Hybrid-renewable energy systems in microgrids: integration, developments and control
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
duxford, United Kingdom
Elsevier, Woodhead Publishing
[2018]
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Schriftenreihe: | Woodhead publishing series in energy
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Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | xiii, 253 Seiten Illustrationen, Diagramme, Karten |
ISBN: | 9780081024935 |
Internformat
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245 | 1 | 0 | |a Hybrid-renewable energy systems in microgrids |b integration, developments and control |c edited by A. Hina Fathima [und 5 weiteren] |
264 | 1 | |a duxford, United Kingdom |b Elsevier, Woodhead Publishing |c [2018] | |
300 | |a xiii, 253 Seiten |b Illustrationen, Diagramme, Karten | ||
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490 | 0 | |a Woodhead publishing series in energy | |
700 | 1 | |a Fathima, A. Hina |4 edt | |
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Datensatz im Suchindex
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adam_text | Contents
List of Contributors xi
1 Hybrid PV-Wind Renewable Energy Sources for Microgrid Application:
an Overview 1
Ujjwal Datta, Akhtar Kalam, Juan Shi
1 Introduction 1
2 Hybrid Renewable Energy System and Its Benefit 3
3 Hybrid Renewable Energy System Configuration 4
4 Optimization of Hybrid System 6
4.1 Optimization Objectives 7
4.2 Optimization Practices in HRES 8
5 Energy Storage System in MG 11
6 Stability Concerns in a HRES MG System 14
7 Simulation 15
7.1 Load Generator With PV Only 16
7.2 Load Generator With Wind Only 16
7.3 Load Generator With PV-Wind 19
7.4 Comparison of Voltages With Different Combinations of PV/Wind 19
8 Conclusion 19
References 20
2 Microgrid Architecture, Control, and Operation 23
Mekhilef Saad Bin Arif ■ M. Asif Hasan
1 Introduction 23
2 Microgrid Architecture 24
3 Mathematical Analysis of Microgrid Structure 24
3.1 AC Microgrid 26
3.2 DC Microgrid 28
3.3 AC-DC Hybrid Microgrid 29
4 Microgrid Control and Operation 30
4.1 Hierarchical Control of Microgrid 30
5 Mathematical Model of Hierarchical Control 31
5.1 Droop-Based Control of Microgrid 32
6 Simulation Study 34
7 Conclusion 36
References 36
VI
Contents
3 Integrated Renewable Energy Sources With Droop Control
Techniques-Based Microgrid Operation 39
Wilson Jasmine Praiseliny J. Belwin Edward
1 Introduction 39
2 Framework of Microgrid Technology 41
2.1 Physical Equipment 41
2.2 Protection and Control 41
2.3 Automation and Control 42
2.4 Monitoring, Scheduling, Optimization, and Dispatch 42
2.5 Energy Market and Coordinating the Response of Smart Grid
Operation 42
3 DC Microgrid and AC Microgrid 42
3.1 DC Microgrid 42
3.2 AC Microgrid 43
4 Proposed Structure of Grid Connected Microgrid System 45
5 Characteristics and Modeling of Renewable Energy
Sources 46
5.1 Solar PV 46
5.2 Battery Modeling 47
6 Concept of Droop Control 49
6.1 Droop Control Techniques in Microgrid 50
7 Case Study of Solar PV and BESS With P/Q and V/f Droop
Control 51
7.1 Results and Discussion 54
8 Conclusion 57
References 58
4 Multilevel Inverters: an Enabling Technology 61
Jayabal Gayathrimonicka Subarnan
1 Introduction 61
2 Multilevel Inverter Topologies 63
2.1 Diode-Clamped Inverter 63
2.2 Capacitor-Clamped Inverter 65
2.3 Cascaded H Bridge Inverters 66
2.4 Comparison of Different Multilevel Inverters 68
3 Matlab/Simulink Modeling and Simulation of Multilevel
Inverters 69
3.1 Single Phase Three Level CMLI 69
4 Applications of Multilevel Inverters 69
4.1 Energy and Power Systems 70
4.2 Production 72
4.3 Transportation 73
4.4 Utilization in Grid Connected Systems 77
5 Conclusion 79
References 79
Contents
vii
5 Multilevel Inverters for Photovoltaic Energy Systems in
Hybrid-Renewable Energy Systems 81
Ehsan Najafi, Natarajan Prabaharan
1 Multilevel Inverter Topology 81
1.1 Switching Sequences 84
1.2 Number of Components 87
2 Evolution of Hybrid Multilevel Inverters 88
3 Leakage Current in Photo Voltaic Inverters 92
References 96
6 An Overview of Control Techniques and Technical Challenge
for Inverters in Micro Grid 97
Natarajan Prabaharan, Amalorpavaraj Rini Ann Jerin, Ehsan Najafi,
Kaliannan Palanisamy
1 Introduction 97
2 Grid Inverter Synchronization 98
2.1 Highlights of PLL Techniques 99
3 Controllers Based on Inverter in Microgrids 101
3.1 Centralized Method 103
3.2 Decentralized Method 103
3.3 Hierarchical Control 103
4 Dynamic Security of Microgrids 104
4.1 Challenges in Microgrid 104
5 Conclusion 105
References 105
7 Study of Control Strategies of Power Electronics During Faults
in Microgrids 109
Jundi Jia, Guangya Yang, Arne Hejde Nielsen, Peter R^nne-Hansen
1 Introduction 109
2 Instantaneous Power Theory 110
3 Grid-Connected Mode 113
3.1 Flexible Oscillating Power Control 115
3.2 Flexible Positive- and Negative-Sequence Power Control 118
3.3 Inner Current Controller 121
3.4 Converter Current Limitation 126
4 Islanded Mode 131
4.1 Basic Control Structure 132
4.2 Negative-Sequence Component Control 135
5 Simulation Results 136
5.1 System Description 136
5.2 Steady State 137
5.3 Performance Under Unbalanced Faults 139
5.4 Discussion on Microgrid Protection 141
References 145
itents
147
147
148
148
150
151
155
157
157
158
158
162
163
163
165
165
166
167
167
172
174
184
190
191
193
195
195
196
196
197
198
198
199
199
199
199
Renewable Systems and Energy Storages for Hybrid Systems
Amjed Hina Fathima, Kaliannan Palanisamy
1 Introduction
2 Energy Storage Systems
3 Need for ESS
4 Characteristic Features of ESS
5 Types of ESS
6 Impact of Market Infrastructure on Energy Storage Systems
6.1 Utility Scale
6.2 Behind the Meter
6.3 Remote Power Systems
7 Case Studies
8 Technological Challenges for ESS
9 Conclusion
References
Sensitivity and Transient Stability Analysis of Fixed Speed Wind
Generator With Series Dynamic Braking Resistor
Mohammad Hasanuzzaman Shawon, Ahmed Al-Durra, S.M. Muyeen
1 Introduction
2 Modeling of the System
2.1 Wind Turbine Modeling
2.2 Drive Train Modeling
2.3 Small Signal Stability Analysis
2.4 Sensitivity Analysis
2.5 Transient Stability Analysis
3 Conclusion
4 Appendix
References
Smart Grid and Power Quality Issues
Amalorpavaraj Rini Ann Jerin, Natarajan Prabaharan, Nallapaneni
Manoj Kumar, Kaliannan Palanisamy, Subramaniam Umashankar,
Pierluigi Siano
1 Introduction
2 Microgrids in a Smart Grid
2.1 Power Quality Concerns in AC Microgrids
2.2 Power Quality Concerns in DC Microgrids
3 Potential Impact on Power Quality
3.1 Slow and Rapid Voltage Variations
3.2 Short Duration Under Voltages
3.3 Harmonic Distortions
3.4 Switching Transients
3.5 Power Quality Concerns Related to Demand Side
Management
Contents ix
4 New Power Quality Indices 200
5 Conclusion 200
References 200
11 Techno Economic Feasibility Analysis of Different Combination
of PV-Wind-Diesel-Battery Hybrid System 203
Amit Kumar Yadav, Hasmat Malik, Mekhilef Saad Bin Arif
1 Introduction 203
2 Methodology 204
2.1 Hybrid Optimization Model for Electric Renewable Pro 204
2.2 Selected Cities for Modelling 211
2.3 Telecom Load 211
2.4 Solar Radiation and Wind Speed 212
3 Results and Discussions 212
4 Conclusion 216
References 216
12 Solar-Wind Hybrid Renewable Energy System: Current Status
of Research on Configurations, Control, and Sizing Methodologies 219
Piyali Ganguly, Akhtar Kalam, Aladin Zayegh
1 Introduction 219
1.1 Grid Connected Systems 219
1.2 Standalone Systems 220
1.3 Hybrid Renewable Energy Systems 221
2 Feasibility Study 224
2.1 Time-Series Meteorological Data 224
2.2 Statistical Meteorological Data 225
3 Simulation Modelling of HRES Components 227
3.1 Modelling of Photovoltaic System 227
3.2 Modelling the Wind Energy System 228
3.3 Modelling of Battery Storage System 230
4 Optimization Techniques for Hybrid Solar-Wind System 231
4.1 Criteria for Hybrid Solar-Wind System Optimization 231
4.2 Optimum Sizing Methods for Hybrid Solar-Wind System 233
5 Control of HRES 240
6 Conclusion 241
References 242
Index 249
WOODHEAD PUBLISHING SERIES IN ENERGY
Hybrid-Renewable Energy Systems in Microgrids presents the most up-to-date research
and developments on hybrid-renewable energy systems (HRES) in this one comprehensive
resource. With an enriched collection of topics pertaining to the control and management
of hybrid renewable systems, this book presents recent innovations which are molding
the future of power systems and their developing infrastructure. It also explores the
distinct integration solutions and control techniques being implemented into HRES
through the analysis of various global case studies.
Developers of modern power grids and renewable systems face many issues while
integrating multiple renewable/nonrenewable DGs as hybrid systems. This book, with
a focus on devices and methods to integrate different renewables, provides those
researching and working in renewable energy solutions and power electronics with a
firm understanding of the technologies available, converter and multilevel inverter
considerations, and control and operation strategies.
Key features
• Significant case studies of control techniques and integration solutions which
provide a deeper level of understanding and knowledge.
• Existing research combined with this single informative resource on microgrids
with HRES integration and control.
• Architectural considerations and various control strategies for the operation
of hybrid systems.
About the editors
Dr. A. Hina Fathima is from HCL Technologies Ltd., Chennai, India.
Dr. N. Prabaharan is from the Madanapalle Institute of Technology and Science,
Madanapalle, Andra Pradesh, India.
Dr. K. Palanisamy is Associate Professor, at the VIT University, Vellore, India.
Dr. Akhtar Kalam is Professor at the Victoria University, in Australia.
Dr. Saad Mekhilef is from University of Malay, Kuala Lumpur, Malaysia.
Dr. Jackson. J. Justo is from University of Dar es Salaam, Dar es Salaam, Tanzania.
WP
WOODHEAD
PUBLISHING
An imprint of Elsevier
elsevier com/books-»r»d-journals
|
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spelling | Hybrid-renewable energy systems in microgrids integration, developments and control edited by A. Hina Fathima [und 5 weiteren] duxford, United Kingdom Elsevier, Woodhead Publishing [2018] xiii, 253 Seiten Illustrationen, Diagramme, Karten txt rdacontent n rdamedia nc rdacarrier Woodhead publishing series in energy Fathima, A. Hina edt Erscheint auch als Online-Ausgabe 978-0-08-102494-2 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030280319&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030280319&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | Hybrid-renewable energy systems in microgrids integration, developments and control |
title | Hybrid-renewable energy systems in microgrids integration, developments and control |
title_auth | Hybrid-renewable energy systems in microgrids integration, developments and control |
title_exact_search | Hybrid-renewable energy systems in microgrids integration, developments and control |
title_full | Hybrid-renewable energy systems in microgrids integration, developments and control edited by A. Hina Fathima [und 5 weiteren] |
title_fullStr | Hybrid-renewable energy systems in microgrids integration, developments and control edited by A. Hina Fathima [und 5 weiteren] |
title_full_unstemmed | Hybrid-renewable energy systems in microgrids integration, developments and control edited by A. Hina Fathima [und 5 weiteren] |
title_short | Hybrid-renewable energy systems in microgrids |
title_sort | hybrid renewable energy systems in microgrids integration developments and control |
title_sub | integration, developments and control |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030280319&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030280319&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
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