Economical-technical-environmental operation of power networks with wind-solar-hydropower generation using analytic hierarchy process and improved grey wolf algorithm
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Abdullah Abusorrah | Saad Mekhilef | Hany M. Hasanien | Ziad M. Ali | Hussain M. Bassi | Muhyaddin Rawa | Hussain Bassi | Ahmed I. Omar | Shady H.E. Abdel Aleem | S. Mekhilef | A. Abusorrah | H. Hasanien | M. Rawa | H. Bassi | Shady H. E. Abdel Aleem | A. Omar
[1] Hany M. Hasanien,et al. Single and Multi-objective Optimal Power Flow Using Grey Wolf Optimizer and Differential Evolution Algorithms , 2015 .
[2] Jim Duggan,et al. Multi-objective dynamic economic emission dispatch using particle swarm optimisation variants , 2017, Neurocomputing.
[3] P. N. Suganthan,et al. Multi-objective optimal power flow solutions using a constraint handling technique of evolutionary algorithms , 2019, Soft Computing.
[4] Vikram Kumar Kamboj,et al. Solution of non-convex economic load dispatch problem using Grey Wolf Optimizer , 2015, Neural Computing and Applications.
[5] Hamdi Abdi,et al. Solving the multi-objective economic emission dispatch problems using Fast Non-Dominated Sorting TVAC-PSO combined with EMA , 2019, Appl. Soft Comput..
[6] Almoataz Y. Abdelaziz,et al. Flower pollination algorithm to solve combined economic and emission dispatch problems , 2016 .
[7] M. Bohanec,et al. The Analytic Hierarchy Process , 2004 .
[8] Adel El Shahat,et al. A New Sine Cosine Optimization Algorithm for Solving Combined Non-Convex Economic and Emission Power Dispatch Problems , 2017 .
[9] Srikrishna Subramanian,et al. Grey wolf optimization for combined heat and power dispatch with cogeneration systems , 2016 .
[10] N. Harter. Cross , 2019, Encyclopedia of Food and Agricultural Ethics.
[11] A. Zobaa,et al. Assessment of mini and micro hydropower potential in Egypt: Multi-criteria analysis , 2020 .
[12] Ponnuthurai Nagaratnam Suganthan,et al. Optimal power flow solutions incorporating stochastic wind and solar power , 2017 .
[13] Jing Qiu,et al. Cross entropy optimization based on decomposition for multi-objective economic emission dispatch considering renewable energy generation uncertainties , 2020 .
[14] Ponnuthurai Nagaratnam Suganthan,et al. Multiobjective economic-environmental power dispatch with stochastic wind-solar-small hydro power , 2018 .
[15] Nagarajan Karthik,et al. Multi-objective economic emission dispatch using interior search algorithm , 2018, International Transactions on Electrical Energy Systems.
[16] Chia-Nan Wang,et al. Multi-Criteria Decision Making (MCDM) Approaches for Solar Power Plant Location Selection in Viet Nam , 2018, Energies.
[17] William Ho,et al. The state-of-the-art integrations and applications of the analytic hierarchy process , 2017, Eur. J. Oper. Res..
[18] Ehab E. Elattar,et al. Environmental economic dispatch with heat optimization in the presence of renewable energy based on modified shuffle frog leaping algorithm , 2019, Energy.
[19] Weiqing Wang,et al. Dynamic environmental economic dispatch of hybrid renewable energy systems based on tradable green certificates , 2020, Energy.
[20] J. Jian,et al. A hybrid MILP and IPM approach for dynamic economic dispatch with valve-point effects , 2017, 1703.03685.
[21] Salem Alkhalaf,et al. Optimum design of hybrid wind/PV energy system for remote area , 2020 .
[22] T. Saaty. Analytic Hierarchy Process , 2005 .
[23] Nadeem Javaid,et al. Multi-objective Optimal Power Flow Using Improved Multi-objective Multi-verse Algorithm , 2019, AINA Workshops.
[24] Hany M. Hasanien,et al. Augmented grey wolf optimizer for grid-connected PMSG-based wind energy conversion systems , 2018, Appl. Soft Comput..
[25] William T. Hamilton,et al. Dispatch optimization of concentrating solar power with utility-scale photovoltaics , 2020, Optimization and Engineering.
[26] Abdelghani Bekrar,et al. Whale optimization algorithm based optimal reactive power dispatch: A case study of the Algerian power system , 2017, Electric Power Systems Research.
[27] X. X. Zhou,et al. Fast $\lambda$ -Iteration Method for Economic Dispatch With Prohibited Operating Zones , 2014, IEEE Transactions on Power Systems.
[28] J. Pye,et al. Techno-economic assessment of a high-efficiency, low-cost solar-thermal power system with sodium receiver, phase-change material storage, and supercritical CO2 recompression Brayton cycle , 2020 .
[29] Andrew Lewis,et al. Grey Wolf Optimizer , 2014, Adv. Eng. Softw..
[30] Ragab A. El-Sehiemy,et al. An enhanced moth-flame optimizer for solving non-smooth economic dispatch problems with emissions , 2018, Energy.
[31] Mohamed Ebeed,et al. Overview of uncertainties in modern power systems: uncertainty models and methods , 2021 .
[32] Salem Alkhalaf,et al. Water Cycle Algorithm for Probabilistic Planning of Renewable Energy Resource, Considering Different Load Models , 2020, Energies.
[33] Dongyuan Shi,et al. Orthogonal learning competitive swarm optimizer for economic dispatch problems , 2018, Appl. Soft Comput..
[34] Almoataz Y. Abdelaziz,et al. Optimal Network Reconfiguration in Active Distribution Networks with Soft Open Points and Distributed Generation , 2019, Energies.
[35] Zahid Hussain Hulio,et al. Techno - Economic assessment of wind power potential of Hawke's Bay using Weibull parameter: A review , 2019, Energy Strategy Reviews.
[36] Almoataz Y. Abdelaziz,et al. Techno-economic assessment of energy storage systems using annualized life cycle cost of storage (LCCOS) and levelized cost of energy (LCOE) metrics , 2020, Journal of Energy Storage.
[37] Wei Liu,et al. Dynamic population artificial bee colony algorithm for multi-objective optimal power flow , 2017, Saudi journal of biological sciences.
[38] Zhizhong Zhang,et al. Solving the Multi-Objective Optimal Power Flow Problem Using the Multi-Objective Firefly Algorithm with a Constraints-Prior Pareto-Domination Approach , 2018, Energies.
[39] Baihai Zhang,et al. Decentralised gradient projection method for economic dispatch problem with valve point effect , 2018, IET Generation, Transmission & Distribution.
[40] Ruey-Hsun Liang,et al. Multi-objective dynamic optimal power flow using improved artificial bee colony algorithm based on Pareto optimization: Multi-objective Dynamic Optimal Power Flow , 2016 .
[41] R. W. Saaty,et al. The analytic hierarchy process—what it is and how it is used , 1987 .
[42] Arvind R. Singh,et al. A review of multi criteria decision making (MCDM) towards sustainable renewable energy development , 2017 .
[43] Pandian Vasant,et al. A holistic review on optimization strategies for combined economic emission dispatch problem , 2018 .
[44] Adel M. Sharaf,et al. A unified index for power quality evaluation in distributed generation systems , 2018 .
[45] Tomonobu Senjyu,et al. A Multi-Objective Optimization Approach towards a Proposed Smart Apartment with Demand-Response in Japan , 2019 .
[46] Linfeng Yang,et al. A full mixed-integer linear programming formulation for economic dispatch with valve-point effects, transmission loss and prohibited operating zones , 2020 .
[47] Tomonobu Senjyu,et al. Optimal Sizing of a Real Remote Japanese Microgrid with Sea Water Electrolysis Plant Under Time-Based Demand Response Programs , 2020 .
[48] John Wang,et al. The Analytic Hierarchy Process: Structuring, Measurement, and Synthesis , 2008 .
[49] AHMED I. OMAR,et al. A Robust D-FACTS Based Metaheuristic Control System for Battery Charging Scheme , 2019 .
[50] Mujahed Al-Dhaifallah,et al. Multi-Objective Environmental Economic Dispatch of an Electricity System Considering Integrated Natural Gas Units and Variable Renewable Energy Sources , 2020, Mathematics.
[51] Mostafa Modiri-Delshad,et al. Multi-objective backtracking search algorithm for economic emission dispatch problem , 2016, Appl. Soft Comput..
[52] Alberto Traverso,et al. Dynamic economic dispatch using complementary quadratic programming , 2019, Energy.
[53] Heleno Bolfarine,et al. Gumbel distribution with heavy tails and applications to environmental data , 2019, Math. Comput. Simul..
[54] Sidhartha Panda,et al. Improved grey wolf optimization technique for fuzzy aided PID controller design for power system frequency control , 2018, Sustainable Energy, Grids and Networks.
[55] Viviana Cocco Mariani,et al. Multi-objective optimization of the environmental-economic dispatch with reinforcement learning based on non-dominated sorting genetic algorithm , 2019, Applied Thermal Engineering.
[56] Tomonobu Senjyu,et al. Energy Storage System Analysis Review for Optimal Unit Commitment , 2019, Energies.
[57] Chuan He,et al. Day-ahead stochastic coordinated scheduling for thermal-hydro-wind-photovoltaic systems , 2019, Energy.
[58] M. A. Abido,et al. A novel multi-objective hybrid particle swarm and salp optimization algorithm for technical-economical-environmental operation in power systems , 2020 .
[59] Selcuk Cebi,et al. A state-of-the-art review on multi-attribute renewable energy decision making , 2019, Energy Strategy Reviews.
[60] Hany M. Hasanien,et al. A Grey Wolf Optimizer for Optimum Parameters of Multiple PI Controllers of a Grid-Connected PMSG Driven by Variable Speed Wind Turbine , 2018, IEEE Access.
[61] Thomas L. Saaty,et al. DECISION MAKING WITH THE ANALYTIC HIERARCHY PROCESS , 2008 .
[62] Hany M. Hasanien,et al. Low voltage ride-through capability enhancement of grid-connected permanent magnet synchronous generator driven directly by variable speed wind turbine: a review , 2009 .
[63] Min-Rong Chen,et al. Constrained multi-objective population extremal optimization based economic-emission dispatch incorporating renewable energy resources , 2019, Renewable Energy.
[64] Mahmud Fotuhi-Firuzabad,et al. Critical Component Identification in Reliability Centered Asset Management of Power Distribution Systems Via Fuzzy AHP , 2012, IEEE Systems Journal.
[65] Kwang Y. Lee,et al. An improved artificial bee colony optimization algorithm based on orthogonal learning for optimal power flow problem , 2017 .
[66] Dinu Calin Secui,et al. Large-scale multi-area economic/emission dispatch based on a new symbiotic organisms search algorithm , 2017 .
[67] E. Farjah,et al. A NEW HYBRID HBMO-SFLA ALGORITHM FOR MULTI-OBJECTIVE DISTRIBUTION FEEDER RECONFIGURATION PROBLEM CONSIDERING DISTRIBUTED GENERATOR UNITS , 2012 .
[68] Hala M. Abdel Mageed,et al. Assessment of energy credits for the enhancement of the Egyptian Green Pyramid Rating System , 2015 .
[69] Guohe Huang,et al. A nonlinear fractional programming approach for environmental–economic power dispatch , 2016 .