Description
Risk-Based Energy Management
DC, AC and Hybrid AC-DC Microgrids
Coordinators: Nojavan Sayyad, Shafieezadeh Mahdi, Ghadimi Noradin
Language: EnglishSubject for Risk-Based Energy Management:
Keywords
Risk-based energy management; DC microgrids; AC microgrids; Photovolatic; Smart Power; electric Power; transmission network; Hybrid AC-DC microgrids; Upstream grid; Distributed energy resources; Renewable energy; Demand response programs; Electric vehicles; Uncertain environment; Stochastic Programming; Information gap decision theory (IGDT); Robust optimization approach
294 p. · 15x22.8 cm · Paperback
Description
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Risk-Based Energy Management: DC, AC and Hybrid AC-DC Microgrids defines the problems and challenges of DC, AC and hybrid AC-DC microgrids and considers the right tactics and risk-based scheduling to tackle them. The book looks at the intermittent nature of renewable generation, demand and market price with the risk to DC, AC and hybrid AC-DC microgrids, which makes it relevant for anyone in renewable energy demand and supply. As utilization of distributed energy resources and the intermittent nature of renewable generations, demand and market price can put the operation of DC, AC and hybrid AC-DC microgrids at risk, this book presents a timely resource.
1. Energy management concept of DC, AC and hybrid AC-DC microgrids2. Deterministic based energy management of DC microgrids3. Stochastic based energy management of DC microgrids4. Robust optimization based energy management of DC microgrids5. IGDT-based risk-constrained energy management of DC microgrids6. Deterministic based energy management of AC microgrids7. Stochastic based energy management of AC microgrids8. Robust optimization based energy management of AC microgrids 9. IGDT-based risk-constrained energy management of AC microgrids 10. Deterministic based energy management of hybrid AC-DC microgrids11. Stochastic based energy management of hybrid AC-DC microgrids12. Robust optimization based energy management of hybrid AC-DC microgrids13. IGDT-based risk-constrained energy management of hybrid AC-DC microgrids
Mahdi Shafieezadeh, PhD, the Vice President of Iranian National Center for Knowledge-based Management at Sharif University of Technology, Iran. He is also Chairman of the Board at Iranian School of Graduate Studies in Business Management and Entrepreneurship.
Noradin Ghadimi, PhD, is an Assistant Professor in the Faculty of Electrical and Computer Engineering, Islamic Azad University, Ardabil, Iran. His research areas include power system analysis, electricity market, power system protection, hybrid energy system, uncertainty modelling and risk management.
- Discusses both the challenges and solutions surrounding DC, AC and hybrid AC-DC microgrids
- Proposes robust scheduling of DC, AC and hybrid AC-DC microgrids under uncertain environments
- Includes modeling upstream grid prices, renewable resources and intermittent load in the decision-making process of DC, AC and hybrid AC-DC microgrids
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