DocumentCode :
3569402
Title :
Eco-economie sizing of autonomous hybrid energy system (AHES) using particle swarm optimization (PSO)
Author :
Panwar, Lokesh Kumar ; Reddy, K. Srikanth ; Kumar, Rajesh
Author_Institution :
Center for Energy & Environ., MNIT Jaipur, Jaipur, India
fYear :
2014
Firstpage :
233
Lastpage :
238
Abstract :
Deployment of distributed energy resources has brought the concept of autonomous hybrid power systems at community levels and remote areas into limelight. In such systems, proper sizing of energy resources at design stage is very crucial to meet energy requirements at minimum cost. Other than technical and economic constraints, system sizing should abide the preservation of environmental interests pertaining to sustainability needs. To investigate this problem, a sizing methodology preserving both economic and environmental interests is proposed in this paper. The problem for component sizing is formulated as an optimization problem with cost minimization objective including both cost and emissions. Particle swarm optimization (PSO) method is then applied to arrive at optimal solution, minimizing the dual objectives i.e., of system cost and embedded emissions. The proposed optimal sizing methodology is simulated for an autonomous hybrid power system renewable energy sources (photovoltaic, wind energy), conventional sources (diesel generator) and energy storage (battery systems). The dual objective function is optimized with different weightages for cost and emissions and the results demonstrates that, mutual exclusive nature of cost and emissions can be addressed with the tradeoff solution.
Keywords :
battery storage plants; cost reduction; diesel-electric generators; hybrid power systems; minimisation; particle swarm optimisation; photovoltaic power systems; wind power plants; AHES ecoeconomic sizing method; PSO; autonomous hybrid energy system; battery system; cost minimization; diesel generator; distributed energy resources; energy storage; particle swarm optimization; photovoltaic energy; renewable energy sources; wind energy; Batteries; Economics; Linear programming; Optimization; Photovoltaic systems; System analysis and design; Embedded emissions; autonomous hybrid energy system(AHES); dual-objective function; particle swarm optimization(PSO); renewable energy sources(RES);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advances in Green Energy (ICAGE), 2014 International Conference on
Print_ISBN :
978-1-4799-8049-9
Type :
conf
DOI :
10.1109/ICAGE.2014.7050170
Filename :
7050170
Link To Document :
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