Integration of distributed energy resources in power systems: implementation, operation and control
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam
Academic Press is an imprint of Elsevier
[2016]
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | Includes index |
Beschreibung: | xii, 309 Seiten |
ISBN: | 9780128032121 9780128032138 |
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Datensatz im Suchindex
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adam_text | Contents
List of Contributors.......................................................
CHAPTER 1 Introduction.....................................................
Toshihisa Funabashi
1.1 Introduction...............................................
1.2 Distributed Generation Resources...........................
1.2.1 Reciprocating Engines................................
1.2.2 Microturbine Generator (MTG) System..................
1.2.3 Fuel Cells...........................................
1.3 Renewable Energy Sources...................................
1.3.1 Wind Energy Conversion System........................
1.3.2 PV Energy System.....................................
1.3.3 Biomass..............................................
1.3.4 Geothermal Energy....................................
1.3.5 Hydro Energy.........................................
1.4 Energy Storage Systems....................................
1.4.1 Electric Double Layer Capacitor......................
1.4.2 Battery Energy Storage System........................
1.4.3 Superconducting Magnetic Energy Storage..............
1.4.4 Flywheel.............................................
1.4.5 Plug in Electric Vehicle.............................
1.5 Smart Grid................................................
References.....................................................
CHAPTER 2 Integration of Distributed Energy Resources
in Distribution Power Systems..................................
Alberto Borghetti, Carlo Alberto Nucci
2.1 Introduction...............................................
2.2 Interconnection Issues and Countermeasures................
2.2.1 Volt-VAR Control.....................................
2.2.2 Gossip-like VVC MAS Procedure.......................
2.3 Role of ICT in the Integration of Distributed Energy Resources
2.3.1 Models of the Communication Networks.................
2.3.2 Model of the Power Distribution Feeder..............
2.3.3 Test Results........................................
2.4 Conclusions...............................................
Acknowledgment.................................................
References.....................................................
P
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vi Contents
CHAPTER 3 Operational Aspects of Distribution Systems
with Massive DER Penetrations..........................................51
Tomonobu Senjyu, Abdul Motin Howlader
3.1 Introduction.......................................................51
3.2 Control Objectives................................................53
3.2.1 Importance of Distributed Generations........................54
3.2.2 Challenges of Distributed Generations System................56
3.2.3 Overview of Control System..................................57
3.3 Control Method....................................................58
3.3.1 The Objective Function and Constraints.......................58
3.4 Particle Swarm Optimization.......................................60
3.4.1 PV Generator System..........................................61
3.4.2 BESS at the Interconnection Point...........................62
3.4.3 Plug-in Electric Vehicle....................................63
3.5 Simulation Results................................................63
3.5.1 Dynamic Responses for the Without
Optimization Approach........................................66
3.5.2 Dynamic Responses for the Comparison Method.................66
3.5.3 Dynamic Responses for the Proposed Method...................70
3.6 Conclusions.......................................................73
References.............................................................73
CHAPTER 4 Prediction of Photovoltaic Power Generation Output
and Network Operation..................................................77
Takeyoshl Kato
4.1 Needs for Forecasting Photovoltaic (PV) Power Output
in Electric Power Systems..........................................78
4.2 Power Output Fluctuation Characteristics..........................79
4.2.1 Fluctuation Characteristics of Irradiance
at Single Point..............................................81
4.2.2 Fluctuation Characteristics of Spatial Average Irradiance
in Utility Service Area......................................84
4.3 Forecasting Methods...............................................86
4.3.1 Overview.....................................................86
4.3.2 Accuracy Measures...........................................88
4.3.3 NWP Models..................................................89
4.3.4 Satellite Cloud Motion Vector Approach......................94
4.3.5 All Sky Images..............................................96
4.3.6 Statistical Models..........................................96
4.4 Examples of Forecasted Results....................................98
4.5 Smoothing Effect on Forecast Accuracy............................100
Contents
• •
VII
4.6 Power System Operation Considering PV Power
Output Fluctuations.............................................101
4.7 Energy Management Examples of Smart House with PV................104
4.7.1 United States/Japan Demonstration Smart Grid Project
in Los Alamos...............................................104
References...........................................................106
CHAPTER 5 Prediction of Wind Power Generation Output and
Network Operation....................................................109
Ryoichi Hara
5.1 Need for Forecasting Wind Power Output
in Electric Power Systems........................................110
5.2 Power Output Fluctuation Characteristics.........................112
5.2.1 Fundamentals...............................................112
5.2.2 Maximum Variation..........................................115
5.2.3 Umbrella Curve.............................................115
5.2.4 Standard Deviation.........................................115
5.2.5 Power Spectral Density.....................................118
5.3 Power Output Smoothing Control...................................120
5.3.1 Application of Energy-storage System.......................120
5.3.2 Kinetic Energy of Wind Turbines............................121
5.3.3 Pitch Angle Control........................................121
5.4 Forecasting Methods..............................................122
5.4.1 Difficulties...............................................122
5.4.2 Physical Approach..........................................123
5.4.3 Statistic Approach.........................................123
5.4.4 Regional Forecasting......................................124
5.4.5 Probabilistic Forecast....................................125
5.5 Examples of Forecasted Results...................................125
5.6 Forecasting Applications.........................................128
5.6.1 Scheduled Generation of Wind Farms and Solar
Power Plants with Energy-storage Systems....................128
5.6.2 Suppression of Ramp Variation of Wind Output...............129
References...........................................................130
CHAPTER 6 Energy Management Systems for DERs.....................................132
Atsushi Yona
6.1 Basic Concepts of Home Energy Management Systems.................132
6.2 Control Strategies for Energy Storage Systems....................137
6.3 Control Strategies for EVs as Storage............................145
6.4 Use of Smart Meter Data..........................................146
References...........................................................155
viii Contents
CHAPTER 7 Protection of DERs........................................................157
Raza Haider, Chul-Hwan Kim
7.1 Introduction.......................................................157
7.2 Protection in Distribution System.................................160
7.2.1 General Protection..........................................160
7.2.2 IEEE Standards for Protection...............................163
7.2.3 What to do Under Fault Conditions...........................164
7.2.4 Fault Currents Change.......................................165
7.2.5 Smart Protection............................................166
7.3 Power System Disturbances.........................................168
7.3.1 Power Quality Issues........................................168
7.3.2 Faults......................................................170
7.3.3 Consequences of Electric Faults.............................172
7.3.4 Application Based Three-phase Fault Analysis................173
7.4 Impact of DER on Protection System................................173
7.4.1 Protection Failure..........................................174
7.4.2 Hosting Capacity............................................175
7.4.3 Loss of Coordination........................................176
7.4.4 Protection Issues of DER....................................178
7.5 Protection Schemes for Distribution Systems with DER..............180
7.5.1 Islanded Operation..........................................181
7.5.2 The Protection Equipment for DER Networks................... 182
7.5.3 Recent Technological Trends in DER Protection...............188
7.6 Conclusions.......................................................190
References.............................................................191
CHAPTER 8 Lightning Protections of Renewable Energy Generation Systems.............193
Shozo Sekioka
8.1 Introduction.......................................................193
8.2 Lightning Protection Principle....................................196
8.2.1 Reduction...................................................196
8.2.2 Suppression.................................................197
8.2.3 Shielding...................................................199
8.2.4 Lightning Characteristics for Lightning Protection Design...201
8.2.5 IEC International Standard..................................206
8.3 Lightning Protection for Wind Power Generation Systems............209
8.3.1 Lightning Damage in Wind Power Generation System............209
8.3.2 Lightning Protection Methods for Wind Turbine...............211
8.3.3 Grounding Resistance........................................212
8.3.4 Lightning Protection of Blade Using Receptor................215
8.3.5 Energy Coordination of Surge Arrester/Surge
Protective Device...........................................216
Contents ix
8.4 Lightning Protection of Wind Farms...............................218
8.5 Lightning Protection for Photovoltaic Power Generation Systems.........222
8.5.1 Lightning Damage in Photovoltaic System....................223
8.5.2 Lightning Protection Against Lightning Overvoltages
in Photovoltaic Systems.....................................223
8.5.3 Direct Lightning Flash to Photovoltaic System..............224
References.............................................................226
CHAPTER 9 Distributed Energy Resources and Power Electronics..................... 229
Masahide Hojo
9.1 Power Electronics in PV Power Generation Systems.................231
9.2 Power Electronics in Wind Power Generation Systems...............232
9.3 Power Electronics in Battery Energy Storage Systems..............233
9.4 Power Quality Problems with Related to DERs.......................234
CHAPTER 10 AC/DC Microgrids........................................................236
Kazuto Yukita
10.1 Basic Concept of AC Microgrids.................................237
10.1.1 Islanding Mode........................................ 238
10.1.2 Connected Mode..........................................239
10.1.3 Backup Mode ............................................239
10.1.4 Experiment Field and Device Specification...............239
10.1.5 System Operation........................................240
10.1.6 Measurement of Power Quality............................242
10.2 Battery Charge Pattern and Cost................................244
10.2.1 Battery Charge Method...................................246
10.2.2 Test Results............................................246
10.3 Supply and Demand Control of Microgrids........................251
10.3.1 Peak Cut/Peak Shift Mode Operation.....................251
10.3.2 Receiving Constant Power Mode Operation.................253
10.4 Basic Concept of DC Microgrids.................................254
10.4.1 System Operation of DC Microgrid........................255
10.5 Examples of Microgrids in the World...........................258
10.6 Conclusions....................................................259
References...........................................................259
CHAPTER 11 Stability Problems of Distributed Generators............................261
Toshihisa Funabashi, Jinjun Liu,Tomonobu Senjyu
11.1 Voltage Stability in Distribution Systems.......................262
11.1.1 Definitions.............................................262
11.2 Stability Problem with DGs Connected
to a Weak Power System..........................................262
11.2.1 Voltage Stability Analysis..............................263
x Contents
11.2.2 Voltage Stability Index................................264
11.2.3 Battery Control Method..................................264
11.2.4 Simulation Results......................................267
11.3 Stability Problem with Power Electronics in DGs..............267
11.3.1 Terminal Characteristics of Submodule..................268
11.3.2 Stability Criteria......................................269
11.3.3 Comparison between Stability Criteria...................271
11.3.4 Conclusions.............................................272
11.4 Stability Problems in Microgrids.............................273
11.4.1 Microgrid Model.........................................274
11.4.2 Inverter Control Method.................................276
11.4.3 FRT Requirements........................................277
11.4.4 Criteria of Power Quality...............................277
11.4.5 Simulation and Results..................................277
11.4.6 Conclusions.............................................279
References..........................................................279
CHAPTER 12 Virtual Synchronous Generators and their Applications
in Microgrids......................................................282
Toshifumi Ise, Hassan Bevrani
12.1 Basic Concepts of Virtual Synchronous Generators..............282
12.2 Control Schemes of Virtual Synchronous Generators.............284
]2.2.1 VSYNC’s VSG Design.....................................285
12.2.2 IEPE’s VSG Topology....................................286
12.2.3 KHI’sVSG...............................................287
12.2.4 VSG System of Osaka University.........................287
12.3 Applications for Microgrids...................................290
References..........................................................292
CHAPTER 13 Application of DERs in Electricity Market.............................295
Yusuke Manabe
13.1 Basic Concept of Electricity Market and DERs...................295
13.1.1 RPS....................................................296
13.1.2 FIT....................................................297
13.1.3 Effect of DER’s Mass Penetration
for Electricity Market..................................297
13.2 Electricity Market Reform and Virtual Power Plan..............299
References..........................................................302
Subject Index
303
INTEGRATION OF DISTRIBUTED ENERGY
RESOURCES IN POWER SYSTEMS
IMPLEMENTATION, OPERATION, AND CONTROL
Edited by Toshihisa Funabashi, Professor at Nagoya University, Nagoya, Japan
As the share of renewable energy sources in the world s energy mix grows and
the proliferation trend of small-scale power generation becomes a reality, the op-
eration of power transmission and distribution systems becomes more and more
challenging. It demands a different set of strategies for achieving the stability and
quality at the power delivery point.
The goal of this book is to give students at graduate level, as well as researchers
and power engineering professionals, an understanding of the key issues neces-
sary for the development of such strategies. It explores the most relevant topics,
with special focus on transmission and distribution areas. Subjects such as volt-
age control, AC and DC microgrids, power electronics are explored in detail for all
sources in general, while not neglecting the specific challenges posed by the most
used variable renewable energy sources.
Key Features:
• Presents the most relevant aspects of the integration of distributed energy
into power systems, with special focus on the challenges for transmission
and distribution
• Explores the state of the art in applications of the most current technology,
giving its readers a clear roadmap
• Deals with technical and economic feature of distributed energy resources
and discusses their business models
ISBN 978-0-12-803212-1
9 7
28 032121
|
any_adam_object | 1 |
author2 | Funabashi, Toshihisa |
author2_role | edt |
author2_variant | t f tf |
author_facet | Funabashi, Toshihisa |
building | Verbundindex |
bvnumber | BV043716167 |
classification_rvk | ZN 8540 ZP 2900 |
ctrlnum | (OCoLC)973022688 (DE-599)BVBBV043716167 |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik Energietechnik |
format | Book |
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id | DE-604.BV043716167 |
illustrated | Not Illustrated |
indexdate | 2024-07-10T07:33:15Z |
institution | BVB |
isbn | 9780128032121 9780128032138 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029128335 |
oclc_num | 973022688 |
open_access_boolean | |
owner | DE-703 |
owner_facet | DE-703 |
physical | xii, 309 Seiten |
publishDate | 2016 |
publishDateSearch | 2016 |
publishDateSort | 2016 |
publisher | Academic Press is an imprint of Elsevier |
record_format | marc |
spelling | Integration of distributed energy resources in power systems implementation, operation and control edited by Toshihisa Funabashi Amsterdam Academic Press is an imprint of Elsevier [2016] xii, 309 Seiten txt rdacontent n rdamedia nc rdacarrier Includes index Elektrisches Netz (DE-588)4138980-3 gnd rswk-swf Energiequelle (DE-588)4014720-4 gnd rswk-swf Elektrizitätsversorgungsnetz (DE-588)4121178-9 gnd rswk-swf Elektrizitätseinspeisung (DE-588)4259675-0 gnd rswk-swf Netzplanung (DE-588)4171522-6 gnd rswk-swf Verbundnetz (DE-588)4449975-9 gnd rswk-swf Energieversorgungsnetz (DE-588)4631982-7 gnd rswk-swf Elektrische Energieverteilung (DE-588)4123127-2 gnd rswk-swf Elektrische Energieverteilung (DE-588)4123127-2 s Energieversorgungsnetz (DE-588)4631982-7 s Verbundnetz (DE-588)4449975-9 s Energiequelle (DE-588)4014720-4 s Elektrizitätseinspeisung (DE-588)4259675-0 s 1\p DE-604 Elektrisches Netz (DE-588)4138980-3 s Elektrizitätsversorgungsnetz (DE-588)4121178-9 s Netzplanung (DE-588)4171522-6 s 2\p DE-604 DE-604 Funabashi, Toshihisa edt 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=029128335&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=029128335&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Integration of distributed energy resources in power systems implementation, operation and control Elektrisches Netz (DE-588)4138980-3 gnd Energiequelle (DE-588)4014720-4 gnd Elektrizitätsversorgungsnetz (DE-588)4121178-9 gnd Elektrizitätseinspeisung (DE-588)4259675-0 gnd Netzplanung (DE-588)4171522-6 gnd Verbundnetz (DE-588)4449975-9 gnd Energieversorgungsnetz (DE-588)4631982-7 gnd Elektrische Energieverteilung (DE-588)4123127-2 gnd |
subject_GND | (DE-588)4138980-3 (DE-588)4014720-4 (DE-588)4121178-9 (DE-588)4259675-0 (DE-588)4171522-6 (DE-588)4449975-9 (DE-588)4631982-7 (DE-588)4123127-2 |
title | Integration of distributed energy resources in power systems implementation, operation and control |
title_auth | Integration of distributed energy resources in power systems implementation, operation and control |
title_exact_search | Integration of distributed energy resources in power systems implementation, operation and control |
title_full | Integration of distributed energy resources in power systems implementation, operation and control edited by Toshihisa Funabashi |
title_fullStr | Integration of distributed energy resources in power systems implementation, operation and control edited by Toshihisa Funabashi |
title_full_unstemmed | Integration of distributed energy resources in power systems implementation, operation and control edited by Toshihisa Funabashi |
title_short | Integration of distributed energy resources in power systems |
title_sort | integration of distributed energy resources in power systems implementation operation and control |
title_sub | implementation, operation and control |
topic | Elektrisches Netz (DE-588)4138980-3 gnd Energiequelle (DE-588)4014720-4 gnd Elektrizitätsversorgungsnetz (DE-588)4121178-9 gnd Elektrizitätseinspeisung (DE-588)4259675-0 gnd Netzplanung (DE-588)4171522-6 gnd Verbundnetz (DE-588)4449975-9 gnd Energieversorgungsnetz (DE-588)4631982-7 gnd Elektrische Energieverteilung (DE-588)4123127-2 gnd |
topic_facet | Elektrisches Netz Energiequelle Elektrizitätsversorgungsnetz Elektrizitätseinspeisung Netzplanung Verbundnetz Energieversorgungsnetz Elektrische Energieverteilung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029128335&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=029128335&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT funabashitoshihisa integrationofdistributedenergyresourcesinpowersystemsimplementationoperationandcontrol |