Optimum design of hybrid renewable energy systems: Overview of different approaches
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[1] Aris Kornelakis,et al. Multiobjective Particle Swarm Optimization for the optimal design of photovoltaic grid-connected systems , 2010 .
[2] Stephane Avril,et al. Multi-objective optimization of batteries and hydrogen storage technologies for remote photovoltaic systems , 2010 .
[3] Seungho Lee,et al. Hybrid simulation and optimization-based design and operation of integrated photovoltaic generation, storage units, and grid , 2011, Simul. Model. Pract. Theory.
[4] C.S. Ozveren,et al. Economic Load Dispatch Optimization of Renewable Energy in Power System Using Genetic Algorithm , 2007, 2007 IEEE Lausanne Power Tech.
[5] K. Chatterjee,et al. Design of isolated renewable hybrid power systems , 2010 .
[6] Malabika Basu,et al. Artificial immune system for dynamic economic dispatch , 2011 .
[7] S.A. Daniel,et al. Design methodology for autonomous operation of a Micro-grid , 2009, 2009 International Conference on Electrical and Electronics Engineering - ELECO 2009.
[8] Zne-Jung Lee,et al. Genetic algorithm with ant colony optimization (GA-ACO) for multiple sequence alignment , 2008, Appl. Soft Comput..
[9] Kerim Guney,et al. Genetic tracker with adaptive neuro-fuzzy inference system for multiple target tracking , 2008, Expert Syst. Appl..
[10] John K. Kaldellis,et al. Optimum sizing of photovoltaic-energy storage systems for autonomous small islands , 2010 .
[11] José L. Bernal-Agustín,et al. Multi-objective design of PV–wind–diesel–hydrogen–battery systems , 2008 .
[12] Orhan Ekren,et al. Size optimization of a PV/wind hybrid energy conversion system with battery storage using simulated annealing , 2010 .
[13] Chi-Cheng Fang,et al. Application of genetic algorithm-based fuzzy logic control in wire transport system of wire-EDM machine , 2008 .
[14] M. A. Elhadidy,et al. Performance evaluation of hybrid (wind/solar/diesel) power systems , 2002 .
[15] F. Kamran,et al. Dynamic and scenario based elicitation of genetic algorithms of agents for control of distributed power system networks and renewable energy resources , 2005, 2005 International Conference on Microelectronics.
[16] José L. Bernal-Agustín,et al. Influence of the Mathematical Models in the Design of PV- Diesel Systems , 2008 .
[17] Syed Islam,et al. 27 – Power Electronics for Renewable Energy Sources , 2007 .
[18] Lingfeng Wang,et al. PSO-Based Multi-Criteria Optimum Design of A Grid-Connected Hybrid Power System With Multiple Renewable Sources of Energy , 2007, 2007 IEEE Swarm Intelligence Symposium.
[19] Nelson Kagan,et al. Design model for electrical distribution systems considering renewable, conventional and energy storage units , 1992 .
[20] Il-Yop Chung,et al. Control parameter optimization for a microgrid system using particle swarm optimization , 2008, 2008 IEEE International Conference on Sustainable Energy Technologies.
[21] Didier Mayer,et al. Microhydro-PV-hybrid system: Sizing a small hydro-PV-hybrid system for rural electrification in developing countries , 2009 .
[22] Jure Margeta,et al. Feasibility of the green energy production by hybrid solar + hydro power system in Europe and similar climate areas , 2010 .
[23] Ali Naci Celik,et al. Techno-economic analysis of autonomous PV-wind hybrid energy systems using different sizing methods , 2003 .
[24] Cristián E. Cortés,et al. Hybrid adaptive predictive control for the multi-vehicle dynamic pick-up and delivery problem based on genetic algorithms and fuzzy clustering , 2008, Comput. Oper. Res..
[25] S.M.M. Tafreshi,et al. Unit Sizing of a Stand-alone Hybrid Power System Using Particle Swarm Optimization (PSO) , 2007, 2007 IEEE International Conference on Automation and Logistics.
[26] Helena M. Ramos,et al. Sustainable application of renewable sources in water pumping systems: Optimized energy system configuration , 2009 .
[27] Zhou Wei,et al. Optimal design and techno-economic analysis of a hybrid solar–wind power generation system , 2009 .
[28] Frank A. Coutelieris,et al. Simulation and optimization of a stand-alone power plant based on renewable energy sources , 2010 .
[29] Ahmed M. A. Haidar,et al. Optimal configuration assessment of renewable energy in Malaysia , 2011 .
[30] Saifur Rahman,et al. Unit sizing and control of hybrid wind-solar power systems , 1997 .
[31] Mitchell J. Small,et al. Designing cost-effective seawater reverse osmosis system under optimal energy options , 2008 .
[32] Himangshu Ranjan Ghosh,et al. A wind–PV-battery hybrid power system at Sitakunda in Bangladesh , 2009 .
[33] Haritza Camblong,et al. Microgrids project, Part 2: Design of an electrification kit with high content of renewable energy sources in Senegal. , 2009 .
[34] Amirnaser Yazdani,et al. Design and operation of a remote microgrid , 2009, 2009 35th Annual Conference of IEEE Industrial Electronics.
[35] Tom E. Baldock,et al. Feasibility analysis of stand-alone renewable energy supply options for a large hotel , 2008 .
[36] S. M. Shaahid,et al. Technical and economic assessment of grid-independent hybrid photovoltaic-diesel-battery power systems for commercial loads in desert environments , 2007 .
[37] Ali Diabat,et al. Design of a hybrid solar-wind power plant using optimization , 2010, 2010 Second International Conference on Engineering System Management and Applications.
[38] Himangshu Ranjan Ghosh,et al. Techno-economical analysis of off-grid hybrid systems at Kutubdia Island, Bangladesh , 2010 .
[39] Xavier Pelet,et al. Multiobjective optimisation of integrated energy systems for remote communities considering economics and CO2 emissions , 2005 .
[40] Ibrahim El-Amin,et al. Techno-economic evaluation of off-grid hybrid photovoltaic-diesel-battery power systems for rural electrification in Saudi Arabia--A way forward for sustainable development , 2009 .
[41] P. K. Katti,et al. Alternative energy facilities based on site matching and generation unit sizing for remote area power supply , 2007 .
[42] R. Dufo López,et al. MULTI-OBJECTIVE DESIGN OF PV–WIND–DIESEL–HYDROGEN–BATTERY SYSTEMS , 2008 .
[43] Kazem Mazlumi,et al. Modeling of a hybrid power system for economic analysis and environmental impact in HOMER , 2010, 2010 18th Iranian Conference on Electrical Engineering.
[44] Prakash Kumar Hota,et al. Economic emission load dispatch through fuzzy based bacterial foraging algorithm , 2010 .
[45] J. A. Carta,et al. Technical-economic analysis of wind-powered pumped hydrostorage systems. Part II: Model application to the island of El Hierro , 2005 .
[46] Wilfried van Sark,et al. A New Hybrid Ocean Thermal Energy Conversion-Offshore Solar Pond (OTEC-OSP) Design: A Cost Optimization Approach , 2008, Renewable Energy.
[47] Wei Zhou,et al. A novel optimization sizing model for hybrid solar-wind power generation system , 2007 .
[48] Weixiang Shen,et al. Optimally sizing of solar array and battery in a standalone photovoltaic system in Malaysia , 2009 .
[49] Yan Zhang,et al. The optimal capacity configuration of an independent Wind/PV hybrid power supply system based on improved PSO algorithm , 2009 .
[50] John K. Kaldellis,et al. Comparing wind and photovoltaic stand-alone power systems used for the electrification of remote consumers , 2007 .
[51] Sergio B. Silva,et al. Economic evaluation and optimization of a photovoltaic-fuel cell-batteries hybrid system for use in the Brazilian Amazon. , 2010 .
[52] Vincenzo Franzitta,et al. Energy, economic and environmental analysis on RET-hydrogen systems in residential buildings , 2008 .
[53] Mehrdad Abedi,et al. Design of an optimum hybrid renewable energy system considering reliability indices , 2010, 2010 18th Iranian Conference on Electrical Engineering.
[54] A. Rajendra Prasad,et al. Optimization of integrated photovoltaic–wind power generation systems with battery storage , 2006 .
[55] Delly Oliveira Filho,et al. A stochastic method for stand-alone photovoltaic system sizing , 2010 .
[56] Bijay Ketan Panigrahi,et al. Multiobjective bacteria foraging algorithm for electrical load dispatch problem , 2011 .
[57] A.H. Gastaj,et al. Optimal sizing of hybrid power system using genetic algorithm , 2005, 2005 International Conference on Future Power Systems.
[58] Soteris A. Kalogirou,et al. Optimization of solar systems using artificial neural-networks and genetic algorithms , 2004 .
[59] José L. Bernal-Agustín,et al. Design and economical analysis of hybrid PV–wind systems connected to the grid for the intermittent production of hydrogen , 2009 .
[60] G. H. Riahy,et al. Optimal design of a reliable hydrogen-based stand-alone wind/PV generating system, considering component outages , 2009 .
[61] J. Mutale,et al. Analysis of renewable energy policy impacts on optimal integration of future grid-connected PV systems , 2009, 2009 34th IEEE Photovoltaic Specialists Conference (PVSC).
[62] W. He. A simulation module for wind-diesel systems with multiple units , 1993 .
[63] Marco Dorigo,et al. Ant system: optimization by a colony of cooperating agents , 1996, IEEE Trans. Syst. Man Cybern. Part B.
[64] Giacomo Capizzi,et al. Long-term operation optimization of integrated generation systems by fuzzy logic-based management , 2007 .
[65] Ιωάννης Καλδέλλης,et al. Optimum autonomous photovoltaic solution for the Greek islands on the basis of energy pay-back analysis , 2009 .
[66] Mahendra Pal Sharma,et al. Integrated renewable energy systems for off grid rural electrification of remote area , 2010 .
[67] A. Louche,et al. Technical and economic assessment of hybrid photovoltaic/wind system with battery storage in Corsica island , 2008 .
[68] Pavlos S. Georgilakis,et al. Multiobjective genetic algorithm solution to the optimum economic and environmental performance problem of small autonomous hybrid power systems with renewables , 2010 .
[69] Victor Sánchez,et al. Optimal sizing of a hybrid renewable system , 2010, 2010 IEEE International Conference on Industrial Technology.
[70] Fatih Onur Hocaoglu,et al. A novel hybrid (wind-photovoltaic) system sizing procedure , 2009 .
[71] Sergey Malinchik,et al. Modeling resource, infrastructure, and policy cost layers for optimizing renewable energy investment and deployment , 2010, 2010 IEEE Conference on Innovative Technologies for an Efficient and Reliable Electricity Supply.
[72] Wei Zhou,et al. OPTIMAL SIZING METHOD FOR STAND-ALONE HYBRID SOLAR–WIND SYSTEM WITH LPSP TECHNOLOGY BY USING GENETIC ALGORITHM , 2008 .
[73] S. M. Shaahid,et al. Parametric study of hybrid (wind + solar + diesel) power generating systems , 2000 .
[74] Rodolfo Dufo-López,et al. Design and control strategies of PV-Diesel systems using genetic algorithms , 2005 .
[75] G. Barakat,et al. Modeling and optimal sizing of hybrid renewable energy system , 2008, 2008 13th International Power Electronics and Motion Control Conference.
[76] Mehmet Karaköse,et al. A multi-objective artificial immune algorithm for parameter optimization in support vector machine , 2011, Appl. Soft Comput..
[77] John H. Holland,et al. Adaptation in Natural and Artificial Systems: An Introductory Analysis with Applications to Biology, Control, and Artificial Intelligence , 1992 .
[78] Bernard H. Stark,et al. Component sizing for multi-source renewable energy systems , 2009, 2009 7th IEEE International Conference on Industrial Informatics.
[79] Luai M. Al-Hadhrami,et al. Study of a solar PV–diesel–battery hybrid power system for a remotely located population near Rafha, Saudi Arabia , 2010 .
[80] O. Rentz,et al. Integration of a hydrogen economy into the German energy system: an optimising modelling approach , 2007 .
[81] Wei Zhou,et al. Current status of research on optimum sizing of stand-alone hybrid solar–wind power generation systems , 2010 .
[82] Timothy M. Weis,et al. The utility of energy storage to improve the economics of wind–diesel power plants in Canada , 2008 .
[83] C. Singh,et al. PSO-Based Multidisciplinary Design of A Hybrid Power Generation System With Statistical Models of Wind Speed and Solar Insolation , 2006, 2006 International Conference on Power Electronic, Drives and Energy Systems.
[84] K. Kusakana,et al. Feasibility study of a hybrid PV-micro hydro system for rural electrification , 2009, AFRICON 2009.
[85] Dervis Karaboga,et al. Training recurrent neural networks by using parallel tabu search algorithm based on crossover operation , 2004, Eng. Appl. Artif. Intell..
[86] Zhe Chen,et al. Optimisation of electrical system for offshore wind farms via genetic algorithm , 2009 .
[87] J. Kaldellis,et al. Evaluation of the wind–hydro energy solution for remote islands , 2001 .
[88] Bernard Multon,et al. Load profile impact on the gross energy requirement of stand-alone photovoltaic systems , 2010 .
[89] M. Sacramento Quintanilla,et al. A tabu search approach to machine scheduling , 1998, Eur. J. Oper. Res..
[90] Arif Hepbasli,et al. A key review on exergetic analysis and assessment of renewable energy resources for a sustainable future , 2008 .
[91] Sergey Malinchik,et al. Geo-Spatial resource analysis and optimization of investment strategies for renewable energy , 2010, 2010 IEEE Conference on Innovative Technologies for an Efficient and Reliable Electricity Supply.
[92] Orhan Ekren,et al. Size optimization of a PV/wind hybrid energy conversion system with battery storage using response surface methodology , 2008 .
[93] S. M. Moghaddas Tafreshi,et al. Optimal sizing of a hybrid power system considering wind power uncertainty using PSO-embedded stochastic simulation , 2010, 2010 IEEE 11th International Conference on Probabilistic Methods Applied to Power Systems.
[94] Ali Naci Celik,et al. Optimisation and techno-economic analysis of autonomous photovoltaic–wind hybrid energy systems in comparison to single photovoltaic and wind systems , 2002 .
[95] Santanu Bandyopadhyay,et al. Optimum sizing of photovoltaic battery systems incorporating uncertainty through design space approach , 2009 .
[96] A. K. Akella,et al. Optimum utilization of renewable energy sources in a remote area , 2007 .
[97] Bin Ai,et al. Computer-aided design of PV/wind hybrid system , 2003 .
[98] Waree Kongprawechnon,et al. Ant colony optimisation for economic dispatch problem with non-smooth cost functions , 2010 .
[99] Jean-Claude Hennet,et al. Supply chain coordination: A game-theory approach , 2008, Eng. Appl. Artif. Intell..
[100] J. K. Kaldellis,et al. Optimum hybrid photovoltaic-based solution for remote telecommunication stations , 2010 .
[101] Spyros Voutetakis,et al. Optimum design and operation under uncertainty of power systems using renewable energy sources and hydrogen storage , 2010 .
[102] M.P. Sharma,et al. Hybrid Energy System for Remote Area - An Action Plan for Cost Effective Power Generation , 2008, 2008 IEEE Region 10 and the Third international Conference on Industrial and Information Systems.
[103] N. Phuangpornpitak,et al. PV hybrid systems for rural electrification in Thailand , 2007 .
[104] S. M. Shaahid,et al. Economic analysis of hybrid photovoltaic–diesel–battery power systems for residential loads in hot regions—A step to clean future , 2008 .
[105] T. Logenthiran,et al. Optimal sizing of an islanded microgrid using Evolutionary Strategy , 2010, 2010 IEEE 11th International Conference on Probabilistic Methods Applied to Power Systems.
[106] A. Louche,et al. Design and techno-economical optimization for hybrid PV/wind system under various meteorological conditions , 2008 .
[107] A. Sadegheih,et al. Optimal design methodologies under the carbon emission trading program using MIP, GA, SA, and TS , 2011 .
[108] C. D. Gelatt,et al. Optimization by Simulated Annealing , 1983, Science.
[109] Sami M Kamel,et al. The economics of hybrid power systems for sustainable desert agriculture in Egypt , 2005 .
[110] Maoguo Gong,et al. A population-based artificial immune system for numerical optimization , 2008, Neurocomputing.
[111] Faiyaz Ahmad,et al. Feasibility study of hybrid retrofits to an isolated off-grid diesel power plant , 2007 .
[112] John S. Anagnostopoulos,et al. Pumping station design for a pumped-storage wind-hydro power plant , 2007 .
[113] A. Louche,et al. Computer-aided analysis of the integration of renewable-energy systems in remote areas using a geographical-information system , 1999 .
[114] M. Kalantar,et al. Optimal design and modeling of stand-alone hybrid PV-wind systems , 2007, 2007 Australasian Universities Power Engineering Conference.
[115] B.E. Turkay,et al. Economic analysis of stand alone and grid connected hybrid energy systems , 2009, 2009 International Conference on Electrical and Electronics Engineering - ELECO 2009.
[116] A. Louche,et al. DESIGN OF HYBRID-PHOTOVOLTAIC POWER GENERATOR, WITH OPTIMIZATION OF ENERGY MANAGEMENT , 1999 .
[117] Dimitris E. Papantonis,et al. A simulation-optimisation programme for designing hybrid energy systems for supplying electricity and fresh water through desalination to remote areas , 2001 .
[118] Chun Che Fung,et al. A simulation study on the economic aspects of hybrid energy systems for remote islands in Thailand , 2002, 2002 IEEE Region 10 Conference on Computers, Communications, Control and Power Engineering. TENCOM '02. Proceedings..
[119] Bk Bala,et al. Optimal design of a PV-diesel hybrid system for electrification of an isolated island—Sandwip in Bangladesh using genetic algorithm , 2009 .
[120] Soteris A. Kalogirou,et al. Application of neural networks and genetic algorithms for sizing of photovoltaic systems , 2010 .
[121] Jeremy Lagorse,et al. Sizing optimization of a stand-alone street lighting system powered by a hybrid system using fuel cell, PV and battery , 2009 .
[122] Farhang Jalali-Farahani,et al. Optimization and parameters estimation in petroleum engineering problems using ant colony algorithm , 2010 .
[123] Rajneesh Sharma,et al. Synergizing reinforcement learning and game theory - A new direction for control , 2010, Appl. Soft Comput..
[124] Tomonobu Senjyu,et al. Optimal configuration of power generating systems in isolated island with renewable energy , 2007 .
[125] Vittorio Verda,et al. Lifetime optimization of a molten carbonate fuel cell power system coupled with hydrogen production , 2011 .
[126] Evripidis Lois,et al. Techno-economic analysis of an autonomous power system integrating hydrogen technology as energy storage medium , 2011 .
[127] Orhan Ekren,et al. Simulation based size optimization of a PV/wind hybrid energy conversion system with battery storage under various load and auxiliary energy conditions , 2009 .
[128] Saleh M. Al-Alawi,et al. Predictive control of an integrated PV-diesel water and power supply system using an artificial neural network , 2007 .
[129] Soteris A. Kalogirou,et al. Artificial intelligence techniques for photovoltaic applications: A review , 2008 .
[130] Soteris A. Kalogirou,et al. Modeling and simulation of a stand-alone photovoltaic system using an adaptive artificial neural network: Proposition for a new sizing procedure , 2007 .
[131] G. C. Seeling-Hochmuth. A combined optimisation concet for the design and operation strategy of hybrid-PV energy systems , 1997 .
[132] Norma Anglani,et al. Analyzing the impact of renewable energy technologies by means of optimal energy planning , 2010, 2010 9th International Conference on Environment and Electrical Engineering.
[133] Santanu Bandyopadhyay,et al. Application of design space methodology for optimum sizing of wind–battery systems , 2009 .
[134] Wei Zhou,et al. Battery behavior prediction and battery working states analysis of a hybrid solar-wind power generation system , 2008 .
[135] John S. Anagnostopoulos,et al. Simulation and size optimization of a pumped–storage power plant for the recovery of wind-farms rejected energy , 2008 .
[136] Nader Barsoum,et al. Modeling and Cost Simulation of Stand-Alone Solar and Biomass Energy , 2008, 2008 Second Asia International Conference on Modelling & Simulation (AMS).
[137] V. Lazarov,et al. Grid-connected multi-source system sizing , 2009, 2009 8th International Symposium on Advanced Electromechanical Motion Systems & Electric Drives Joint Symposium.
[138] Magdalene Marinaki,et al. Honey Bees Mating Optimization algorithm for financial classification problems , 2010, Appl. Soft Comput..
[139] Georgios Dounias,et al. Honey bees mating optimization algorithm for the Euclidean traveling salesman problem , 2011, Inf. Sci..
[140] J. M. Ngundam,et al. Feasibility of pico-hydro and photovoltaic hybrid power systems for remote villages in Cameroon , 2009 .
[141] Brian Vad Mathiesen,et al. A review of computer tools for analysing the integration of renewable energy into various energy systems , 2010 .
[142] S. G. Deshmukh,et al. A multi-criteria customer allocation problem in supply chain environment: An artificial immune system with fuzzy logic controller based approach , 2011, Expert Syst. Appl..
[143] José L. Bernal-Agustín,et al. Efficient design of hybrid renewable energy systems using evolutionary algorithms , 2009 .
[144] Chun-Lung Chen,et al. Wind-photovoltaic capacity coordination for a time-of-use rate industrial user , 2009 .
[145] M. J. Khan,et al. Pre-feasibility study of stand-alone hybrid energy systems for applications in Newfoundland , 2005 .
[146] John K. Kaldellis,et al. Optimum autonomous stand-alone photovoltaic system design on the basis of energy pay-back analysis , 2009 .
[147] John S. Anagnostopoulos,et al. Design study of a stand-alone desalination system powered by renewable energy sources and a pumped storage unit , 2010 .
[148] Daehie Hong,et al. GA-based fuzzy controller design for tunnel ventilation systems , 2005 .
[149] Syed Islam,et al. Power Electronics for Renewable Energy Sources , 2011 .
[150] Orhan Ekren,et al. Break-even analysis and size optimization of a PV/wind hybrid energy conversion system with battery storage - A case study , 2009 .
[151] Mohamed A. Habib,et al. Optimization procedure of a hybrid photovoltaic wind energy system , 1999 .
[152] Mohsen Kalantar,et al. Dynamic behavior of a stand-alone hybrid power generation system of wind turbine, microturbine, solar array and battery storage , 2010 .
[153] Kostas Kalaitzakis,et al. Methodology for optimal sizing of stand-alone photovoltaic/wind-generator systems using genetic algorithms , 2006 .
[154] Tom E. Baldock,et al. Case study feasibility analysis of renewable energy supply options for small to medium-sized tourist accommodations , 2009 .
[155] W. Schmitt,et al. Modeling and simulation of photovoltaic hybrid energy systems-optimization of sizing and control , 2002, Conference Record of the Twenty-Ninth IEEE Photovoltaic Specialists Conference, 2002..
[156] José L. Bernal-Agustín,et al. Design of isolated hybrid systems minimizing costs and pollutant emissions , 2006 .
[157] S. M. Shaahid,et al. Role of hybrid ( wind+diesel ) power systems in meeting commercial loads , 2004 .
[158] Santanu Bandyopadhyay,et al. Sizing curve for design of isolated power systems , 2007 .
[159] Lester Ingber,et al. Simulated annealing: Practice versus theory , 1993 .
[160] Tom E. Baldock,et al. Feasibility analysis of renewable energy supply options for a grid-connected large hotel , 2009 .
[161] J. M. Ngundam,et al. Simulation of off-grid generation options for remote villages in Cameroon , 2008 .
[162] John K. Kaldellis,et al. Sizing a hybrid wind-diesel stand-alone system on the basis of minimum long-term electricity production cost , 2006 .
[163] Pelin Yilmaz,et al. A pre-feasibility case study on integrated resource planning including renewables , 2008 .
[164] Caisheng Wang,et al. Unit sizing and cost analysis of stand-alone hybrid wind/PV/fuel cell power generation systems , 2006 .
[165] G. Barakat,et al. Design study and optimization of a grid independent wind/PV/Diesel system , 2009, 2009 13th European Conference on Power Electronics and Applications.
[166] N. Lymberopoulos,et al. Techno-economic analysis of the integration of hydrogen energy technologies in renewable energy-based stand-alone power systems , 2007 .
[167] Chui-Yu Chiu,et al. Applying artificial immune system and ant algorithm in air-conditioner market segmentation , 2009, Expert Syst. Appl..
[168] Carlos Bordons,et al. Optimization strategy for element sizing in hybrid power systems , 2009 .
[169] N. M. Muhamad Razali,et al. Backward reduction application for minimizing wind power scenarios in stochastic programming , 2010, 2010 4th International Power Engineering and Optimization Conference (PEOCO).
[170] Muhammad Murtadha Othman,et al. Optimal sizing and operational strategy of hybrid renewable energy system using homer , 2010, 2010 4th International Power Engineering and Optimization Conference (PEOCO).
[171] S. M. Moghaddas-Tafreshi,et al. Optimal sizing of a stand-alone hybrid power system via particle swarm optimization for Kahnouj area in south-east of Iran , 2009 .
[172] José A. Carta,et al. Wind powered pumped hydro storage systems, a means of increasing the penetration of renewable energy in the Canary Islands , 2006 .
[173] M. Miyatake,et al. A Novel maximum power point tracker controlling several converters connected to photovoltaic arrays with particle swarm optimization technique , 2007, 2007 European Conference on Power Electronics and Applications.
[174] Eyad S. Hrayshat,et al. Techno-economic analysis of autonomous hybrid photovoltaic-diesel-battery system , 2009 .
[175] S. Ashok,et al. Optimised model for community-based hybrid energy system , 2007 .
[176] Seydi Vakkas Üstün,et al. Optimal tuning of PI coefficients by using fuzzy-genetic for V/f controlled induction motor , 2008, Expert Syst. Appl..
[177] Lingfeng Wang,et al. Compromise Between Cost and Reliability In Optimum Design of An Autonomous Hybrid Power System Using Mixed-Integer PSO Algorithm , 2007, 2007 International Conference on Clean Electrical Power.
[178] Eftichios Koutroulis,et al. Methodology for the design optimisation and the economic analysis of grid-connected photovoltaic systems , 2009 .
[179] T. Blackler,et al. Pre-feasibility study of wind power generation in holyrood, newfoundland , 2006 .
[180] W. Prommee,et al. A study of particle swarm technique for renewable energy power systems , 2010, Proceedings of the International Conference on Energy and Sustainable Development: Issues and Strategies (ESD 2010).
[181] M.P. Sharma,et al. Design of an Optimal Hybrid Energy System Model for Remote Rural Area Power Generation , 2007, 2007 International Conference on Electrical Engineering.
[182] John K. Kaldellis,et al. Optimum sizing of an autonomous wind–diesel hybrid system for various representative wind-potential cases , 2006 .
[183] N. Duić,et al. Renewislands—Renewable energy solutions for islands , 2007 .
[184] Igor Skrjanc,et al. Hybrid fuzzy predictive control based on genetic algorithms for the temperature control of a batch reactor , 2008, Comput. Chem. Eng..
[185] Kalyanmoy Deb,et al. Optimization for Engineering Design: Algorithms and Examples , 2004 .
[186] B. Ould Bilal,et al. Optimal design of a hybrid solar–wind-battery system using the minimization of the annualized cost system and the minimization of the loss of power supply probability (LPSP) , 2010 .
[187] S. M. Hakimi,et al. Optimal sizing of a stand-alone hybrid power system via particle swarm optimization (PSO) , 2007, 2007 International Power Engineering Conference (IPEC 2007).
[188] C. Singh,et al. Multicriteria Design of Hybrid Power Generation Systems Based on a Modified Particle Swarm Optimization Algorithm , 2009, IEEE Transactions on Energy Conversion.
[189] Prabodh Bajpai,et al. Sizing optimization and analysis of a stand-alone WTG system using hybrid energy storage technologies , 2010, Proceedings of the International Conference on Energy and Sustainable Development: Issues and Strategies (ESD 2010).
[190] Santanu Bandyopadhyay,et al. Optimum sizing of wind-battery systems incorporating resource uncertainty , 2010 .
[191] Getachew Bekele,et al. Feasibility study for a standalone solar–wind-based hybrid energy system for application in Ethiopia , 2010 .
[192] J. Byrne,et al. The economics of sustainable energy for rural development: A study of renewable energy in rural China , 1998 .
[193] Philippe Poggi,et al. Sizing of photovoltaic system coupled with hydrogen/oxygen storage based on the ORIENTE model , 2010 .
[194] John K. Kaldellis,et al. Optimum autonomous photovoltaic solution for the Greek islands on the basisof energy pay-back analysis , 2009 .
[195] Shyi-Ming Chen,et al. A new approach to generate weighted fuzzy rules using genetic algorithms for estimating null values , 2008, Expert Syst. Appl..
[196] Salvina Gagliano,et al. Hybrid solar/wind power system probabilistic modelling for long-term performance assessment , 2006 .
[197] A. Su,et al. Dynamic modeling of a solar hydrogen system under leakage conditions , 2008 .
[198] Adel Mellit,et al. An adaptive artificial neural network model for sizing stand-alone photovoltaic systems: application for isolated sites in Algeria , 2005 .
[199] Mauricio G. C. Resende,et al. A genetic algorithm for the resource constrained multi-project scheduling problem , 2008, Eur. J. Oper. Res..
[200] Belkacem Draoui,et al. Techno-economical study of hybrid power system for a remote village in Algeria , 2008 .
[201] Christian Blum,et al. Ant colony optimization: Introduction and recent trends , 2005 .
[202] John K. Kaldellis,et al. Cost benefit analysis of a photovoltaic-energy storage electrification solution for remote islands , 2009 .
[203] Goran Krajačić,et al. H2RES, Energy planning tool for island energy systems – The case of the Island of Mljet , 2009 .
[204] John K. Kaldellis,et al. Optimum technoeconomic energy autonomous photovoltaic solution for remote consumers throughout Greece , 2004 .
[205] Marco Dorigo,et al. Optimization, Learning and Natural Algorithms , 1992 .
[206] Makbul Anwari,et al. Performance analysis of hybrid photovoltaic/diesel energy system under Malaysian conditions , 2010 .
[207] M. Iqbal. A feasibility study of a zero energy home in Newfoundland , 2004 .
[208] Daniel Weisser,et al. A wind¿diesel system with hydrogen storage: Joint optimisation of design and dispatch , 2006 .
[209] Timothy C. Green,et al. A stochastic method for battery sizing with uninterruptible-power and demand shift capabilities in P , 2010 .
[210] Adel A.A. El-Gammal,et al. A Novel Coordinated Efficient GA-Self Regulating PID Controller for Hybrid PV-FC-Diesel-Battery Renewable Energy Scheme for Household Electricity Utilization , 2010, 2010 Fourth Asia International Conference on Mathematical/Analytical Modelling and Computer Simulation.
[211] A. Vasan,et al. Comparative analysis of Simulated Annealing, Simulated Quenching and Genetic Algorithms for optimal reservoir operation , 2009, Appl. Soft Comput..
[212] D. Kolokotsa,et al. Design optimization of desalination systems power-supplied by PV and W/G energy sources. , 2010 .
[213] Woodrow W. Clark,et al. Remote power systems with advanced storage technologies for Alaskan villages , 1997 .
[214] Jeremy Lagorse,et al. Hybrid stand-alone power supply using PEMFC, PV and battery - Modelling and optimization , 2009, 2009 International Conference on Clean Electrical Power.
[215] Massimo Santarelli,et al. Mathematical optimization of a RES-H2 plant using a black box algorithm , 2005 .
[216] A. Parizad,et al. Optimal sizing of a hydrogen-based wind/PV plant considering reliability indices , 2009, 2009 International Conference on Electric Power and Energy Conversion Systems, (EPECS).
[217] Prabodh Bajpai,et al. Renewable hybrid stand-alone telecom power system modeling and analysis , 2009, TENCON 2009 - 2009 IEEE Region 10 Conference.
[218] Chin-Hsiung Loh,et al. GA-optimized fuzzy logic control of a large-scale building for seismic loads , 2008 .
[219] Shabbir H. Gheewala,et al. Life cycle cost analysis of alternative vehicles and fuels in Thailand , 2007 .