
Flexibility in Electric Power Distribution Networks
CRC Press
1st Edition
Published on 16. July 2021
Book
Hardback
411 pages
978-0-367-64141-2 (ISBN)
Description
High penetration of renewable energy sources (RESs) imposes several techno-economic challenges to distribution system operators (DSOs) due to their variability in power generation and, hence, increases the need for additional operational flexibility. Operational flexibility aims at securely covering the possible variations at the minimum cost using emerging flexible alternatives or designing novel local market mechanisms to incentivize flexibility providers. In such a situation, the DSOs can use the potential of flexible options such as energy storages (ESs), demand response (DR), plug-in electric vehicles (PEVs), or on-site fast run generators. However, each of the mentioned flexible resources has its own specific characteristics and requirements that should be taken into account, and this raises the complexity. Optimal network reconfiguration schemes are the other solution for increasing power system flexibility at the distribution level.
There is a great research gap related to renewable-based distribution network planning from a flexibility point of view. Therefore, this book aims to discuss the additional flexibility needs introduced by RESs and describe general approaches to analyze the need for and provision of additional flexibility in future distribution networks at both the planning and operational time frames.
This book successfully suggests new solutions and techniques to increase the flexibility in distribution systems. It also highlights the needs for moving towards smart distribution grids in order to enhance the flexibility in modern and future power systems.
There is a great research gap related to renewable-based distribution network planning from a flexibility point of view. Therefore, this book aims to discuss the additional flexibility needs introduced by RESs and describe general approaches to analyze the need for and provision of additional flexibility in future distribution networks at both the planning and operational time frames.
This book successfully suggests new solutions and techniques to increase the flexibility in distribution systems. It also highlights the needs for moving towards smart distribution grids in order to enhance the flexibility in modern and future power systems.
More details
Language
English
Place of publication
London
United Kingdom
Publishing group
Taylor & Francis Ltd
Target group
College/higher education
Illustrations
145 s/w Abbildungen, 1 s/w Photographie bzw. Rasterbild, 144 s/w Zeichnungen, 102 s/w Tabellen
102 Tables, black and white; 144 Line drawings, black and white; 1 Halftones, black and white; 145 Illustrations, black and white
Dimensions
Height: 240 mm
Width: 161 mm
Thickness: 28 mm
Weight
813 gr
ISBN-13
978-0-367-64141-2 (9780367641412)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Hassan Haes Alhelou | Ehsan Heydarian-Forushani | Pierluigi Siano
Flexibility in Electric Power Distribution Networks
Book
09/2023
1st Edition
CRC Press
€96.70
Shipment within 15-20 days

Hassan Haes Alhelou | Ehsan Heydarian-Forushani | Pierluigi Siano
Flexibility in Electric Power Distribution Networks
E-Book
07/2021
1st Edition
CRC Press
€88.49
Available for download

Hassan Haes Alhelou | Ehsan Heydarian-Forushani | Pierluigi Siano
Flexibility in Electric Power Distribution Networks
E-Book
07/2021
1st Edition
CRC Press
€88.49
Available for download
Persons
Hassan Haes Alhelou is a faculty member at Tisheen University, Lattakia, Syria. His major research interests are Power systems, Power system dynamics, Power system operation and control, Dynamic state estimation, Frequency control, Smart grids, Micro-grids, Demand response, Load shedding, and Power system protection.
Ehsan Heydarian-Forushani currently working in Esfahan Electricity Power Distribution Company (EEPDC). His research interests include power system flexibility, renewables integration, demand response, smart grids, and electricity market.
Pierluigi Siano is a Professor and Scientific Director of the Smart Grids and Smart Cities Laboratory with the Department of Management & Innovation Systems, University of Salerno. He has been the Chair of the IES TC on Smart Grids. He received the award as 2019&2020 Highly cited Researcher by ISI WoS Group.
Ehsan Heydarian-Forushani currently working in Esfahan Electricity Power Distribution Company (EEPDC). His research interests include power system flexibility, renewables integration, demand response, smart grids, and electricity market.
Pierluigi Siano is a Professor and Scientific Director of the Smart Grids and Smart Cities Laboratory with the Department of Management & Innovation Systems, University of Salerno. He has been the Chair of the IES TC on Smart Grids. He received the award as 2019&2020 Highly cited Researcher by ISI WoS Group.
Editor
Monash University, Australia.
Aix-Marseille University, France.
Univ Degli Studi de Salerno, Italy.
Content
1. Social and Economic Factors in Demand-Side Flexibility. 2. Role of Smart Homes and Smart Communities in Flexibility Provision. 3. A System-of-Systems Planning Platform for Enabling Flexibility Provision at Distribution Level. 4. Application of Regression Tools for Load Prediction in Distributed Network for Flexible Analysis. 5. Effective Strategies of Flexibility in Modern Distribution Systems. 6. Resource-Driven Flexibility Planning of Active Distribution Network. 7. Distribution Network Emergency Operation in The Light of Flexibility. 8. Three-Layer Aggregator Solutions to Facilitate Distribution System Flexibility. 9. Decongestion of Active Distribution Grids via D-PMUs-based Reactive Power Control and Electric Vehicle Chargers. 10. Blockchain-based Decentralized, Flexible, and Transparent Energy Market. 11. Integrated Operation and Planning Model of Renewable Energy Sources with Flexible Devices in Active Distribution Networks. 12. Network-Driven Flexibility Planning of Active Distribution Network. 13. Optimization Techniques for Reconfiguration of Energy Distribution System. 14. Application of AMPL (A Mathematical Programming Language) in Distribution Network Reconfiguration Problem.