The energy hub: An extensive survey on the state-of-the-art
暂无分享,去创建一个
Amir Abdollahi | Moein Moeini-Aghtaie | Masoud Rashidinejad | H Sadeghi | M. Moeini‐Aghtaie | A. Abdollahi | M. Rashidinejad | H. Sadeghi
[1] Abdullah Abusorrah,et al. Optimal Expansion Planning of Energy Hub With Multiple Energy Infrastructures , 2015, IEEE Transactions on Smart Grid.
[2] Pierluigi Mancarella,et al. Matrix modelling of small-scale trigeneration systems and application to operational optimization , 2009 .
[3] Nicholas Good,et al. Review and classification of barriers and enablers of demand response in the smart grid , 2017 .
[4] Rui Ma,et al. Multi-Objective Optimal Power Flow of Multiple-Energy System Considering Wind Power Penetration , 2017, 2017 IEEE International Conference on Energy Internet (ICEI).
[5] M. Shahidehpour,et al. Microgrid-Based Co-Optimization of Generation and Transmission Planning in Power Systems , 2013, IEEE Transactions on Power Systems.
[6] Mahmud Fotuhi-Firuzabad,et al. A Decomposed Solution to Multiple-Energy Carriers Optimal Power Flow , 2014, IEEE Transactions on Power Systems.
[7] Shahram Jadid,et al. Optimal electrical and thermal energy management of a residential energy hub, integrating demand response and energy storage system , 2015 .
[8] Pierluigi Mancarella,et al. Storing renewables in the gas network: modelling of power-to-gas seasonal storage flexibility in low-carbon power systems , 2016 .
[9] Farrokh Aminifar,et al. Generation expansion and retirement planning based on the stochastic programming , 2013 .
[10] M. Rahimpour,et al. Simulation and feasibility analysis of structured packing replacement in absorption column of natural gas dehydration process: A case study for Farashband gas processing plant, Iran , 2014 .
[11] Tao Feng,et al. A review of urban energy systems at building cluster level incorporating renewable-energy-source (RES) envelope solutions , 2018, Applied Energy.
[12] Javier Reneses,et al. Electricity and Natural Gas Interdependency: Comparison of Two Methodologies for Coupling Large Market Models Within the European Regulatory Framework , 2016, IEEE Transactions on Power Systems.
[13] Sadegh Vaez-Zadeh,et al. Optimal planning of energy hubs in interconnected energy systems: a case study for natural gas and electricity , 2015 .
[14] M. A. Uqaili,et al. A Review of Energy and Power Planning and Policies of Pakistan , 2017 .
[15] Mohammad Reza Mohammadi,et al. Optimal management of energy hubs and smart energy hubs – A review , 2018, Renewable and Sustainable Energy Reviews.
[16] Xi Fang,et al. Managing smart grid information in the cloud: opportunities, model, and applications , 2012, IEEE Network.
[17] M.-R. Haghifam,et al. Multiobjective electric distribution system expansion planning using hybrid energy hub concept , 2009 .
[18] Hamdi Abdi,et al. Optimal operation of multicarrier energy systems using Time Varying Acceleration Coefficient Gravitational Search Algorithm , 2016 .
[19] Mohd Wazir Mustafa,et al. Recent approaches of unit commitment in the presence of intermittent renewable energy resources: A review , 2017 .
[20] S. Kannan,et al. Application and comparison of metaheuristic techniques to generation expansion planning problem , 2005, IEEE Transactions on Power Systems.
[21] Jan Carmeliet,et al. Optimization framework for distributed energy systems with integrated electrical grid constraints , 2016 .
[22] Massimo Santarelli,et al. Design of a Compact Heat Exchanger in a Methanation Plant for Renewable Energy Storage , 2018 .
[23] Ali Mohammad Ranjbar,et al. An autonomous demand response program for electricity and natural gas networks in smart energy hubs , 2015 .
[24] Peter Lund,et al. Urban energy systems with smart multi-carrier energy networks and renewable energy generation , 2012 .
[25] Behnam Mohammadi-Ivatloo,et al. Stochastic risk-constrained scheduling of smart energy hub in the presence of wind power and demand response , 2017 .
[26] Liz Varga,et al. Refrigerated warehouses as intelligent hubs to integrate renewable energy in industrial food refrigeration and to enhance power grid sustainability , 2017 .
[27] Masoud Rashidinejad,et al. A comprehensive sequential review study through the generation expansion planning , 2017 .
[28] Kankar Bhattacharya,et al. Optimal Operation of Residential Energy Hubs in Smart Grids , 2012, IEEE Transactions on Smart Grid.
[29] Alfredo Vaccaro,et al. A goal programming methodology for multiobjective optimization of distributed energy hubs operation , 2014 .
[30] David J. Hill,et al. Low Carbon Oriented Expansion Planning of Integrated Gas and Power Systems , 2015, IEEE Transactions on Power Systems.
[31] Omid Nematollahi,et al. Energy demands and renewable energy resources in the Middle East , 2016 .
[32] Steven A. Gabriel,et al. A Complementarity Model for the European Natural Gas Market , 2007 .
[33] Hongbin Sun,et al. Interval optimization based operating strategy for gas-electricity integrated energy systems considering demand response and wind uncertainty , 2016 .
[34] Markus Lehner,et al. Power-to-Gas: Technology and Business Models , 2014 .
[35] Shahab Bahrami,et al. Efficient operation of energy hubs in time-of-use and dynamic pricing electricity markets , 2016 .
[36] Pierluigi Mancarella,et al. Modelling, assessment and Sankey diagrams of integrated electricity-heat-gas networks in multi-vector district energy systems , 2016 .
[37] A. Seeliger,et al. Prospects of gas supplies to the European market until 2030—results from the simulation model EUGAS , 2004 .
[38] F. Pearce. The Dammed: Rivers, Dams, and the Coming World Water Crisis , 1992 .
[39] Hongbin Sun,et al. Interactions of district electricity and heating systems considering time-scale characteristics based on quasi-steady multi-energy flow , 2016 .
[40] Zhao Yang Dong,et al. Optimal Scheduling for Prosumers in Coupled Transactive Power and Gas Systems , 2018, IEEE Transactions on Power Systems.
[41] Mark O'Malley,et al. Electricity, gas, heat integration via residential hybrid heating technologies – An investment model assessment , 2016 .
[42] Matthew E. Oliver. Economies of scale and scope in expansion of the U.S. natural gas pipeline network , 2015 .
[43] D. Lang,et al. Energy transitions and national development indicators: A global review of nuclear energy production , 2017 .
[44] Mahmud Fotuhi-Firuzabad,et al. Load management in a residential energy hub with renewable distributed energy resources , 2015 .
[45] T. Hillman,et al. Power grid planning and operation with higher penetration of intermittent , 2012, 2012 IEEE Power and Energy Society General Meeting.
[46] Kristina Orehounig,et al. Integration of decentralized energy systems in neighbourhoods using the energy hub approach , 2015 .
[47] Benjamin Marti. Integrated Analysis of Energy and Transportation Systems , 2006 .
[48] Amany El-Zonkoly. Optimal scheduling of observable controlled islands in presence of energy hubs , 2017 .
[49] Ning Zhang,et al. Automatic and linearized modeling of energy hub and its flexibility analysis , 2018 .
[50] A.C.Z. de Souza,et al. Integrated Power Generation and Natural Gas Expansion Planning , 2007, 2007 IEEE Lausanne Power Tech.
[51] Enrico Fabrizio,et al. A model to design and optimize multi-energy systems in buildings at the design concept stage , 2010 .
[52] Tao Ding,et al. Multi-Stage Stochastic Programming With Nonanticipativity Constraints for Expansion of Combined Power and Natural Gas Systems , 2018, IEEE Transactions on Power Systems.
[53] A. Zobaa,et al. Affine arithmetic-based methodology for energy hub operation-scheduling in the presence of data uncertainty , 2015 .
[54] Alireza Kabirian,et al. A strategic planning model for natural gas transmission networks , 2007 .
[55] Ali Mohammad Ranjbar,et al. A cloud computing framework on demand side management game in smart energy hubs , 2015 .
[56] D. McCollum,et al. Stranded on a low-carbon planet: Implications of climate policy for the phase-out of coal-based power plants , 2015 .
[57] P. Thijssen,et al. Public opinion change after the Fukushima nuclear accident : the role of national context revisited , 2017 .
[58] O. Edenhofer,et al. Renewable Energy Sources and Climate Change Mitigation , 2011 .
[59] Javier Contreras,et al. Medium-term energy hub management subject to electricity price and wind uncertainty , 2016 .
[60] Jianzhong Wu,et al. Combined gas and electricity network expansion planning , 2014 .
[61] Zhe Chen,et al. A bi-level programming for multistage co-expansion planning of the integrated gas and electricity system , 2017 .
[62] Spyros Skarvelis-Kazakos,et al. Multiple energy carrier optimisation with intelligent agents , 2016 .
[63] Kankar Bhattacharya,et al. Optimal Energy Management of Greenhouses in Smart Grids , 2015, IEEE Transactions on Smart Grid.
[64] Mahmud Fotuhi-Firuzabad,et al. Optimized Probabilistic PHEVs Demand Management in the Context of Energy Hubs , 2015, IEEE Transactions on Power Delivery.
[65] Sayyad Nojavan,et al. A cost-emission framework for hub energy system under demand response program , 2017 .
[66] Kit Po Wong,et al. A Linear Programming Approach to Expansion Co-Planning in Gas and Electricity Markets , 2016, IEEE Transactions on Power Systems.
[67] Kiseok Lee,et al. On the Dynamic Effects of Oil Price Shocks , 2002 .
[68] Jin-Ho Kim,et al. Generation expansion planning in a competitive environment using a genetic algorithm , 2002, IEEE Power Engineering Society Summer Meeting,.
[69] Nikola M. Tomasevic,et al. Combined energy hub optimisation and demand side management for buildings , 2016 .
[70] Mahdi Zarif,et al. Assessment of electricity price uncertainty impact on the operation of multi-carrier energy systems , 2015 .
[71] Kuan Chen,et al. New developments in illumination, heating and cooling technologies for energy-efficient buildings , 2010 .
[72] Sara Lumbreras,et al. The new challenges to transmission expansion planning. Survey of recent practice and literature review , 2016 .
[73] G. Andersson,et al. Energy hubs for the future , 2007, IEEE Power and Energy Magazine.
[74] Hamdi Abdi,et al. A novel priority-based stochastic unit commitment considering renewable energy sources and parking lot cooperation , 2018, Energy.
[75] Jan Carmeliet,et al. Multiobjective optimisation of energy systems and building envelope retrofit in a residential community , 2017 .
[76] Rahmat-Allah Hooshmand,et al. Comprehensive review of generation and transmission expansion planning , 2013 .
[77] R. Kannan,et al. Alternative low-carbon electricity pathways in Switzerland and it’s neighbouring countries under a nuclear phase-out scenario , 2016 .
[78] Alexandre C. Köberle,et al. The role of LNG and unconventional gas in the future natural gas markets of Argentina and Chile , 2017 .
[79] Chongqing Kang,et al. Corrective receding horizon scheduling of flexible distributed multi-energy microgrids , 2017 .
[80] P. Fleming,et al. Generation expansion planning optimisation with renewable energy integration: A review , 2017 .
[81] O. Edenhofer,et al. Climate change 2014 : mitigation of climate change , 2014 .
[82] Steve Thomas. What will the Fukushima disaster change , 2012 .
[83] Behnam Mohammadi-Ivatloo,et al. Stochastic optimization of energy hub operation with consideration of thermal energy market and demand response , 2017 .
[84] G. Andersson,et al. Towards multi-source multi-product energy systems , 2007 .
[85] P. Favre-Perrod,et al. A vision of future energy networks , 2005, 2005 IEEE Power Engineering Society Inaugural Conference and Exposition in Africa.
[86] Javier Reneses,et al. Gas–Electricity Coordination in Competitive Markets Under Renewable Energy Uncertainty , 2015 .
[87] G. C. Paap,et al. Scheduling and control framework for distribution-level systems containing multiple energy carrier systems: Theoretical approach and illustrative example , 2015 .
[88] André Bardow,et al. Automated superstructure-based synthesis and optimization of distributed energy supply systems , 2013 .
[89] Nikolaos E. Koltsaklis,et al. A multi-period, multi-regional generation expansion planning model incorporating unit commitment constraints , 2015 .
[90] João P. S. Catalão,et al. Modeling Operational Behavior of Plug-in Electric Vehicles’ Parking Lot in Multienergy Systems , 2016, IEEE Transactions on Smart Grid.
[91] Gabriele Comodi,et al. Energy versus economic effectiveness in CHP (combined heat and power) applications: Investigation on the critical role of commodities price, taxation and power grid mix efficiency , 2016 .
[92] Fredrik Hedenus,et al. How much can nuclear power reduce climate mitigation cost? – Critical parameters and sensitivity , 2015 .
[93] Xifan Wang,et al. An MILP-Based Optimal Power Flow in Multicarrier Energy Systems , 2017, IEEE Transactions on Sustainable Energy.
[94] Ali Mohammad Ranjbar,et al. Financial analysis and optimal size and operation for a multicarrier energy system , 2012 .
[95] Hani Mavalizadeh,et al. Hybrid expansion planning considering security and emission by augmented epsilon-constraint method , 2014 .
[96] Z. Chen,et al. A multistage coordinative optimization for sitting and sizing P2G plants in an integrated electricity and natural gas system , 2016, 2016 IEEE International Energy Conference (ENERGYCON).
[97] Hongjie Jia,et al. Hierarchical management for integrated community energy systems , 2015 .
[98] Martin Geidl,et al. Integrated Modeling and Optimization of Multi-Carrier Energy Systems , 2007 .
[99] Jeng Shiun Lim,et al. Review of distributed generation (DG) system planning and optimisation techniques: Comparison of numerical and mathematical modelling methods , 2017 .
[100] Ryohei Yokoyama,et al. A MILP decomposition approach to large scale optimization in structural design of energy supply systems , 2002 .
[101] Pravin Varaiya,et al. A Game-Theoretic Model for Generation Expansion Planning: Problem Formulation and Numerical Comparisons , 2001 .
[102] M. Moradi-Dalvand,et al. Optimal Design of Multicarrier Energy Systems Considering Reliability Constraints , 2015, IEEE Transactions on Power Delivery.
[103] Damian Giaouris,et al. A systems approach for management of microgrids considering multiple energy carriers, stochastic loads, forecasting and demand side response , 2018, Applied Energy.
[104] Kristine Rosfjord,et al. An agent-based model for the evidence-basec long term planning of power and water critical infrastructures , 2017, 2017 Annual IEEE International Systems Conference (SysCon).
[105] Edmund Widl,et al. Studying the potential of multi-carrier energy distribution grids: A holistic approach , 2018, Energy.
[106] Goran Krajačić,et al. Planning for a 100% independent energy system based on smart energy storage for integration of renewables and CO2 emissions reduction , 2011 .
[107] Stephan Koch,et al. Provision of Load Frequency Control by PHEVs, Controllable Loads, and a Cogeneration Unit , 2011, IEEE Transactions on Industrial Electronics.
[108] Shengwei Mei,et al. Capacity Planning of Energy Hub in Multi-carrier Energy Networks: A Data-driven Robust Stochastic Programming Approach , 2019, 2019 IEEE Power & Energy Society General Meeting (PESGM).
[109] Ali Ahmadian,et al. Assessment of optimization algorithms capability in distribution network planning: Review, comparison and modification techniques , 2016 .
[110] Rodrigo Palma-Behnke,et al. A column generation approach for solving generation expansion planning problems with high renewable energy penetration , 2016 .
[111] Fabrizio Noembrini,et al. Integrating Power Systems, Transport Systems and Vehicle Technology for Electric Mobility Impact Assessment and Efficient Control , 2012, IEEE Transactions on Smart Grid.
[112] Erik Delarue,et al. Integrating short term variations of the power system into integrated energy system models: A methodological review , 2017 .
[113] Elaheh Mashhour,et al. A comprehensive model for self-scheduling an energy hub to supply cooling, heating and electrical demands of a building , 2016 .
[114] Nanang Hariyanto,et al. Decentralized And Simultaneous Generation and Transmission Expansion Planning Through Cooperative Game Theory , 2009 .
[115] Reza Zanjirani Farahani,et al. Optimization in Natural Gas Network Planning , 2011 .
[116] William D'haeseleer,et al. Impact of The German Nuclear Phase-Out on Europe's Electricity Generation - a Comprehensive Study , 2013 .
[117] Hamidreza Zareipour,et al. A chance constrained programming approach to integrated planning of distributed power generation and natural gas network , 2017 .
[118] Cristian Dinca,et al. Multi-fuel multi-product operation of IGCC power plants with carbon capture and storage (CCS) , 2015 .
[119] Z. Dong,et al. Multi-Stage Flexible Expansion Co-Planning Under Uncertainties in a Combined Electricity and Gas Market , 2015, IEEE Transactions on Power Systems.
[120] Yacine Rezgui,et al. Towards the next generation of smart grids: Semantic and holonic multi-agent management of distributed energy resources , 2017 .
[121] Zhao Yang Dong,et al. Optimal operation of DES/CCHP based regional multi-energy prosumer with demand response , 2016 .
[122] C. Canizares,et al. Optimal Energy Flow of integrated energy systems with hydrogen economy considerations , 2007, 2007 iREP Symposium - Bulk Power System Dynamics and Control - VII. Revitalizing Operational Reliability.
[123] Hoay Beng Gooi,et al. Micro-generation dispatch in a smart residential multi-carrier energy system considering demand forecast error , 2016 .
[124] Mahmud Fotuhi-Firuzabad,et al. Energy storage in renewable-based residential energy hubs , 2016 .
[125] Ali Reza Seifi,et al. Probabilistic energy flow for multi-carrier energy systems , 2018, Renewable and Sustainable Energy Reviews.
[126] David Connolly,et al. Smart energy and smart energy systems , 2017 .
[127] Qi Zhang,et al. Economic and environmental analysis of power generation expansion in Japan considering Fukushima nuclear accident using a multi-objective optimization model , 2012 .
[128] Joao P. S. Catalao,et al. Multi-Period Integrated Framework of Generation, Transmission, and Natural Gas Grid Expansion Planning for Large-Scale Systems , 2015, IEEE Transactions on Power Systems.
[129] Shahab Bahrami,et al. From Demand Response in Smart Grid Toward Integrated Demand Response in Smart Energy Hub , 2016, IEEE Transactions on Smart Grid.
[130] Pierluigi Siano,et al. Evaluating the reliability of multi-energy source buildings: A new analytical method for considering the dynamic behavior of thermal loads , 2016 .
[131] Samaneh Pazouki,et al. Optimal planning and scheduling of energy hub in presence of wind, storage and demand response under uncertainty , 2016 .
[132] Pierluigi Mancarella,et al. Integrated electrical and gas network flexibility assessment in low-carbon multi-energy systems , 2016, 2016 IEEE Power and Energy Society General Meeting (PESGM).
[133] Mauro Venturini,et al. Development of a technology roadmap for bioenergy exploitation including biofuels, waste-to-energy and power generation & CHP , 2016 .
[134] Adelino J. C. Pereira,et al. A decision support system for generation expansion planning in competitive electricity markets , 2010 .
[135] Jamshid Aghaei,et al. Reliable generation expansion planning in pool market considering power system security , 2012 .
[136] M. Shahidehpour,et al. Coordination of Short-Term Operation Constraints in Multi-Area Expansion Planning , 2012, IEEE Transactions on Power Systems.
[137] Ali Reza Seifi,et al. Multi-objective operation management of a multi-carrier energy system , 2015 .
[138] Christian von Hirschhausen,et al. A strategic model of European gas supply (GASMOD) , 2008 .
[139] Mahmoud-Reza Haghifam,et al. Adequacy modeling and evaluation of multi-carrier energy systems to supply energy services from different infrastructures , 2016 .
[140] Michel Gendreau,et al. Maintenance scheduling in the electricity industry: A literature review , 2016, Eur. J. Oper. Res..
[141] Manuel Berenguel,et al. Heterogeneous resource management in energy hubs with self-consumption: Contributions and application example , 2018, Applied Energy.
[142] Hamdi Abdi,et al. A general model for energy hub economic dispatch , 2017 .
[143] Goran Andersson,et al. Reliability modeling of multi-carrier energy systems , 2009 .
[144] Alfredo Vaccaro,et al. Multiple-Energy Carriers: Modeling of Production, Delivery, and Consumption , 2011, Proceedings of the IEEE.
[145] Carlos Batlle,et al. An Enhanced Screening Curves Method for Considering Thermal Cycling Operation Costs in Generation Expansion Planning , 2013, IEEE Transactions on Power Systems.
[146] Mahmud Fotuhi-Firuzabad,et al. Multiagent Genetic Algorithm: An Online Probabilistic View on Economic Dispatch of Energy Hubs Constrained by Wind Availability , 2014, IEEE Transactions on Sustainable Energy.
[147] G. Gutierrez-Alcaraz,et al. Multi-objective expansion planning approach: distant wind farms and limited energy resources integration , 2013 .
[148] Ebrahim Farjah,et al. Probabilistic Analysis of Plug-In Electric Vehicles Impact on Electrical Grid Through Homes and Parking Lots , 2013, IEEE Transactions on Sustainable Energy.
[149] Yuan Hu,et al. An NSGA-II based multi-objective optimization for combined gas and electricity network expansion planning , 2016 .
[150] Jin-Li Hu,et al. Efficient energy-saving targets for APEC economies , 2007 .
[151] J. Wasilewski,et al. Integrated modeling of microgrid for steady-state analysis using modified concept of multi-carrier energy hub , 2015 .
[152] Ali Mohammad Ranjbar,et al. Demand side management for a residential customer in multi-energy systems , 2016 .
[153] Yves Smeers,et al. Gas models and three difficult objectives , 2008 .
[154] Shengwei Mei,et al. A multi-lateral trading model for coupled gas-heat-power energy networks , 2017 .
[155] Carlos Álvarez-Bel,et al. An optimisation algorithm for distributed energy resources management in micro-scale energy hubs , 2017 .
[156] Lei Nie,et al. Historical and future emission of hazardous air pollutants (HAPs) from gas-fired combustion in Beijing, China , 2017, Environmental Science and Pollution Research.
[157] Benjamin F. Hobbs,et al. Natural gas corridors between the EU and its main suppliers: Simulation results with the dynamic GASTALE model , 2008 .
[158] Hongjie Jia,et al. Optimal day-ahead scheduling of integrated urban energy systems , 2016 .
[159] Rahmat-Allah Hooshmand,et al. State-of-the-art of transmission expansion planning: Comprehensive review , 2013 .
[160] Clodomiro Unsihuay-Vila,et al. A Model to Long-Term, Multiarea, Multistage, and Integrated Expansion Planning of Electricity and Natural Gas Systems , 2010, IEEE Transactions on Power Systems.
[161] Junyong Wu,et al. Energy flow matrix modeling and optimal operation analysis of multi energy systems based on graph theory , 2019 .
[162] Pierluigi Mancarella,et al. Multi-energy systems : An overview of concepts and evaluation models , 2015 .
[163] Toshiyuki Sueyoshi,et al. Japanese fuel mix strategy after disaster of Fukushima Daiichi nuclear power plant: Lessons from international comparison among industrial nations measured by DEA environmental assessment in time horizon , 2015 .
[164] Mohammad Shahidehpour,et al. Privacy-Preserving Optimal Dispatch for an Integrated Power Distribution and Natural Gas System in Networked Energy Hubs , 2019, IEEE Transactions on Sustainable Energy.
[165] Tengfei Ma,et al. Energy flow modeling and optimal operation analysis of the micro energy grid based on energy hub , 2017 .
[166] Ehsan Akrami,et al. Comprehensive analysis of a multi-generation energy system by using an energy-exergy methodology for hot water, cooling, power and hydrogen production , 2018 .
[167] Ali Reza Seifi,et al. Simultaneous integrated optimal energy flow of electricity, gas, and heat , 2015 .
[168] Ali Reza Seifi,et al. Energy Flow Optimization in Multicarrier Systems , 2015, IEEE Transactions on Industrial Informatics.
[169] Abdullah Abusorrah,et al. Security-Constrained Co-Optimization Planning of Electricity and Natural Gas Transportation Infrastructures , 2015, IEEE Transactions on Power Systems.
[170] Jatin Nathwani,et al. A ‘Regional Energy Hub’ for achieving a low-carbon energy transition , 2018 .
[171] W. Adger,et al. CLIMATE CHANGE, HUMAN SECURITY AND VIOLENT CONFLICT , 2007 .
[172] Mahmud Fotuhi-Firuzabad,et al. Generalized Analytical Approach to Assess Reliability of Renewable-Based Energy Hubs , 2017, IEEE Transactions on Power Systems.
[173] Vladimir Danov,et al. Project-level multi-modal energy system design - Novel approach for considering detailed component models and example case study for airports , 2017 .
[174] Björn Laumert,et al. An extended energy hub approach for load flow analysis of highly coupled district energy networks: Illustration with electricity and heating , 2018 .
[175] Sean B. Walker,et al. Modeling and optimization of a network of energy hubs to improve economic and emission considerations , 2015 .
[176] Goran Strbac,et al. Value of gas network infrastructure flexibility in supporting cost effective operation of power systems , 2017 .
[177] Samaneh Pazouki,et al. Optimal place, size, and operation of combined heat and power in multi carrier energy networks considering network reliability, power loss, and voltage profile , 2016 .
[178] Goran Andersson,et al. On Decisive Storage Parameters for Minimizing Energy Supply Costs in Multicarrier Energy Systems , 2014, IEEE Transactions on Sustainable Energy.
[179] Ainuddin Wahid Abdul Wahab,et al. A multi-objective evolutionary algorithm for energy management of agricultural systems—A case study in Iran , 2015 .
[180] Florian Kienzle,et al. Valuing Investments in Multi-Energy Conversion, Storage, and Demand-Side Management Systems Under Uncertainty , 2011, IEEE Transactions on Sustainable Energy.
[181] Roy Billinton,et al. Power system reliability evaluation , 1970 .
[182] Mohammad Shahidehpour,et al. Security-constrained expansion planning of fast-response units for wind integration ☆ , 2011 .
[183] Benjamin F. Hobbs,et al. Optimization methods for electric utility resource planning , 1995 .
[184] C. A. Saldarriaga,et al. A Holistic Approach for Planning Natural Gas and Electricity Distribution Networks , 2013, IEEE Transactions on Power Systems.
[185] João P. S. Catalão,et al. Stochastic Modeling of Multienergy Carriers Dependencies in Smart Local Networks With Distributed Energy Resources , 2015, IEEE Transactions on Smart Grid.
[186] Yasser G. Hegazy,et al. A review on accuracy issues related to solving the non-convex economic dispatch problem , 2016 .
[187] Pierluigi Siano,et al. Flexibility in future power systems with high renewable penetration: A review , 2016 .
[188] Kit Po Wong,et al. Expansion co-planning with uncertainties in a coupled energy market , 2014, 2014 IEEE PES General Meeting | Conference & Exposition.
[189] Mohammad Reza Mohammadi,et al. Energy hub: From a model to a concept – A review , 2017 .
[190] Raimund Malischek,et al. The Future of Nuclear Power in France: An Analysis of the Costs of Phasing-out , 2016 .
[191] M. Stadler,et al. A mixed integer linear programming approach for optimal DER portfolio, sizing, and placement in multi-energy microgrids , 2017 .
[192] Pierluigi Siano,et al. Modeling the reliability of multi-carrier energy systems considering dynamic behavior of thermal loads , 2015 .
[193] Mahmud Fotuhi-Firuzabad,et al. Online Multicriteria Framework for Charging Management of PHEVs , 2014, IEEE Transactions on Vehicular Technology.
[194] Mohammad Kazem Sheikh-El-Eslami,et al. Investigation of Economic and Environmental-Driven Demand Response Measures Incorporating UC , 2012, IEEE Transactions on Smart Grid.
[195] Matti Lehtonen,et al. Home load management in a residential energy hub , 2015 .
[196] Martin Wietschel,et al. The Hydrogen Economy: Opportunities and Challenges , 2009 .
[197] A. G. Kagiannas,et al. Power generation planning: a survey from monopoly to competition , 2004 .
[198] Pierluigi Mancarella,et al. Integrated Modeling and Assessment of the Operational Impact of Power-to-Gas (P2G) on Electrical and Gas Transmission Networks , 2015, IEEE Transactions on Sustainable Energy.
[199] Kankar Bhattacharya,et al. Optimal Operation of Industrial Energy Hubs in Smart Grids , 2015, IEEE Transactions on Smart Grid.
[200] Jan Carmeliet,et al. New formulations of the ‘energy hub’ model to address operational constraints , 2014 .
[201] Chongqing Kang,et al. Review and prospect of integrated demand response in the multi-energy system , 2017 .
[202] Peng Zhou,et al. Reliability and economic evaluation of power system with renewables: A review , 2016 .
[203] Yan Yang,et al. Integrated value of shale gas development: A comparative analysis in the United States and China , 2017 .
[204] Pandelis N. Biskas,et al. Generation Expansion Planning by MILP considering mid-term scheduling decisions , 2012 .
[205] Yogesh L. Simmhan,et al. An Analysis of Security and Privacy Issues in Smart Grid Software Architectures on Clouds , 2011, 2011 IEEE 4th International Conference on Cloud Computing.
[206] Francesco Calise,et al. Optimal operating strategies of combined cooling, heating and power systems: A case study for an engine manufacturing facility , 2017 .
[207] Bindeshwar Singh,et al. Distributed generation planning from power system performances viewpoints: A taxonomical survey , 2017 .