A Comprehensive State-of-the-Art Survey on Hybrid Renewable Energy System Operations and Planning
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[1] S. Ashok,et al. Optimised model for community-based hybrid energy system , 2007 .
[2] Akbar Maleki,et al. Optimal sizing of autonomous hybrid photovoltaic/wind/battery power system with LPSP technology by using evolutionary algorithms , 2015 .
[3] Haisheng Chen,et al. Progress in electrical energy storage system: A critical review , 2009 .
[4] R. P. Saini,et al. A review on Integrated Renewable Energy System based power generation for stand-alone applications: Configurations, storage options, sizing methodologies and control , 2014 .
[5] Y. Hamam,et al. Selection of a Hybrid Renewable Energy Systems for a Low-Income Household , 2019, Sustainability.
[6] Kuo-Hao Chang,et al. Optimal design of hybrid renewable energy systems using simulation optimization , 2015, Simul. Model. Pract. Theory.
[7] M. Hancock,et al. A new method for optimising the operation of stand-alone PV hybrid power systems , 1994, Proceedings of 1994 IEEE 1st World Conference on Photovoltaic Energy Conversion - WCPEC (A Joint Conference of PVSC, PVSEC and PSEC).
[8] D. Akinyele,et al. Possibility of solar thermal power generation technologies in Nigeria: Challenges and policy directions , 2019, Renewable Energy Focus.
[9] Djamila Diaf,et al. A methodology for optimal sizing of autonomous hybrid PV/wind system , 2007 .
[10] G. Joos,et al. Integrating renewable energy sources and storage into isolated diesel generator supplied electric power systems , 2008, 2008 13th International Power Electronics and Motion Control Conference.
[11] Zulkifli Mohd Nopiah,et al. Optimal operational strategy for hybrid renewable energy system using genetic algorithms , 2007 .
[12] R. P. Saini,et al. Modeling of integrated renewable energy system for electrification of a remote area in India , 2016 .
[13] Kostas Kalaitzakis,et al. Methodology for optimal sizing of stand-alone photovoltaic/wind-generator systems using genetic algorithms , 2006 .
[14] S.M.T. Bathaee,et al. Techno-economic optimization of hybrid photovoltaic/wind generation together with energy storage system in a stand-alone micro-grid subjected to demand response , 2017 .
[15] A. Hamidat,et al. Optimal hybrid PV/wind energy system sizing: Application of cuckoo search algorithm for Algerian dairy farms , 2017 .
[16] Saad Mekhilef,et al. Optimization of micro-grid system using MOPSO , 2014 .
[17] Seddik Bacha,et al. Sizing stand-alone photovoltaic–wind hybrid system: Techno-economic analysis and optimization , 2014 .
[18] P. O. Oluseyi,et al. Evaluation of a grid-independent solar photovoltaic system for primary health centres (PHCs) in developing countries , 2018 .
[19] E. Diemuodeke,et al. Multi-criteria assessment of hybrid renewable energy systems for Nigeria’s coastline communities , 2016 .
[20] Sayedus Salehin,et al. Assessment of renewable energy systems combining techno-economic optimization with energy scenario analysis , 2016 .
[21] M. R. Elkadeem,et al. Feasibility analysis and techno-economic design of grid-isolated hybrid renewable energy system for electrification of agriculture and irrigation area: A case study in Dongola, Sudan , 2019, Energy Conversion and Management.
[22] Yskandar Hamam,et al. Optimal Allocation of Renewable Energy Hybrid Distributed Generations for Small-Signal Stability Enhancement , 2019 .
[23] Abdolvahhab Fetanat,et al. Size optimization for hybrid photovoltaic-wind energy system using ant colony optimization for continuous domains based integer programming , 2015, Appl. Soft Comput..
[24] H. Gharavi,et al. Imperial competitive algorithm optimization of fuzzy multi-objective design of a hybrid green power system with considerations for economics, reliability, and environmental emissions , 2015 .
[25] Heidar Ali Talebi,et al. Reliability/cost-based multi-objective Pareto optimal design of stand-alone wind/PV/FC generation microgrid system , 2016 .
[26] Rajesh Kumar Nema,et al. Determination of reliability constrained optimal resource mix for an autonomous hybrid power system using Particle Swarm Optimization , 2014 .
[27] Emanuela Colombo,et al. Off-grid systems for rural electrification in developing countries: Definitions, classification and a comprehensive literature review , 2016 .
[28] Alessio Ishizaka,et al. Multi-criteria Decision Analysis: Methods and Software , 2013 .
[29] S. Riffat,et al. Experimental investigation of a biomass-fired ORC-based micro-CHP for domestic applications , 2012 .
[30] E. Hirst,et al. Electric‐Utility Resource Planning and Decision‐Making: The Importance of Uncertainty , 1990 .
[31] T. Robinson,et al. Sustainable Development Goals , 2016 .
[32] M. K. Deshmukh,et al. A new approach to micro-level energy planning--A case of northern parts of Rajasthan, India , 2009 .
[33] P. O. Oluseyi,et al. Comparative Analysis of Two Direct MPPT Methods Used for Tracking Maximum Power Points in a Photovoltaic System , 2019 .
[34] 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.
[35] Sunil Kumar Singal,et al. Economic Analysis of Integrated Renewable Energy System for Electrification of Remote Rural Area Having Scattered Population , 2018, International Journal of Renewable Energy Research.
[36] Marc A. Rosen,et al. Optimization with a simulated annealing algorithm of a hybrid system for renewable energy including battery and hydrogen storage , 2018, Energy.
[37] A. Sumper,et al. Deployment of a stand‐alone hybrid renewable energy system in coastal areas as a reliable energy source , 2019, Environmental Progress & Sustainable Energy.
[38] Zhou Wei,et al. Optimal design and techno-economic analysis of a hybrid solar–wind power generation system , 2009 .
[39] Yskandar Hamam,et al. Towards maximising the integration of renewable energy hybrid distributed generations for small signal stability enhancement: A review , 2020, International Journal of Energy Research.
[40] Ahmet Palazoglu,et al. Operational optimization and demand response of hybrid renewable energy systems , 2015 .
[41] Ozan Erdinc,et al. Recent trends in PEM fuel cell-powered hybrid systems: Investigation of application areas, design architectures and energy management approaches , 2010 .
[42] Jiangjiang Wang,et al. Review on multi-criteria decision analysis aid in sustainable energy decision-making , 2009 .
[43] Alibakhsh Kasaeian,et al. Optimizing a hybrid wind-PV-battery system using GA-PSO and MOPSO for reducing cost and increasing reliability , 2017, Energy.
[44] Pragya Nema,et al. An overview of global climate changing in current scenario and mitigation action , 2012 .
[45] Rachid Ibtiouen,et al. Sizing optimization of grid-independent hybrid photovoltaic/wind power generation system , 2011 .
[46] 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 .
[47] Ed Brown,et al. Imagining renewable energy: Towards a Social Energy Systems approach to community renewable energy projects in the Global South , 2017 .
[48] Brian Vad Mathiesen,et al. A review of computer tools for analysing the integration of renewable energy into various energy systems , 2010 .
[49] Shi Liu,et al. A method for optimal sizing of stand-alone hybrid PV/Wind/Battery system , 2013 .
[50] S. Sadjadi,et al. Optimization methods applied to renewable and sustainable energy: A review , 2017 .
[51] Sven-Erik Thor,et al. Long‐term research and development needs for wind energy for the time frame 2000–2020 , 2002 .
[52] Akbar Maleki,et al. Optimal sizing of a grid independent hybrid renewable energy system incorporating resource uncertainty, and load uncertainty , 2016 .
[53] A. Askarzadeh,et al. Artificial bee swarm optimization for optimum sizing of a stand-alone PV/WT/FC hybrid system considering LPSP concept , 2014 .
[54] O. V. Marchenko,et al. Modeling of hydrogen and electrical energy storages in wind/PV energy system on the Lake Baikal coast , 2017 .
[55] Alireza Maheri,et al. Multi-objective design under uncertainties of hybrid renewable energy system using NSGA-II and chance constrained programming , 2016 .
[56] Y. V. Pavan Kumar,et al. Renewable energy based microgrid system sizing and energy management for green buildings , 2015 .
[57] M.P. Sharma,et al. Optimised application of hybrid renewable energy system in rural electrification , 2006, 2006 India International Conference on Power Electronics.
[58] Sachin Mishra,et al. Optimization of size of PV/wind/biodiesel by using Artificial Bee Colony (ABC) algorithm , 2017, 2017 Recent Developments in Control, Automation & Power Engineering (RDCAPE).
[59] Dirk Uwe Sauer,et al. Optimization of an off-grid hybrid PV-Wind-Diesel system with different battery technologies using genetic algorithm , 2013 .
[60] 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 .
[61] Hongxing Yang,et al. Development of hybrid battery-supercapacitor energy storage for remote area renewable energy systems , 2015 .
[62] Masoud Rashidinejad,et al. A comprehensive sequential review study through the generation expansion planning , 2017 .
[63] B. Vaseghi,et al. A renewable energy solution for stand-alone power generation: A case study of KhshU Site-Iran , 2018, Renewable Energy.
[64] J. Sadeh,et al. Optimal sizing of hybrid wind/photovoltaic/battery considering the uncertainty of wind and photovoltaic power using Monte Carlo , 2012, 2012 11th International Conference on Environment and Electrical Engineering.
[65] Ajay Kumar Bansal,et al. Economic analysis and power management of a stand-alone wind/photovoltaic hybrid energy system using biogeography based optimization algorithm , 2013, Swarm Evol. Comput..
[66] Mohammed Saeed,et al. Modified particle swarm optimisation technique for optimal design of small renewable energy system supplying a specific load at Mansoura University , 2015 .
[67] Pavlos S. Georgilakis,et al. Reliability and economic evaluation of small autonomous power systems containing only renewable energy sources. , 2009 .
[68] Ali Mostafaeipour,et al. Techno-economic feasibility of a photovoltaic-wind power plant construction for electric and hydrogen production: A case study , 2017 .
[69] Mohan Kolhe,et al. Techno-economic sizing of off-grid hybrid renewable energy system for rural electrification in Sri Lanka , 2015 .
[70] A. Pantaleo,et al. Energy performance and profitability of biomass boilers in the commercial sector: A case study in the UK , 2018, Energy Procedia.
[71] Nadejda Komendantova,et al. Renewables 2012 Global Status Report , 2012 .
[72] Mukesh Singh,et al. Feasibility study of an islanded microgrid in rural area consisting of PV, wind, biomass and battery energy storage system , 2016 .
[73] H.W. Ngan,et al. Operational optimization of a stand-alone hybrid renewable energy generation system based on an improved genetic algorithm , 2010, IEEE PES General Meeting.
[74] Mahendra Pal Sharma,et al. A review on configurations, control and sizing methodologies of hybrid energy systems , 2014 .
[75] A. A. Abou El-Ela,et al. Optimal planning of wind—diesel generation units in an isolated area , 1991 .
[76] G. J. Rios-Moreno,et al. Optimal sizing of renewable hybrids energy systems: A review of methodologies , 2012 .
[77] Meihong Wang,et al. Energy storage technologies and real life applications – A state of the art review , 2016 .
[78] Prashant Baredar,et al. Optimisation of the hybrid renewable energy system by HOMER, PSO and CPSO for the study area , 2017 .
[79] Anna Darmani,et al. What drives the development of renewable energy technologies? Toward a typology for the systemic drivers , 2014 .
[80] Antonio Giallanza,et al. A sizing approach for stand-alone hybrid photovoltaic-wind-battery systems: A Sicilian case study , 2018, Journal of Cleaner Production.
[81] Nikolaos E. Koltsaklis,et al. State-of-the-art generation expansion planning: A review , 2018, Applied Energy.
[82] Xia Chang-liang,et al. Wind energy in China: Current scenario and future perspectives , 2009 .
[83] 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 .
[84] Wei Zhou,et al. A novel optimization sizing model for hybrid solar-wind power generation system , 2007 .
[85] Lars Christian Henriksen. Wind Energy literature survey no. 27 , 2013 .
[86] Kristian Madsen,et al. Carbon Debt Payback Time for a Biomass Fired CHP Plant—A Case Study from Northern Europe , 2018 .
[87] M. A. Elhadidy,et al. Performance evaluation of hybrid (wind/solar/diesel) power systems , 2002 .
[88] Belgin Emre Turkay,et al. Economic analysis of standalone and grid connected hybrid energy systems , 2011 .
[89] Akbar Maleki,et al. Optimal sizing of a PV/wind/diesel system with battery storage for electrification to an off-grid remote region: A case study of Rafsanjan, Iran , 2014 .
[90] Shao Yingjuan,et al. A biomass-fired micro-scale CHP system with organic Rankine cycle (ORC) – Thermodynamic modelling studies , 2011 .
[91] Anil Markandya,et al. Electricity generation and health , 2007, The Lancet.
[92] 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.
[93] Moofik Al-Tai,et al. Energy storage systems: A review of the technology and its application in power systems , 2015, 2015 50th International Universities Power Engineering Conference (UPEC).
[94] R. P. Saini,et al. A review on planning, configurations, modeling and optimization techniques of hybrid renewable energy systems for off grid applications , 2016 .
[95] Sergio Busquets-Monge,et al. Interfacing Renewable Energy Sources to the Utility Grid Using a Three-Level Inverter , 2006, IEEE Transactions on Industrial Electronics.
[96] Jan T. Bialasiewicz,et al. Power-Electronic Systems for the Grid Integration of Renewable Energy Sources: A Survey , 2006, IEEE Transactions on Industrial Electronics.
[97] Aderemi Oluyinka Adewumi,et al. A biased load manager home energy management system for low-cost residential building low-income occupants , 2018 .
[98] Noboru Yamada,et al. Sizing and Analysis of Renewable Energy and Battery Systems in Residential Microgrids , 2016, IEEE Transactions on Smart Grid.
[99] Valerie Belton,et al. Structuring problems for Multi-Criteria Decision Analysis in practice: A literature review of method combinations , 2017, Eur. J. Oper. Res..
[100] Seddik Bacha,et al. Modeling and control of hybrid photovoltaic wind power system with battery storage , 2015 .
[101] Arindam Chakraborty,et al. Advancements in power electronics and drives in interface with growing renewable energy resources , 2011 .
[102] Vladimir Strezov,et al. Sustainability considerations for electricity generation from biomass , 2010 .
[103] Daniel Akinyele,et al. Techno-Economic and Life-Cycle Impact Analysis of Solar Photovoltaic Microgrid Systems for Off-Grid Communities , 2016 .
[104] Sung-Hoon Ahn,et al. Optimization of hybrid renewable energy power systems: A review , 2015, International Journal of Precision Engineering and Manufacturing-Green Technology.
[105] Dheeraj Kumar Khatod,et al. Analytical Approach for Well-Being Assessment of Small Autonomous Power Systems With Solar and Wind Energy Sources , 2010, IEEE Transactions on Energy Conversion.
[106] Rabindra Nepal,et al. Roles and potentials of renewable energy in less-developed economies: The case of Nepal , 2012 .
[107] Shantha Gamini Jayasinghe,et al. A review on recent size optimization methodologies for standalone solar and wind hybrid renewable energy system , 2017 .
[108] Ramesh Rayudu,et al. Comprehensive techno-economic and environmental impact study of a localised photovoltaic power system (PPS) for off-grid communities , 2016 .
[109] Djamila Rekioua,et al. Sizing methodology for hybrid photovoltaic /wind/ hydrogen/battery integrated to energy management strategy for pumping system , 2018, Energy.
[110] S. Sekhar,et al. Techno- Economic evaluation of milk chilling unit retrofitted with hybrid renewable energy system in coastal province , 2018 .
[111] Yuyan Han,et al. An Improved Brain Storm Optimization for a Hybrid Renewable Energy System , 2019, IEEE Access.
[112] K. Deb,et al. Metaheuristic Techniques , 2016 .
[113] Anand Singh,et al. Optimal sizing and location of PV, wind and battery storage for electrification to an island: A case study of Kavaratti, Lakshadweep , 2017 .
[114] Salvina Gagliano,et al. Hybrid solar/wind power system probabilistic modelling for long-term performance assessment , 2006 .
[115] Said Diaf,et al. Feasibility study and energy conversion analysis of stand-alone hybrid renewable energy system , 2015 .
[116] Vivekananda Mukherjee,et al. Techno-economic analysis and performance assessment of standalone photovoltaic/wind/hybrid power system in Lakshadweep islands of India , 2015 .
[117] Lijun Zhang,et al. An Environmentally-Friendly Tourist Village in Egypt Based on a Hybrid Renewable Energy System––Part One: What Is the Optimum City? , 2015 .
[118] P. S. Manoharan,et al. Economic cost analysis of hybrid renewable energy system using HOMER , 2012, IEEE-International Conference On Advances In Engineering, Science And Management (ICAESM -2012).
[119] R. Clift,et al. Life cycle assessment of a biomass CHP plant in UK: The Heathrow energy centre case , 2018 .
[120] 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 .
[121] Yanfeng Liu,et al. Modeling, planning, application and management of energy systems for isolated areas: A review , 2018 .
[122] M. S. Kandil,et al. Optimum operation of an autonomous energy system suitable for new communities in developing countries , 1991 .
[123] Risto Lahdelma,et al. Non-convex power plant modelling in energy optimisation , 2006, Eur. J. Oper. Res..
[124] Ali Naci Celik,et al. Techno-economic analysis of autonomous PV-wind hybrid energy systems using different sizing methods , 2003 .
[125] Lukumon O. Oyedele,et al. Benchmarks for energy access: Policy vagueness and incoherence as barriers to sustainable electrification of the global south , 2019, Energy Research & Social Science.
[126] G. N. Marichal,et al. Assessment of Hybrid Renewable Energy Systems to supplied energy to Autonomous Desalination Systems in two islands of the Canary Archipelago , 2019, Renewable and Sustainable Energy Reviews.
[127] A. B. Raju,et al. Economic analysis and comparison of proposed HRES for stand-alone applications at various places in Karnataka state , 2011, ISGT2011-India.
[128] Vigna Kumaran Ramachandaramurthy,et al. Techno-economical optimization of hybrid pv/wind/battery system using Neuro-Fuzzy , 2011 .
[129] M. M. Ardehali,et al. Particle swarm optimization based fuzzy logic controller for autonomous green power energy system with hydrogen storage , 2013 .
[130] Zhenhua Jiang,et al. Hierarchical microgrid paradigm for integration of distributed energy resources , 2008, 2008 IEEE Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century.
[131] Anula Khare,et al. Sizing and performance analysis of standalone wind-photovoltaic based hybrid energy system using ant colony optimisation , 2016 .
[132] Bo Zhao,et al. Optimal sizing, operating strategy and operational experience of a stand-alone microgrid on Dongfushan Island , 2014 .
[133] P. Fleming,et al. Generation expansion planning optimisation with renewable energy integration: A review , 2017 .
[134] Ricardo Nicolau Nassar Koury,et al. Energy, exergy and economic analysis of a hybrid renewable energy with hydrogen storage system , 2018 .
[135] T. Ma,et al. Optimal hybrid pumped hydro-battery storage scheme for off-grid renewable energy systems , 2019, Energy Conversion and Management.
[136] Vigna K. Ramachandaramurthy,et al. Review on the optimal placement, sizing and control of an energy storage system in the distribution network , 2019, Journal of Energy Storage.
[137] Eugene Fernandez,et al. Modeling, size optimization and sensitivity analysis of a remote hybrid renewable energy system , 2018 .
[138] Andreas Seidler,et al. The Use of Biomass for Electricity Generation: A Scoping Review of Health Effects on Humans in Residential and Occupational Settings , 2018, International journal of environmental research and public health.
[139] 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 .
[140] Adeola Balogun,et al. Direct Model-Based Predictive Control of a Three-Phase Grid Connected VSI for Photovoltaic Power Evacuation , 2018, 2018 9th IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG).
[141] Ajai Gupta,et al. Modelling of hybrid energy system - Part I: Problem formulation and model development. , 2011 .
[142] Xianguo Li,et al. Investigation of wind characteristics and assessment of wind energy potential for Waterloo region, Canada. , 2005 .
[143] Hazlie Mokhlis,et al. Emergence of energy storage technologies as the solution for reliable operation of smart power systems: A review , 2013 .
[144] L. Suganthi,et al. Renewable energy planning for India in 21st century , 1998 .
[145] Ramin Hosseinalizadeh,et al. Economic sizing of a hybrid (PV–WT–FC) renewable energy system (HRES) for stand-alone usages by an optimization-simulation model: Case study of Iran , 2016 .
[146] O. Nadjemi,et al. Potential, optimization and sensitivity analysis of photovoltaic-diesel-battery hybrid energy system for rural electrification in Algeria , 2019, Energy.
[147] Alireza Askarzadeh,et al. A novel framework for optimization of a grid independent hybrid renewable energy system: A case study of Iran , 2015 .
[148] Syed Farooq Ali,et al. Techno economic analysis of a wind-photovoltaic-biomass hybrid renewable energy system for rural electrification: A case study of Kallar Kahar , 2018 .
[149] M. Swilling,et al. Exploring hybrid models for universal access to basic solar energy services in informal settlements: Case studies from South Africa and Zimbabwe , 2019, Energy Research & Social Science.
[151] Eugene Fernandez,et al. Maiden application of Cuckoo Search algorithm for optimal sizing of a remote hybrid renewable energy System , 2016 .
[152] Benjamin Sovacool,et al. Rethinking the governance of energy poverty in sub-Saharan Africa: Reviewing three academic perspectives on electricity infrastructure investment , 2019, Renewable and Sustainable Energy Reviews.
[153] Sunanda Sinha,et al. Review of software tools for hybrid renewable energy systems , 2014 .
[154] Ramchandra Bhandari,et al. Hybrid off-grid renewable power system for sustainable rural electrification in Benin , 2020 .
[155] Akbar Maleki,et al. A hybrid algorithm based optimization on modeling of grid independent biodiesel-based hybrid solar/wind systems , 2018, Renewable Energy.
[156] Ajit Achuthan,et al. Optimal design of hybrid renewable energy systems (HRES) using hydrogen storage technology for data center applications , 2013 .
[157] Soteris A. Kalogirou,et al. Energy storage for electricity generation and related processes: Technologies appraisal and grid scale applications , 2018, Renewable and Sustainable Energy Reviews.
[158] A. K. Akella,et al. Optimum utilization of renewable energy sources in a remote area , 2007 .
[159] Ziyad M. Salameh,et al. Optimum photovoltaic array size for a hybrid wind/PV system , 1994 .
[160] Mohd Wazir Mustafa,et al. Hybrid renewable energy systems for off-grid electric power: Review of substantial issues , 2014 .
[161] J. Rezaei. Best-worst multi-criteria decision-making method , 2015 .
[162] Ricardo Vasquez Padilla,et al. Modelling autonomous hybrid photovoltaic-wind energy systems under a new reliability approach , 2018, Energy Conversion and Management.
[163] Xingjie Liu,et al. Optimal Sizing of Distributed Energy in AC/DC Hybrid Stand-alone Micro-grid Using Modified Artificial Bee Colony Algorithm , 2016 .
[164] A. Hepbasli,et al. Techno-economic analysis of a stand-alone hybrid renewable energy system with hydrogen production and storage options , 2015 .
[165] S. Lall. Technological capabilities and industrialization , 1992 .
[166] Hossein Shahinzadeh,et al. Optimal design and management of isolated hybrid renewable energy system (WT/PV/ORES) , 2016, 2016 21st Conference on Electrical Power Distribution Networks Conference (EPDC).
[167] Ramesh Rayudu,et al. Review of energy storage technologies for sustainable power networks , 2014 .
[168] Mahendra Pal Sharma,et al. Development of IREOM model based on seasonally varying load profile for hilly remote areas of Uttara , 2011 .
[169] Wen Tong Chong,et al. Performance analysis of an off-grid wind-PV (photovoltaic)-diesel-battery hybrid energy system feasible for remote areas , 2016 .
[170] Fausto Cabrera,et al. Analysis of Hybrid Solar/Wind/Diesel Renewable Energy System for off-grid Rural Electrification , 2016, International Journal of Renewable Energy Research.
[171] Anand Singh,et al. Techno-economic feasibility analysis of hydrogen fuel cell and solar photovoltaic hybrid renewable energy system for academic research building , 2017 .
[172] Ilhan Ozturk,et al. The dynamic relationship between agricultural sustainability and food-energy-water poverty in a panel of selected Sub-Saharan African Countries , 2017 .
[173] Oluwaseun Kunle Oyebode,et al. Neural network modeling of hydrological systems: A review of implementation techniques , 2018, Natural Resource Modeling.
[174] D. Babatunde,et al. Off‐grid hybrid renewable energy system for rural healthcare centers: A case study in Nigeria , 2019, Energy Science & Engineering.
[175] S. Barakat,et al. A flower pollination optimization algorithm for an off-grid PV-Fuel cell hybrid renewable system , 2019, International Journal of Hydrogen Energy.
[176] Philipp A. Trotter,et al. Re-focusing foreign involvement in sub-Saharan Africa's power sector on sustainable development , 2018, Energy for Sustainable Development.
[177] Alireza Askarzadeh,et al. Optimizing operation of a photovoltaic/diesel generator hybrid energy system with pumped hydro storage by a modified crow search algorithm , 2020 .
[178] Mark Z. Jacobson,et al. California offshore wind energy potential , 2010 .
[179] J. Jatskevich,et al. Power Quality Control of Wind-Hybrid Power Generation System Using Fuzzy-LQR Controller , 2007, IEEE Transactions on Energy Conversion.
[180] Paul Gipe,et al. Wind energy comes of age California and Denmark , 1991 .
[181] Ali Reza Seifi,et al. Energy expansion planning by considering electrical and thermal expansion simultaneously , 2014 .
[182] Philip Owende,et al. Regional integration of renewable energy systems in Ireland - The role of hybrid energy systems for small communities , 2013 .
[183] B. J. Brinkworth,et al. Sizing and techno-economical optimization for hybrid solar photovoltaic/wind power systems with battery storage , 1997 .
[184] M. Cosgrove-Davies,et al. Electricity Access in Sub-Saharan Africa: Uptake, Reliability, and Complementary Factors for Economic Impact , 2019 .
[185] T. Kousksou,et al. Energy storage: Applications and challenges , 2014 .
[186] Saad Mekhilef,et al. Hybrid renewable energy supply for rural healthcare facilities: An approach to quality healthcare delivery , 2018, Sustainable Energy Technologies and Assessments.
[187] Giorgio Locatelli,et al. A Financial Model for Lithium-Ion Storage in a Photovoltaic and Biogas Energy System , 2019, Applied Energy.
[188] Mahendra Pal Sharma,et al. Integrated renewable energy systems for off grid rural electrification of remote area , 2010 .
[189] Desmond Eseoghene Ighravwe,et al. Urban Water Demand Forecasting: A Comparative Evaluation of Conventional and Soft Computing Techniques , 2019, Resources.
[190] Marco Giuntoli,et al. Optimized Thermal and Electrical Scheduling of a Large Scale Virtual Power Plant in the Presence of Energy Storages , 2013, IEEE Transactions on Smart Grid.
[191] M. Adaramola. Viability of grid-connected solar PV energy system in Jos, Nigeria , 2014 .
[192] Mahendra Pal Sharma,et al. Development of hybrid energy system with cycle charging strategy using particle swarm optimization for a remote area in India , 2015 .
[193] R. Chedid,et al. Probabilistic performance assessment of autonomous solar-wind energy conversion systems , 1999 .
[194] M. B. Daigavane,et al. Design and Optimization of Hybrid PV-Wind Renewable Energy System , 2018 .
[195] Xiangning Lin,et al. Hybrid renewable microgrid optimization techniques: A review , 2018 .
[196] M. Parsa Moghaddam,et al. Optimal planning of hybrid renewable energy systems using HOMER: A review , 2016 .
[197] Victor M. Sanchez,et al. Techno-economical optimization based on swarm intelligence algorithm for a stand-alone wind-photovoltaic-hydrogen power system at south-east region of Mexico , 2014 .
[198] Ahmed M. A. Haidar,et al. Optimal configuration assessment of renewable energy in Malaysia , 2011 .
[199] Mahmoud Ghofrani,et al. Optimizing Hybrid Renewable Energy Systems: A Review , 2016 .
[200] Kanzumba Kusakana,et al. Practical Implementation of Hybrid Energy Systems for Small Loads in Rural South Africa , 2018, 2018 Open Innovations Conference (OI).
[201] S. Iniyan,et al. An optimal renewable energy model for various end-uses , 2000 .
[202] A. Louche,et al. Design and techno-economical optimization for hybrid PV/wind system under various meteorological conditions , 2008 .
[203] Ji Xiang,et al. Sizing of a stand-alone photovoltaic/wind energy system with hydrogen and battery storage based on improved ant colony algorithm , 2016, 2016 Chinese Control and Decision Conference (CCDC).
[204] Dhaker Abbes,et al. Life cycle cost, embodied energy and loss of power supply probability for the optimal design of hybrid power systems , 2014, Math. Comput. Simul..
[205] R. P. Saini,et al. Renewable energy based off-grid rural electrification in Uttarakhand state of India: Technology options, modelling method, barriers and recommendations , 2015 .
[206] D. Kolokotsa,et al. Design optimization of desalination systems power-supplied by PV and W/G energy sources. , 2010 .
[207] L. Vandevelde,et al. Wind-PV-storage optimal environomic design using multi-objective Artificial Bee Colony , 2015, 2015 IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC).
[208] S. Kara,et al. Sizing a Hybrid Renewable Energy System to Reduce Energy Costs at Various Levels of Robustness for an Industrial Site , 2018 .
[209] Yanxia Sun,et al. Microgrid energy and reserve management incorporating prosumer behind-the-meter resources , 2018 .
[210] Mahmoud Moghavvemi,et al. Energy management strategies in hybrid renewable energy systems: A review , 2016 .
[211] J.P. Barton,et al. Energy storage and its use with intermittent renewable energy , 2004, IEEE Transactions on Energy Conversion.
[212] A. Lashkar Ara,et al. A hybrid of ant colony optimization and artificial bee colony algorithm for probabilistic optimal placement and sizing of distributed energy resources , 2015 .
[213] J. Sutherland,et al. An integrated sustainability model for a bioenergy system: Forest residues for electricity generation , 2018, Biomass and Bioenergy.
[214] Zong Woo Geem,et al. Size optimization for a hybrid photovoltaic–wind energy system , 2012 .
[215] M. M. Ardehali,et al. Optimization of autonomous combined heat and power system including PVT, WT, storages, and electric heat utilizing novel evolutionary particle swarm optimization algorithm , 2018 .
[216] Farshid Keynia,et al. Scrutiny of multifarious particle swarm optimization for finding the optimal size of a PV/wind/battery hybrid system , 2015 .
[217] N. Phuangpornpitak,et al. PV hybrid systems for rural electrification in Thailand , 2007 .
[218] Nidhi Singh Pal,et al. Ant colony optimization for less power consumption and fast charging of battery in solar grid system , 2017, 2017 4th IEEE Uttar Pradesh Section International Conference on Electrical, Computer and Electronics (UPCON).
[219] Nasrudin Abd Rahim,et al. Impact of renewable energy on rural electrification in Malaysia: a review , 2015, Clean Technologies and Environmental Policy.
[220] Xiaofang Yuan,et al. Multi-objective optimization of stand-alone hybrid PV-wind-diesel-battery system using improved fruit fly optimization algorithm , 2016, Soft Comput..
[221] Teuku Meurah Indra Mahlia,et al. Genetic algorithm based optimization on modeling and design of hybrid renewable energy systems , 2014 .
[222] Ajay Kumar Bansal,et al. BBO-based small autonomous hybrid power system optimization incorporating wind speed and solar radiation forecasting , 2015 .
[223] C. Monyei,et al. Water demand modelling using evolutionary computation techniques: integrating water equity and justice for realization of the sustainable development goals , 2019, Heliyon.
[224] Agnimitra Biswas,et al. Techno-economic optimization of an off-grid hybrid renewable energy system using metaheuristic optimization approaches – Case of a radio transmitter station in India , 2019, Energy Conversion and Management.
[225] P. Fraser. Distributed generation in liberalised electricity markets , 2003 .
[226] Seddik Bacha,et al. Modeling of hybrid photovoltaic/wind/fuel cells power system , 2014 .
[227] Atanda K. Raji,et al. Optimal sizing of hybrid fuel cell-supercapacitor storage system for off-grid renewable applications , 2019, Energy.
[228] Abdelali Astito,et al. Sizing methods and optimization techniques for PV-wind based hybrid renewable energy system: A review , 2018, Renewable and Sustainable Energy Reviews.
[229] Jonathan Shek,et al. Optimised operation of an off-grid hybrid wind-diesel-battery system using genetic algorithm , 2016 .
[230] Debesh Chakraborty,et al. Energy consumption and prospects for renewable energy technologies in an Indian village , 1990 .
[231] J.-Y. Lee,et al. A P-graph Model for Multi-period Optimization of Isolated Energy Systems , 2016 .
[232] Chee Wei Tan,et al. Feasibility Analysis of Standalone PV/Wind/Battery Hybrid Energy System for Rural Bangladesh , 2016 .
[233] Ramin Roshandel,et al. Lifetime optimization framework for a hybrid renewable energy system based on receding horizon optimization , 2018 .
[234] Adeola Balogun,et al. Control of a Three-Phase Multi-String Five-Level Inverter for Grid Integration of PV SystEms with Unbalanced DC-Link Voltages , 2018, 2018 9th IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG).
[235] I. MacGill,et al. Least cost 100% renewable electricity scenarios in the Australian National Electricity Market , 2013 .
[236] O. Adeoti,et al. Solar photovoltaic-based home electrification system for rural development in Nigeria: domestic load assessment , 2001 .
[237] Ramesh C. Bansal,et al. Multi-Objective Optimization of Hybrid Renewable Energy System Using Reformed Electric System Cascade Analysis for Islanding and Grid Connected Modes of Operation , 2018, IEEE Access.
[238] Ramezan Ali Naghizadeh,et al. Multi-criteria optimal sizing of hybrid renewable energy systems including wind, photovoltaic, battery, and hydrogen storage with ɛ-constraint method , 2018 .
[239] Ajay Kumar Bansal,et al. Economic Analysis and Power Management of a Small Autonomous Hybrid Power System (SAHPS) Using Biogeography Based Optimization (BBO) Algorithm , 2013, IEEE Transactions on Smart Grid.
[240] E. S. Obe,et al. Towards 100% renewable energy in Nigeria , 2017 .
[241] Asset Khabdullin,et al. Modeling the power of renewable energy sources in the context of classical electricity system transformation , 2017 .
[242] Maria Samarakou,et al. Optimization of a combined wind and solar power plant , 1986 .
[243] Yao Azoumah,et al. Modeling and optimization of batteryless hybrid PV (photovoltaic)/Diesel systems for off-grid applications , 2015 .
[244] B. Koirala,et al. Community energy storage: A responsible innovation towards a sustainable energy system? , 2018, Applied Energy.
[245] Yoash Levron,et al. Battery Storage Technologies for Electrical Applications: Impact in Stand-Alone Photovoltaic Systems , 2017 .
[246] Andreas K. Athienitis,et al. Design and optimization of net zero energy solar homes , 2006 .
[247] K. Ashenayi,et al. A knowledge-based approach to the design of integrated renewable energy systems , 1992 .
[248] Fidelis O. Ogwumike,et al. Analysis of energy poverty and its implications for sustainable development in Nigeria , 2015, Environment and Development Economics.
[249] K. J. Tseng,et al. Optimization of battery energy storage system with super-capacitor for renewable energy applications , 2011, 8th International Conference on Power Electronics - ECCE Asia.
[250] Robertas Damaševičius,et al. Hybrid microgrid for microfinance institutions in rural areas – A field demonstration in West Africa , 2019, Sustainable Energy Technologies and Assessments.
[251] P. O. Oluseyi,et al. Techno-economic and environmental evaluation of demand side management techniques for rural electrification in Ibadan, Nigeria , 2014, International Journal of Energy and Environmental Engineering.
[252] R. P. Saini,et al. Development of optimal integrated renewable energy model with battery storage for a remote Indian area , 2016 .
[253] D. González,et al. Influences of technological attributes on sourcing of manufacturing technologies in developing countries , 2019, Management Research: Journal of the Iberoamerican Academy of Management.
[254] 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 .
[255] Akbar Maleki,et al. A novel framework for optimal design of hybrid renewable energy-based autonomous energy systems: A case study for Namin, Iran , 2016 .
[256] Ronnie Belmans,et al. Distributed generation: definition, benefits and issues , 2005 .
[257] Alan C. Brent,et al. Research Insights and Knowledge Headways for Developing Remote, Off-Grid Microgrids in Developing Countries , 2019, Energies.
[258] Daming Xu,et al. Optimal sizing of standalone hybrid wind/PV power systems using genetic algorithms , 2005, Canadian Conference on Electrical and Computer Engineering, 2005..
[259] José L. Bernal-Agustín,et al. Probabilistic modelling and analysis of stand-alone hybrid power systems , 2013 .