Skip to main content

Power Plant Dispatching

  • Chapter
  • First Online:
Book cover Power System Optimization Modeling in GAMS

Abstract

This chapter provides the instruction on how to model the economic dispatch problem of different power plants. Different power plant technologies will be discussed, such as thermal power, wind turbine, CHP, and hydro power plants in GAMS.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 139.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book
USD 179.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book
USD 199.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

References

  1. A. Rabiee, A. Soroudi, B. Mohammadi-Ivatloo, M. Parniani, Corrective voltage control scheme considering demand response and stochastic wind power. IEEE Trans. Power Syst. 29(6), 2965–2973 (2014)

    Article  Google Scholar 

  2. T. Guo, M.I. Henwood, M. van Ooijen, An algorithm for combined heat and power economic dispatch. IEEE Trans. Power Syst. 11(4), 1778–1784 (1996)

    Article  Google Scholar 

  3. A.J. Conejo, J.M. Arroyo, J. Contreras, F.A. Villamor, Self-scheduling of a hydro producer in a pool-based electricity market. IEEE Trans. Power Syst. 17(4), 1265–1272 (2002)

    Article  Google Scholar 

  4. J. Zhang, J. Wang, C. Yue, Small population-based particle swarm optimization for short-term hydrothermal scheduling. IEEE Trans. Power Syst. 27(1), 142–152 (2012)

    Article  Google Scholar 

  5. M.E. Khodayar, M. Shahidehpour, L. Wu, Enhancing the dispatchability of variable wind generation by coordination with pumped-storage hydro units in stochastic power systems. IEEE Trans. Power Syst. 28(3), 2808–2818 (2013)

    Article  Google Scholar 

  6. A.A. Snchez de la Nieta, J. Contreras, J.I. Muoz, Optimal coordinated wind-hydro bidding strategies in day-ahead markets. IEEE Trans. Power Syst. 28(2), 798–809 (2013)

    Article  Google Scholar 

  7. A. Soroudi, Robust optimization based self scheduling of hydro-thermal Genco in smart grids. Energy 61, 262–271 (2013)

    Article  Google Scholar 

  8. A. Soroudi, A. Rabiee, Optimal multi-area generation schedule considering renewable resources mix: a real-time approach. IET Gener. Transm. Distrib. 7(9), 1011–1026 (2013)

    Article  Google Scholar 

  9. D.C. Walters, G.B. Sheble, Genetic algorithm solution of economic dispatch with valve point loading. IEEE Trans. Power Syst. 8(3), 1325–1332 (1993)

    Article  Google Scholar 

  10. J.-B. Park, K.-S. Lee, J.-R. Shin, K.Y. Lee, A particle swarm optimization for economic dispatch with nonsmooth cost functions. IEEE Trans. Power Syst. 20(1), 34–42 (2005)

    Article  Google Scholar 

  11. C.-L. Chiang, Improved genetic algorithm for power economic dispatch of units with valve-point effects and multiple fuels. IEEE Trans. Power Syst. 20(4), 1690–1699 (2005)

    Article  MathSciNet  Google Scholar 

  12. Z.X. Liang, J.D. Glover, A zoom feature for a dynamic programming solution to economic dispatch including transmission losses. IEEE Trans. Power Syst. 7(2), 544–550 (1992)

    Article  Google Scholar 

  13. F.N. Lee, A.M. Breipohl, Reserve constrained economic dispatch with prohibited operating zones. IEEE Trans. Power Syst. 8(1), 246–254 (1993)

    Article  Google Scholar 

  14. K.P. Wang, J. Yuryevich, Evolutionary-programming-based algorithm for environmentally-constrained economic dispatch. IEEE Trans. Power Syst. 13(2), 301–306 (1998)

    Article  Google Scholar 

  15. R.A. Jabr, A.H. Coonick, B.J. Cory, A homogeneous linear programming algorithm for the security constrained economic dispatch problem. IEEE Trans. Power Syst. 15(3), 930–936 (2000)

    Article  Google Scholar 

  16. Y.Y. Lee, R. Baldick, A frequency-constrained stochastic economic dispatch model. IEEE Trans. Power Syst. 28(3), 2301–2312 (2013)

    Article  Google Scholar 

  17. W.T. Elsayed, E.F. El-Saadany, A fully decentralized approach for solving the economic dispatch problem. IEEE Trans. Power Syst. 30(4), 2179–2189 (2015)

    Article  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

Copyright information

© 2017 Springer International Publishing AG

About this chapter

Cite this chapter

Soroudi, A. (2017). Power Plant Dispatching. In: Power System Optimization Modeling in GAMS. Springer, Cham. https://doi.org/10.1007/978-3-319-62350-4_3

Download citation

  • DOI: https://doi.org/10.1007/978-3-319-62350-4_3

  • Published:

  • Publisher Name: Springer, Cham

  • Print ISBN: 978-3-319-62349-8

  • Online ISBN: 978-3-319-62350-4

  • eBook Packages: EnergyEnergy (R0)

Publish with us

Policies and ethics