control algorithms and monitoring techniques.

Modeling and Fuzzy Logic-based Pitch Angle Controller Design of Horizontal Axis Wind Turbine

Modeling and Fuzzy Logic-based Pitch Angle Controller Design of Horizontal Axis Wind Turbine PDF Author: Majid Fard Nour Mohammad Nia
Publisher:
ISBN:
Category : Wind power
Languages : en
Pages : 0

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Book Description


An Introduction to System Modeling and Control

An Introduction to System Modeling and Control PDF Author: John Chiasson
Publisher: John Wiley & Sons
ISBN: 1119842891
Category : Technology & Engineering
Languages : en
Pages : 756

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Book Description
A practical and straightforward exploration of the basic tools for the modeling, analysis, and design of control systems In An Introduction to System Modeling and Control, Dr. Chiasson delivers an accessible and intuitive guide to understanding modeling and control for students in electrical, mechanical, and aerospace/aeronautical engineering. The book begins with an introduction to the need for control by describing how an aircraft flies complete with figures illustrating roll, pitch, and yaw control using its ailerons, elevators, and rudder, respectively. The book moves on to rigid body dynamics about a single axis (gears, cart rolling down an incline) and then to modeling DC motors, DC tachometers, and optical encoders. Using the transfer function representation of these dynamic models, PID controllers are introduced as an effective way to track step inputs and reject constant disturbances. It is further shown how any transfer function model can be stabilized using output pole placement and on how two-degree of freedom controllers can be used to eliminate overshoot in step responses. Bode and Nyquist theory are then presented with an emphasis on how they give a quantitative insight into a control system's robustness and sensitivity. An Introduction to System Modeling and Control closes with chapters on modeling an inverted pendulum and a magnetic levitation system, trajectory tracking control using state feedback, and state estimation. In addition the book offers: A complete set of MATLAB/SIMULINK files for examples and problems included in the book. A set of lecture slides for each chapter. A solutions manual with recommended problems to assign. An analysis of the robustness and sensitivity of four different controller designs for an inverted pendulum (cart-pole). Perfect for electrical, mechanical, and aerospace/aeronautical engineering students, An Introduction to System Modeling and Control will also be an invaluable addition to the libraries of practicing engineers.