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Sustainable Generation and Transmission Expansion Planning in Competitive Power Markets


Affiliations
1 Department of Electrical Engineering, Shahid Chamran University, Ahvaz, Iran, Islamic Republic of
 

This paper, presents on the coordination of power system expansion planning including sustainable generation expansion planning (GEP) and transmission network expansion planning (TEP). For this purpose, a game theory based model is proposed to determine the dominant strategy of each investor entities in the generation and transmission sectors. In this model, all power producers compete with each other at the same level for maintaining the energy and reserve services. At this stage, after determining the Cournot equilibrium, the suggestions accepted in previous stage are evaluated in the transmission planning stage. Here, according to the existing units and the units proposed in the previous stage, transmission network expansion planning takes place based on cost, social welfare and reliability indices by independent system operator. Thereafter transmission expansion planning results announced, the accepted unit and not accepted units can offer their new strategies to the market. This iterative process continues until the dominant strategy of each entity is satisfied and the final equilibrium is obtained. To solve this game and finding its Nash equilibrium, the mixed integer non-linear programming (MINLP) optimization is used by all decision makers for optimizing their desirable strategies to invest in the power market. A conceptual test system is proposed to show the ability of the model. Simulation results verify the feasibility and capability of the proposed modeling of the long-term expansion planning.

Keywords

Generation Expansion Planning, Transmission Expansion Planning, Game Theory
User

  • Chuang AS, Wu F and Varaiya P (2001) A gametheoretic model for generation expansion planning: problem formulation and numerical comparisons. IEEE Trans. Power Sys. 16 (4), 885-891.
  • Dehghan S, Kazemi, Ahad Jadid and Shahram (2009) A Composite generation and transmission expansion planning pinpointing the optimal location of candidate generating unit. 24th PSC Conf.(Iran).
  • Fischer, Robert, Joo and Sung-Kwan (2008) Economic evaluation of transmission expansion for investment Incentives in a competitive electricity market. Intl. J. Control, Automation & Sys. 6(5), 627-638.
  • Javadi and Mohammad Sadegh (2011) Incidence matrix-based LMP calculation: Algorithm and applications Intl. J. Multidisciplinary Sci. & Engg. (IJMSE) 2(5), 48-52.
  • Javadi, Mohammad Sadegh, Azami, Rahmat and Hassan Monsef (2009) Security constrained unit commitment of Interconnected poower systems. Intl. Rev. Elect. Engg. I.R.E.E. 4(2), 199-205.
  • Krause T (2005 [Online] Available: http://www.eeh.ee.ethz.ch) 'Congestion management in liberalized electricity markets – theoretical concepts and international application'.
  • Parsons S and Wooldridge M (2000) Game theory and decision theory in multi-agent systems (Printed in the Netherlands: Kluwer Acad. Publi.).
  • Simon KK, Ng, Lee CW and Zhong Jin (2006) A Game-theoretic approach to study strategic Interactionbetween transmission and generation expansion planning. Power Sym. NAPS 2006. 38th North American. 115, 20.
  • Simon KK, Ng Zhong, Jin and Lee CW (2009) A gametheoretic study of the strategic interaction between generation and transmission expansion planning. Power Sys. Conf. & Exposition. PSCE '09. IEEE/PES, 1, 10.

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  • Sustainable Generation and Transmission Expansion Planning in Competitive Power Markets

Abstract Views: 375  |  PDF Views: 108

Authors

Mohammad Sadegh Javadi
Department of Electrical Engineering, Shahid Chamran University, Ahvaz, Iran, Islamic Republic of
Mohsen Saniei
Department of Electrical Engineering, Shahid Chamran University, Ahvaz, Iran, Islamic Republic of

Abstract


This paper, presents on the coordination of power system expansion planning including sustainable generation expansion planning (GEP) and transmission network expansion planning (TEP). For this purpose, a game theory based model is proposed to determine the dominant strategy of each investor entities in the generation and transmission sectors. In this model, all power producers compete with each other at the same level for maintaining the energy and reserve services. At this stage, after determining the Cournot equilibrium, the suggestions accepted in previous stage are evaluated in the transmission planning stage. Here, according to the existing units and the units proposed in the previous stage, transmission network expansion planning takes place based on cost, social welfare and reliability indices by independent system operator. Thereafter transmission expansion planning results announced, the accepted unit and not accepted units can offer their new strategies to the market. This iterative process continues until the dominant strategy of each entity is satisfied and the final equilibrium is obtained. To solve this game and finding its Nash equilibrium, the mixed integer non-linear programming (MINLP) optimization is used by all decision makers for optimizing their desirable strategies to invest in the power market. A conceptual test system is proposed to show the ability of the model. Simulation results verify the feasibility and capability of the proposed modeling of the long-term expansion planning.

Keywords


Generation Expansion Planning, Transmission Expansion Planning, Game Theory

References





DOI: https://doi.org/10.17485/ijst%2F2012%2Fv5i2%2F30350