Modelling And Simulation Of Power Electronic Converter Dominated Power Systems In Powerfactory
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Author |
: Francisco M. Gonzalez-Longatt |
Publisher |
: Springer Nature |
Total Pages |
: 381 |
Release |
: 2021 |
ISBN-10 |
: 9783030541248 |
ISBN-13 |
: 303054124X |
Rating |
: 4/5 (48 Downloads) |
Synopsis Modelling and Simulation of Power Electronic Converter Dominated Power Systems in PowerFactory by : Francisco M. Gonzalez-Longatt
This book provides an overview of power electronic converters for numerical simulations based on DIgSILENT PowerFactory. It covers the working principles, key assumptions and implementation of models of different types of these power systems. The book is divided into three main parts: the first discusses high-voltage direct currents, while the second part examines distribution systems and micro-grids. Lastly, the third addresses the equipment and technologies used in modelling and simulation. Each chapter includes practical examples and exercises, and the accompanying software illustrates essential models, principles and performance using DIgSILENT PowerFactory. Exploring various current topics in the field of modelling power systems, this book will appeal to a variety of readers, ranging from students to practitioners.
Author |
: Morteza Zare Oskouei |
Publisher |
: Springer Nature |
Total Pages |
: 175 |
Release |
: 2020-05-19 |
ISBN-10 |
: 9783030443764 |
ISBN-13 |
: 3030443760 |
Rating |
: 4/5 (64 Downloads) |
Synopsis Integration of Renewable Energy Sources Into the Power Grid Through PowerFactory by : Morteza Zare Oskouei
This book evaluates a number of serious technical challenges related to the integration of renewable energy sources into the power grid using the DIgSILENT PowerFactory power system simulation software package. It provides a fresh perspective on analyzing power systems according to renewable energy sources and how they affect power system performance in various situations. The book examines load flow, short-circuit, RMS simulation, power quality, and system reliability in the presence of renewable energy sources, and presents readers with the tools needed for modeling, simulation, and analysis for network planning. The book is a valuable resource for researchers, engineers, and students working to solve power system problems in the presence of renewable energy sources in power system operations and utilities.
Author |
: Saurabh Mani Tripathi |
Publisher |
: Springer Nature |
Total Pages |
: 463 |
Release |
: 2023 |
ISBN-10 |
: 9789819902248 |
ISBN-13 |
: 981990224X |
Rating |
: 4/5 (48 Downloads) |
Synopsis Real-Time Simulation and Hardware-in-the-Loop Testing Using Typhoon HIL by : Saurabh Mani Tripathi
This book is an edited collection that explores the fundamental concepts of real-time simulation/hardware-in-the-loop testing using Typhoon HIL for complex electrical systems. Typhoon HIL has recently emerged as a powerful tool in the rapidly growing field of ultra-high-fidelity controller-hardware-in-the-loop (C-HIL) simulations for power electronics, microgrids, and distribution networks. The book integrates the coverage of underlying theory and acclaimed methodological approaches and high-value applications of real-time simulation and hardware-in-the-loop testingall from the perspectives of eminent researchers around the globe utilizing Typhoon HIL. This book serves as a valuable resource for engineers, academicians, researchers, experienced professionals, and research scholars engaged in /becoming familiarized with the real-time simulation of complex electrical systems using Typhoon HIL with a specific focus on hardware-in-the-loop testing.
Author |
: Gustav Lammert |
Publisher |
: kassel university press GmbH |
Total Pages |
: 203 |
Release |
: 2019 |
ISBN-10 |
: 9783737607162 |
ISBN-13 |
: 3737607168 |
Rating |
: 4/5 (62 Downloads) |
Synopsis Modelling, Control and Stability Analysis of Photovoltaic Systems in Power System Dynamic Studies by : Gustav Lammert
This thesis investigates the impact of: i) the low voltage ride-through and dynamic voltage support capability; ii) the active current recovery rate; iii) the local voltage control; and iv) the plant-level voltage control of large-scale photovoltaic systems on short-term voltage stability and fault-induced delayed voltage recovery as well as transient and frequency stability. The power system dynamic performance is analysed using state-of-the-art methods, such as phasor mode time-domain simulations and the calculation of the critical clearing time that determines the stability margin. Moreover, the recently developed Kullback-Leibler divergence measure is applied to assess the quality of the voltage recovery. Drawbacks of this metric are outlined and a novel metric, the so-called voltage recovery index, is defined that quantifies the delayed voltage recovery more systematically. The studies are performed with a generic photovoltaic system model and typical model parameters are used that were determined in collaboration with a manufacturer. The stability analysis is performed in DIgSILENT PowerFactory using: i) a one-load infinite-bus system; and ii) an IEEE multi-machine voltage stability test system, namely the Nordic test system. The results show that with the adequate control of photovoltaic systems, power system dynamic performance can be significantly improved.
Author |
: Peter W. Sauer |
Publisher |
: |
Total Pages |
: 376 |
Release |
: 1998 |
ISBN-10 |
: STANFORD:36105019309439 |
ISBN-13 |
: |
Rating |
: 4/5 (39 Downloads) |
Synopsis Power System Dynamics and Stability by : Peter W. Sauer
For a one-semester senior or beginning graduate level course in power system dynamics. This text begins with the fundamental laws for basic devices and systems in a mathematical modeling context. It includes systematic derivations of standard synchronous machine models with their fundamental controls. These individual models are interconnected for system analysis and simulation. Singular perturbation is used to derive and explain reduced-order models.
Author |
: Thomas Ackermann |
Publisher |
: John Wiley & Sons |
Total Pages |
: 1132 |
Release |
: 2012-04-23 |
ISBN-10 |
: 9781119942085 |
ISBN-13 |
: 111994208X |
Rating |
: 4/5 (85 Downloads) |
Synopsis Wind Power in Power Systems by : Thomas Ackermann
The second edition of the highly acclaimed Wind Power in Power Systems has been thoroughly revised and expanded to reflect the latest challenges associated with increasing wind power penetration levels. Since its first release, practical experiences with high wind power penetration levels have significantly increased. This book presents an overview of the lessons learned in integrating wind power into power systems and provides an outlook of the relevant issues and solutions to allow even higher wind power penetration levels. This includes the development of standard wind turbine simulation models. This extensive update has 23 brand new chapters in cutting-edge areas including offshore wind farms and storage options, performance validation and certification for grid codes, and the provision of reactive power and voltage control from wind power plants. Key features: Offers an international perspective on integrating a high penetration of wind power into the power system, from basic network interconnection to industry deregulation; Outlines the methodology and results of European and North American large-scale grid integration studies; Extensive practical experience from wind power and power system experts and transmission systems operators in Germany, Denmark, Spain, UK, Ireland, USA, China and New Zealand; Presents various wind turbine designs from the electrical perspective and models for their simulation, and discusses industry standards and world-wide grid codes, along with power quality issues; Considers concepts to increase penetration of wind power in power systems, from wind turbine, power plant and power system redesign to smart grid and storage solutions. Carefully edited for a highly coherent structure, this work remains an essential reference for power system engineers, transmission and distribution network operator and planner, wind turbine designers, wind project developers and wind energy consultants dealing with the integration of wind power into the distribution or transmission network. Up-to-date and comprehensive, it is also useful for graduate students, researchers, regulation authorities, and policy makers who work in the area of wind power and need to understand the relevant power system integration issues.
Author |
: Xiaorong Xie |
Publisher |
: Springer Nature |
Total Pages |
: 251 |
Release |
: |
ISBN-10 |
: 9783031533570 |
ISBN-13 |
: 3031533577 |
Rating |
: 4/5 (70 Downloads) |
Synopsis Oscillatory Stability of Converter-Dominated Power Systems by : Xiaorong Xie
Author |
: Juergen Schlabbach |
Publisher |
: John Wiley & Sons |
Total Pages |
: 396 |
Release |
: 2014-07-21 |
ISBN-10 |
: 9783527412600 |
ISBN-13 |
: 3527412603 |
Rating |
: 4/5 (00 Downloads) |
Synopsis Power System Engineering by : Juergen Schlabbach
With its focus on the requirements and procedures of tendering and project contracting, this book enables the reader to adapt the basics of power systems and equipment design to special tasks and engineering projects, e.g. the integration of renewable energy sources.
Author |
: Sixing Du |
Publisher |
: John Wiley & Sons |
Total Pages |
: 386 |
Release |
: 2018-02-22 |
ISBN-10 |
: 9781119367239 |
ISBN-13 |
: 1119367239 |
Rating |
: 4/5 (39 Downloads) |
Synopsis Modular Multilevel Converters by : Sixing Du
An invaluable academic reference for the area of high-power converters, covering all the latest developments in the field High-power multilevel converters are well known in industry and academia as one of the preferred choices for efficient power conversion. Over the past decade, several power converters have been developed and commercialized in the form of standard and customized products that power a wide range of industrial applications. Currently, the modular multilevel converter is a fast-growing technology and has received wide acceptance from both industry and academia. Providing adequate technical background for graduate- and undergraduate-level teaching, this book includes a comprehensive analysis of the conventional and advanced modular multilevel converters employed in motor drives, HVDC systems, and power quality improvement. Modular Multilevel Converters: Analysis, Control, and Applications provides an overview of high-power converters, reference frame theory, classical control methods, pulse width modulation schemes, advanced model predictive control methods, modeling of ac drives, advanced drive control schemes, modeling and control of HVDC systems, active and reactive power control, power quality problems, reactive power, harmonics and unbalance compensation, modeling and control of static synchronous compensators (STATCOM) and unified power quality compensators. Furthermore, this book: Explores technical challenges, modeling, and control of various modular multilevel converters in a wide range of applications such as transformer and transformerless motor drives, high voltage direct current transmission systems, and power quality improvement Reflects the latest developments in high-power converters in medium-voltage motor drive systems Offers design guidance with tables, charts graphs, and MATLAB simulations Modular Multilevel Converters: Analysis, Control, and Applications is a valuable reference book for academic researchers, practicing engineers, and other professionals in the field of high power converters. It also serves well as a textbook for graduate-level students.
Author |
: Slobodan N. Vukosavic |
Publisher |
: Springer |
Total Pages |
: 288 |
Release |
: 2018-03-21 |
ISBN-10 |
: 9783319732787 |
ISBN-13 |
: 3319732781 |
Rating |
: 4/5 (87 Downloads) |
Synopsis Grid-Side Converters Control and Design by : Slobodan N. Vukosavic
This textbook is intended for engineering students taking courses in power electronics, renewable energy sources, smart grids or static power converters. It is also appropriate for students preparing a capstone project where they need to understand, model, supply, control and specify the grid side power converters. The main goal of the book is developing in students the skills that are required to design, control and use static power converters that serve as an interface between the ac grid and renewable power sources. The same skills can be used to design, control and use the static power converters used within the micro-grids and nano-grids, as the converters that provide the interface between such grids and the external grid. The author’s approach starts with basic functionality and the role of grid connected power converters in their typical applications, and their static and dynamic characteristics. Particular effort is dedicated to developing simple, concise, intuitive and easy-to-use mathematical models that summarize the essence of the grid side converter dynamics. Mathematics is reduced to a necessary minimum, solved examples are used extensively to introduce new concepts, and exercises are used to test mastery of new skills.