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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.
This book consolidates some of the most promising advanced smart
grid functionalities and provides a comprehensive set of guidelines
for their implementation/evaluation using DIgSILENT Power Factory.
It includes specific aspects of modeling, simulation and analysis,
for example wide-area monitoring, visualization and control,
dynamic capability rating, real-time load measurement and
management, interfaces and co-simulation for modeling and
simulation of hybrid systems. It also presents key advanced
features of modeling and automation of calculations using
PowerFactory, such as the use of domain-specific (DSL) and
DIgSILENT Programming (DPL) languages, and utilizes a variety of
methodologies including theoretical explanations, practical
examples and guidelines. Providing a concise compilation of
significant outcomes by experienced users and developers of this
program, it is a valuable resource for postgraduate students and
engineers working in power-system operation and planning.
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.
This book consolidates some of the most promising advanced smart
grid functionalities and provides a comprehensive set of guidelines
for their implementation/evaluation using DIgSILENT Power Factory.
It includes specific aspects of modeling, simulation and analysis,
for example wide-area monitoring, visualization and control,
dynamic capability rating, real-time load measurement and
management, interfaces and co-simulation for modeling and
simulation of hybrid systems. It also presents key advanced
features of modeling and automation of calculations using
PowerFactory, such as the use of domain-specific (DSL) and
DIgSILENT Programming (DPL) languages, and utilizes a variety of
methodologies including theoretical explanations, practical
examples and guidelines. Providing a concise compilation of
significant outcomes by experienced users and developers of this
program, it is a valuable resource for postgraduate students and
engineers working in power-system operation and planning.
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