Two heuristic approaches for the optimization of grid-connected hybrid solar–hydrogen systems to supply residential thermal and electrical loads
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[1] Riccardo Poli,et al. Particle swarm optimization , 1995, Swarm Intelligence.
[2] Anders Malmquist,et al. Optimum design of a hybrid PV–CSP–LPG microgrid with Particle Swarm Optimization technique , 2016 .
[3] Akbar Maleki,et al. Weather forecasting for optimization of a hybrid solar-wind–powered reverse osmosis water desalination system using a novel optimizer approach , 2016 .
[4] Ahmed Fathy,et al. A reliable methodology based on mine blast optimization algorithm for optimal sizing of hybrid PV-wind-FC system for remote area in Egypt , 2016 .
[5] Sancho Salcedo-Sanz,et al. Sizing and maintenance visits optimization of a hybrid photovoltaic-hydrogen stand-alone facility using evolutionary algorithms , 2014 .
[6] R. P. Saini,et al. Sizing of integrated renewable energy system based on load profiles and reliability index for the state of Uttarakhand in India , 2011 .
[7] Graham Coates,et al. Optimal online operation of residential μCHP systems using linear programming , 2012 .
[8] R. P. Saini,et al. A review on planning, configurations, modeling and optimization techniques of hybrid renewable energy systems for off grid applications , 2016 .
[9] Sunanda Sinha,et al. Review of software tools for hybrid renewable energy systems , 2014 .
[10] F. Barbir,et al. Efficiency and economics of proton exchange membrane (PEM) fuel cells , 1997 .
[11] Kamaruzzaman Sopian,et al. Optimization of a PV/wind micro-grid for rural housing electrification using a hybrid iterative/genetic algorithm: Case study of Kuala Terengganu, Malaysia , 2012 .
[12] Dipti Srinivasan,et al. An improved particle swarm optimisation algorithm applied to battery sizing for stand-alone hybrid power systems , 2016 .
[13] Akbar Maleki,et al. Comparative study of artificial intelligence techniques for sizing of a hydrogen-based stand-alone photovoltaic/wind hybrid system , 2014 .
[14] A. Askarzadeh,et al. Artificial bee swarm optimization for optimum sizing of a stand-alone PV/WT/FC hybrid system considering LPSP concept , 2014 .
[15] K. Palanisamy,et al. Optimization in microgrids with hybrid energy systems – A review , 2015 .
[16] Almoataz Y. Abdelaziz,et al. Ant Lion Optimization Algorithm for optimal location and sizing of renewable distributed generations , 2017 .
[17] Fabio Rinaldi,et al. Techno-economic feasibility of photovoltaic, wind, diesel and hybrid electrification systems for off-grid rural electrification in Colombia , 2016 .
[18] Ai-Qin Mu,et al. A Modified Particle Swarm Optimization Algorithm , 2009 .
[19] Mohsen Mohammadian,et al. Economic analysis of hybrid system consists of fuel cell and wind based CHP system for supplying grid-parallel residential load , 2014 .
[20] Mohammad S. Alam,et al. Evolutionary programming-based methodology for economical output power from PEM fuel cell for micro-grid application , 2005 .
[21] S. Ashok,et al. Optimised model for community-based hybrid energy system , 2007 .
[22] Mauro Reini,et al. Optimization of a Distributed Cogeneration System with solar district heating , 2014 .
[23] Akbar Maleki,et al. Modeling and optimal design of an off-grid hybrid system for electricity generation using various biodiesel fuels: a case study for Davarzan, Iran , 2016 .
[24] M. B. Gunes,et al. Investigation of a Fuel Cell Based Total Energy System for Residential Applications , 2001 .
[25] Mosayeb Bornapour,et al. Optimal coordinated scheduling of combined heat and power fuel cell, wind, and photovoltaic units in micro grids considering uncertainties , 2016 .
[26] R. Ramakumar,et al. A Linear Programming Approach to the Design of Integrated Renewable Energy Systems for Developing Countries , 1986, IEEE Transactions on Energy Conversion.
[27] Giorgio Graditi,et al. Comparison between two different operation strategies for a heat-driven residential natural gas-fired CHP system: Heat dumping vs. load partialization , 2016 .
[28] Saad Mekhilef,et al. Performance evaluation of a stand-alone PV-wind-diesel-battery hybrid system feasible for a large resort center in South China Sea, Malaysia , 2017 .
[29] I. Erlich,et al. Online optimal management of PEMFuel cells using neural networks , 2005, IEEE Transactions on Power Delivery.
[30] Soteris A. Kalogirou,et al. Design and simulation of a PV and a PV–Wind standalone energy system to power a household application , 2012 .
[31] Mojtaba Tahani,et al. Optimization of PV/Wind/Battery stand-alone system, using hybrid FPA/SA algorithm and CFD simulation, case study: Tehran , 2015 .
[32] Mahmoud M. El-Halwagi,et al. Optimal design of integrated CHP systems for housing complexes , 2015 .
[33] Farshid Keynia,et al. Scrutiny of multifarious particle swarm optimization for finding the optimal size of a PV/wind/battery hybrid system , 2015 .
[34] Jang-Ho Lee,et al. A novel approach for optimal combinations of wind, PV, and energy storage system in diesel-free isolated communities , 2016 .
[35] Goran Krajačić,et al. Optimal hybrid renewable energy design in autonomous system using Modified Electric System Cascade Analysis and Homer software , 2016 .
[36] Saman Soheyli,et al. Modeling a novel CCHP system including solar and wind renewable energy resources and sizing by a CC-MOPSO algorithm , 2016 .
[37] Mukesh Singh,et al. Feasibility study of an islanded microgrid in rural area consisting of PV, wind, biomass and battery energy storage system , 2016 .
[38] Mahendra Pal Sharma,et al. A review on configurations, control and sizing methodologies of hybrid energy systems , 2014 .
[39] Giovanna Cavazzini,et al. A PSO (particle swarm optimization)-based model for the optimal management of a small PV(Photovoltaic)-pump hydro energy storage in a rural dry area , 2014 .
[40] Hongbo Ren,et al. Economic and environmental evaluation of micro CHP systems with different operating modes for residential buildings in Japan , 2010 .
[41] Sunanda Sinha,et al. Review of recent trends in optimization techniques for solar photovoltaic–wind based hybrid energy systems , 2015 .
[42] Fernando Tadeo,et al. Energy management for a stand-alone photovoltaic-wind system suitable for rural electrification , 2016 .
[43] Mohammad S. Alam,et al. Impact of hydrogen production on optimal economic operation of a grid-parallel PEM fuel cell power plant , 2006 .
[44] Akbar Maleki,et al. Design and optimization of autonomous solar-wind-reverse osmosis desalination systems coupling battery and hydrogen energy storage by an improved bee algorithm , 2017, Desalination.
[45] Shin'ya Obara,et al. Economic and environmental based operation strategies of a hybrid photovoltaic–microgas turbine trigeneration system , 2014 .
[46] Rachid Ibtiouen,et al. Sizing optimization of grid-independent hybrid photovoltaic/wind power generation system , 2011 .
[47] Akbar Maleki,et al. Sizing of stand-alone photovoltaic/wind/diesel system with battery and fuel cell storage devices by harmony search algorithm , 2015 .
[48] Joshua M. Pearce,et al. Performance of U.S. hybrid distributed energy systems: Solar photovoltaic, battery and combined heat and power , 2015 .
[49] Georg Erdmann,et al. Future economics of the fuel cell housing market , 2003 .
[50] M. M. Ardehali,et al. Examination of energy price policies in Iran for optimal configuration of CHP and CCHP systems based on particle swarm optimization algorithm , 2010 .
[51] Taher Niknam,et al. Optimal power flow based TU/CHP/PV/WPP coordination in view of wind speed, solar irradiance and load correlations , 2015 .
[52] Russell C. Eberhart,et al. A new optimizer using particle swarm theory , 1995, MHS'95. Proceedings of the Sixth International Symposium on Micro Machine and Human Science.
[53] Jonathan Shek,et al. Optimised operation of an off-grid hybrid wind-diesel-battery system using genetic algorithm , 2016 .
[54] Nilay Shah,et al. Natural gas–biomass dual fuelled microturbines: Comparison of operating strategies in the Italian residential sector , 2014 .
[55] Temitope Raphael Ayodele,et al. Optimal allocation and sizing of PV/Wind/Split-diesel/Battery hybrid energy system for minimizing life cycle cost, carbon emission and dump energy of remote residential building , 2016 .
[56] Hongbo Ren,et al. Optimal operation of a grid-connected hybrid PV/fuel cell/battery energy system for residential applications , 2016 .
[57] Sajjad Kouhi,et al. Sources’ Response for supplying energy of a residential load in the form of on-grid hybrid systems , 2015 .
[58] Weijia Yuan,et al. Analysis of a new design of the hybrid energy storage system used in the residential m-CHP systems , 2017 .
[59] Pedro J. Mago,et al. Uncertainty based operating strategy selection in combined heat and power systems , 2016 .
[60] José L. Bernal-Agustín,et al. Simulation and optimization of stand-alone hybrid renewable energy systems , 2009 .
[61] Maurice Clerc,et al. The particle swarm - explosion, stability, and convergence in a multidimensional complex space , 2002, IEEE Trans. Evol. Comput..
[62] M. Ahmadi,et al. Design of a cost-effective wind/photovoltaic/hydrogen energy system for supplying a desalination unit by a heuristic approach , 2016 .
[63] Hamdi Abdi,et al. Optimal operation of multicarrier energy systems using Time Varying Acceleration Coefficient Gravitational Search Algorithm , 2016 .
[64] Akbar Maleki,et al. Optimization of a grid-connected hybrid solar-wind-hydrogen CHP system for residential applications by efficient metaheuristic approaches , 2017 .
[65] Marc A. Rosen,et al. Design of a cost-effective on-grid hybrid wind–hydrogen based CHP system using a modified heuristic approach , 2017 .
[66] Mohammad S. Alam,et al. Cost related sensitivity analysis for optimal operation of a grid-parallel PEM fuel cell power plant , 2006 .
[67] Dirk Uwe Sauer,et al. Optimization of an off-grid hybrid PV-Wind-Diesel system with different battery technologies using genetic algorithm , 2013 .
[68] Pedro J. Mago,et al. Effects of load-following operational methods on combined heat and power system efficiency , 2014 .