DocumentCode
3587159
Title
Comparison between demand response programs in multiple carrier energy infrastructures in presence of wind and energy storage technologies
Author
Pazouki, Samaneh ; Haghifam, Mahmoud-Reza
Author_Institution
Young Res. & Elite Club, Islamic Azad Univ. (IAU), Tehran, Iran
fYear
2014
Firstpage
1
Lastpage
6
Abstract
Greenhouse gas emission and growing energy requirements lead us to utilization of sustainable energy resources. Unfortunately, renewable energy resources are characterized by fluctuations due to features of primary fuels. Energy storages and demand response programs are taken into account as the complement of the alternative resources. In this paper, effect of different demand response programs (demand shedding and shifting) are compared in presence and absence of wind and energy storages in multi carrier energy systems. Energy hub is employed to model wind, storage and demand response programs in electricity and gas infrastructures. Mixed integer linear programming (MIP) and Cplex solver of GAMS software are used to solve the problem. The energy hub performance as well as the hub operation costs is evaluated by integrating wind and energy storage in presence of demand response programs in multi carrier energy networks.
Keywords
air pollution; demand side management; integer programming; linear programming; load shedding; wind power; wind power plants; Cplex solver; GAMS software; demand response programs; demand shedding; demand shifting; energy hub; energy requirements; energy storage technology; greenhouse gas emission; mixed integer linear programming; multiple carrier energy infrastructures; renewable energy resources; sustainable energy resource utilization; wind storage technology; Boilers; Cogeneration; Discharges (electric); Energy storage; Load management; Resistance heating; Wind energy; DemandResponse; Energy Hub; Energy Storage; Multi Carrier Systems; Wind;
fLanguage
English
Publisher
ieee
Conference_Titel
Smart Grid Conference (SGC), 2014
Print_ISBN
978-1-4799-8313-1
Type
conf
DOI
10.1109/SGC.2014.7090862
Filename
7090862
Link To Document