[1] Aydin, N.Y, 2009, GIS-Based Site Selection Approach for Wind and Solar Energy Systems: A Case Study from Western Turkey, Middle East Technical University, Inonu Bulvari, Ankara.
[2] United Nations, 2015, Adoption of Paris Agreement, In Proceedings of the Conference of the Parties, Twenty-Frist Session, Paris, France, November.
[3] Thirugnanasambandam, M., Iniyan, S., Goic, R., 2010, A Review of Solar Thermal Technologies, Renewable and sustainable energy reviews, 14(1), 312-322.
[4] Sadeghi, M., Karimi, M., 2017, GIS-Based Solar and Wind Turbine Site Selection Using Multi-Criteria Analysis: Case Study of Tehran, Iran, The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XLII-4/W4, 469-476. Tehran's Joint ISPRS Conferences of GI Research, SMPR and EOEC, 7–10 October, Tehran, Iran.
[5] Amjad, H., Malik, S., 2017, Solar Energy Site Selection in Sindh Using Multi Criteria Decision Analysis and Geospatial Techniques, Journal of GeoSpace Science, 2(1), 31-41.
[6] Alamdari, P., Nematollahi, O., Alemrajabi, A.A., 2013, Solar Energy Potentials in Iran: A Review, Renewable and Sustainable Energy Reviews, 21, 778-788.
[7] Kengpol, A., Rontlaong, P., Tuominen, M., 2013, A Decision Support System for Selection of Solar Power Plant Locations by Applying Fuzzy AHP and TOPSIS: An Empirical Study, Journal of Software Engineering and Applications, 6(09), 470.
[8] Sánchez-Lozano, J.M., Antunes, C.H., García-Cascales, M.S., Dias, L.C., 2014, GIS-Based Photovoltaic Solar Farms Site Selection Using ELECTRE-TRI: Evaluating The Case for Torre Pacheco, Murcia, Southeast of Spain, Renewable Energy, 66, 478-494.
[9] Noorollahi, E., Fadai, D., Akbarpour Shirazi, M., Ghodsipour, S. H., 2016, Land Suitability Analysis for Solar Farms Exploitation Using GIS and Fuzzy Analytic Hierarchy Process (FAHP)—A Case Study of Iran, Energies, 9(8), 643.
[10] Bremer, M., Mayr, A., Wichmann, V., Schmidtner, K., Rutzinger, M., 2016, A New Multi-Scale 3D-GIS-Approach for The Assessment and Dissemination of Solar Income of Digital City Models, Computers, Environment and Urban Systems, 57, 144-154.
[11] Nasehi, S., Noori, G., Faryadi, S., 2017, Locate Solar Power Plant with Fuzzy Logic and AHP (Case Study of Hormozgan Province). Journal of New Technologies in Energy Systems, 3(1),1-9.
[12] Ahmadi, H., Morshedi, J., Azimi, F., 2016, Site Selection of Solar Power Plant Using Climatic Data And Geospatial Information System (Case Study: ILAM Province), RS&GIS Techniques for Natural Resources, 7(1), 41-57.
[13] Taghvaei, M., Saboohi, E., 2017, Zoning and Locating Solar Power Plant in Esfahan Province, Journal of Urban Research and Planning, 8(28), 61-82
[14] Saaty T.L, 1980, An Analytical Hierarchy Process, New York: MacGrave- Hill.
[15] Malczewski, J., 2006, Ordered Weighted Averaging with Fuzzy Quantifiers: GIS-Based Multicriteria Evaluation for Land-Use Suitability Analysis, International Journal of Applied Earth Observation and Geoinformation, 8(4), 270-277.
[16] Yager, Ronald R., 1996, Quantifier Guided Aggregation Using OWA Operators, International Journal of Intelligent Systems, 11(1), 49-73.
[17] Hwang, C.L., Masud, A.S.M., 2012, Multiple Objective Decision Making—Methods and Applications: A State-of-the-Art Survey, Springer Science & Business Media, 164.
[18] Piazena, H., 1996, The Effect of Altitude Upon the Solar UV-B and UV-A Irradiance in The Tropical Chilean Andes, Solar energy, 57(2), 133-140.
[19] Uyan, M., 2013, GIS-Based Solar Farms Site Selection Using Analytic Hierarchy Process (AHP) in Karapinar Region, Konya/Turkey, Renewable and Sustainable Energy Reviews, 28, 11-17.
[20] Cavallaro, F., Zavadskas, E.K., Streimikiene, D., 2018, Concentrated SOLAR Power Hybridized Systems. Ranking Based on an Intuitionistic Fuzzy Multi-Criteria Algorithm, Journal of Cleaner Production, 179,407.
[21] Zoghi, M., Ehsani, A.H., Sadat, M., Javad Amiri, M., Karimi, S., 2017, Optimization Solar Site Selection by Fuzzy Logic Model and Weighted Linear Combination Method In Arid and Semi-Arid Region: A Case Study of Isfahan-IRAN, Renewable and Sustainable Energy Reviews, 68(P2), 986-996.
[22] Sánchez-Lozano, J.M., Teruel-Solano, J., Soto-Elvira, P.L., García-Cascales, M.S., 2013, Geographical Information Systems (GIS) and Multi-Criteria Decision Making (MCDM) Methods for The Evaluation of Solar Farms Locations: Case Study in South-Eastern Spain, Renewable and Sustainable Energy Reviews, 24, 544-556.
[23] Quaschning, V., 2004, Technical and Economical System Comparison of Photovoltaic and Concentrating Solar Thermal Power Systems Depending on Annual Global Irradiation, Solar Energy, 77(2), 171-178.
[24] Sabziparvar, A.A., Shetaee, H., 2007, Estimation of Global Solar Radiation in Arid and Semi-Arid Climates of East and West Iran, Energy, 32(5), 649-655.
[25] Goodbody, C., Walsh, E., McDonnell, K.P., Owende, P., 2013, Regional Integration of Renewable Energy Systems in Ireland–The Role of Hybrid Energy Systems for Small Communities, International Journal of Electrical Power & Energy Systems, 44(1), 713-720.