Risk-based profit allocation to DERs integrated with a virtual power plant using cooperative Game theory

[1]  Mehdi Ehsan,et al.  Distribution Loss Allocation for Radial Systems Including DGs , 2014, IEEE Transactions on Power Delivery.

[2]  Hossein Seifi,et al.  Two-stage approach for optimal dispatch of distributed energy resources in distribution networks considering virtual power plant concept , 2014 .

[3]  I. G. Moghaddam,et al.  Risk-averse profit-based optimal operation strategy of a combined wind farm–cascade hydro system in an electricity market , 2013 .

[4]  Antonio J. Conejo,et al.  Offering model for a virtual power plant based on stochastic programming , 2013 .

[5]  Chongqing Kang,et al.  Planning Pumped Storage Capacity for Wind Power Integration , 2013, IEEE Transactions on Sustainable Energy.

[6]  Hongming Yang,et al.  Distributed Optimal Dispatch of Virtual Power Plant via Limited Communication , 2013, IEEE Transactions on Power Systems.

[7]  Mohammad Kazem Sheikh-El-Eslami,et al.  Decision making of a virtual power plant under uncertainties for bidding in a day-ahead market using point estimate method , 2013 .

[8]  Igor Kuzle,et al.  Virtual power plant mid-term dispatch optimization , 2013 .

[9]  Zechun Hu,et al.  Stochastic optimization of the daily operation of wind farm and pumped-hydro-storage plant , 2012 .

[10]  C. Monteiro,et al.  Optimum residential load management strategy for real time pricing (RTP) demand response programs , 2012 .

[11]  Javier Contreras,et al.  Reactive Control for Transmission Overload Relief Based on Sensitivity Analysis and Cooperative Game Theory , 2012, IEEE Transactions on Power Systems.

[12]  A. Makui,et al.  Operational and non-operational performance evaluation of thermal power plants in Iran: A game theory approach , 2012 .

[13]  K. Shaloudegi,et al.  A Novel Policy for Locational Marginal Price Calculation in Distribution Systems Based on Loss Reduction Allocation Using Game Theory , 2012, IEEE Transactions on Power Systems.

[14]  Tomislav Dragičević,et al.  Economic dispatch of virtual power plants in an event-driven service-oriented framework using standa , 2011 .

[15]  A. Daraeepour,et al.  A new self-scheduling strategy for integrated operation of wind and pumped-storage power plants in power markets , 2011 .

[16]  M. P. Moghaddam,et al.  Flexible demand response programs modeling in competitive electricity markets , 2011 .

[17]  Payam Teimourzadeh Baboli,et al.  Present status and future trends in enabling demand response programs , 2011, 2011 IEEE Power and Energy Society General Meeting.

[18]  S. M. Moghaddas-Tafreshi,et al.  Bidding Strategy of Virtual Power Plant for Participating in Energy and Spinning Reserve Markets—Part I: Problem Formulation , 2011, IEEE Transactions on Power Systems.

[19]  J. I. Muñoz,et al.  Optimal Contract Pricing of Distributed Generation in Distribution Networks , 2011, IEEE Transactions on Power Systems.

[20]  P. Asmus Microgrids, Virtual Power Plants and Our Distributed Energy Future , 2010 .

[21]  M. Parsa Moghaddam,et al.  Modeling and prioritizing demand response programs in power markets , 2010 .

[22]  N. Hemachandra,et al.  Min-Max Fair Power Flow Tracing for Transmission System Usage Cost Allocation: A Large System Perspective , 2010, IEEE Transactions on Power Systems.

[23]  H. Gupta,et al.  Probabilistic game approaches for network cost allocation , 2010, IEEE PES General Meeting.

[24]  A. Conejo,et al.  Short-Term Trading for a Wind Power Producer , 2010, IEEE Transactions on Power Systems.

[25]  S. M. Moghaddas-Tafreshi,et al.  A review on operation of micro grids and Virtual Power Plants in the power markets , 2009, 2009 2nd International Conference on Adaptive Science & Technology (ICAST).

[26]  A. Conejo,et al.  Scenario Reduction for Futures Market Trading in Electricity Markets , 2009, IEEE Transactions on Power Systems.

[27]  Enrico Carpaneto,et al.  Characterization of the loss allocation techniques for radial systems with distributed generation , 2008 .

[28]  A.M. Gonzalez,et al.  Stochastic Joint Optimization of Wind Generation and Pumped-Storage Units in an Electricity Market , 2008, IEEE Transactions on Power Systems.

[29]  M. Pereira,et al.  An Aumann-Shapley Approach to Allocate Transmission Service Cost Among Network Users in Electricity Markets , 2007, IEEE Transactions on Power Systems.

[30]  P. Pinson,et al.  Trading Wind Generation From Short-Term Probabilistic Forecasts of Wind Power , 2007, IEEE Transactions on Power Systems.

[31]  A. Conejo,et al.  A Stochastic Programming Approach to Electric Energy Procurement for Large Consumers , 2007, IEEE Transactions on Power Systems.

[32]  Dong-Joo Kang,et al.  Supplier bidding strategy based on non-cooperative game theory concepts in single auction power pools , 2007 .

[33]  Zuyi Li,et al.  Risk-Constrained Bidding Strategy With Stochastic Unit Commitment , 2007, IEEE Transactions on Power Systems.

[34]  A. Conejo,et al.  Decision making under uncertainty in electricity markets , 2010, 2006 IEEE Power Engineering Society General Meeting.

[35]  A. Conejo,et al.  Risk-constrained electricity procurement for a large consumer , 2006 .

[36]  P. Sotkiewicz,et al.  Nodal pricing for distribution networks: efficient pricing for efficiency enhancing DG , 2006, IEEE Transactions on Power Systems.

[37]  D. Chattopadhyay,et al.  Allocation of unit start-up costs using Cooperative game theory , 2006, IEEE Transactions on Power Systems.

[38]  Mowen Lu,et al.  A novel nucleolus-based loss allocation method in bilateral electricity markets , 2006 .

[39]  B. Wollenberg,et al.  Risk assessment of generators bidding in day-ahead market , 2005, IEEE Transactions on Power Systems.

[40]  Luonan Chen,et al.  Transmission expansion cost allocation based on cooperative game theory for congestion relief , 2005 .

[41]  M. Matos,et al.  Loss allocation in distribution networks with embedded generation , 2004, IEEE Transactions on Power Systems.

[42]  N. Jia,et al.  Profit allocation of independent power producers based on cooperative Game theory , 2003 .

[43]  F. D. Galiana,et al.  Z-Bus Loss Allocation , 2001, IEEE Power Engineering Review.