
Distributed Energy Systems
Design, Modeling, and Control
- 296 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Distributed Energy Systems
Design, Modeling, and Control
About this book
This book provides the insight of various topology and control algorithms used for power control in distributed energy power conversion systems such as solar, wind, and other power sources. It covers traditional and advanced control algorithms of power filtering including modelling and simulations, and hybrid power generation systems. The adaptive control, model predictive control, fuzzy-based controllers, Artificial Intelligence-based control algorithm, and optimization techniques application for estimating the error regulator gains are discussed.
Features of this book include the following:
- Covers the schemes for power quality enhancement, and voltage and frequency control.
- Provides complete mathematical modelling and simulation results of the various configurations of the renewable energy-based distribution systems.
- Includes design, control, and experimental results.
- Discusses mathematical modelling of classical and adaptive control techniques.
- Explores recent application of control algorithm and power conversion.
This book is aimed at researchers, professionals, and graduate students in power electronics, distributed power generation systems, control engineering, Artificial Intelligent-based control algorithms, optimization techniques, and renewable energy systems.
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Information
Table of contents
- Cover
- Half Title
- Series
- Title
- Copyright
- Contents
- Editor Biographies
- List of Contributors
- Preface
- Chapter 1 Introduction
- Chapter 2 Design and Performance Analysis of Grid Connected Hybrid-Distributed Generation Using DIgSILENT PowerFactory
- Chapter 3 Active, Passive and Hybrid Filters in DG Systems for Power Quality Improvement
- Chapter 4 A Performance Review of Control Algorithms for VSC to Improve the Power Quality Features in Single-Phase Wind-Based Distributed Generation
- Chapter 5 Variable Speed Wind and Hydro Power-Based Distributed Generation for Remote Electrification
- Chapter 6 Modelling of Energy Sources and Loads for Distributed Power Generation
- Chapter 7 Hardware Development of Three-to-Three Phase Indirect Matrix Converters
- Chapter 8 Grid-Interactive Solar Energy Conversion Systems
- Chapter 9 Multifunction Grid-Interactive Solar Photovoltaic Water Pumping System for Water Pumping and Distributed Generation Application
- Chapter 10 Fixed-Speed Wind and Solar Power System with Multifunctional Voltage Source Converter
- Chapter 11 DROGI-FLL-Based Control Algorithm for Coordinated Operation of 3P4W Wind/Solar Hybrid System
- Chapter 12 Intelligent Proportional Integral-Sliding Mode Control for Standalone Variable-Speed Wind Energy Conversion Systems
- Chapter 13 Lithium-Ion Batteries: Characteristics, Modelling and Application
- Chapter 14 A Complete Battery Management System of Li-Ion Batteries in Electric Vehicle Applications
- Chapter 15 Comprehensive Analysis of Ultracapacitors
- Chapter 16 Energy Scheduling and Flexibility Quantification in Buildings
- Chapter 17 Shade-Tolerant PV Microconverters
- Chapter 18 LCL-Filter Design and Application
- Index
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