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Reseach Article

Modeling of Hydraulic Turbine and Governor for Dynamic Studies of HPP

Published on February 2013 by Nanaware R. A., Sawant S. R., Jadhav B. T.
International Conference on Recent Trends in Information Technology and Computer Science 2012
Foundation of Computer Science USA
ICRTITCS2012 - Number 10
February 2013
Authors: Nanaware R. A., Sawant S. R., Jadhav B. T.
14e8e2c1-9c71-4c7f-ba64-aa6f43e79695

Nanaware R. A., Sawant S. R., Jadhav B. T. . Modeling of Hydraulic Turbine and Governor for Dynamic Studies of HPP. International Conference on Recent Trends in Information Technology and Computer Science 2012. ICRTITCS2012, 10 (February 2013), 6-11.

@article{
author = { Nanaware R. A., Sawant S. R., Jadhav B. T. },
title = { Modeling of Hydraulic Turbine and Governor for Dynamic Studies of HPP },
journal = { International Conference on Recent Trends in Information Technology and Computer Science 2012 },
issue_date = { February 2013 },
volume = { ICRTITCS2012 },
number = { 10 },
month = { February },
year = { 2013 },
issn = 0975-8887,
pages = { 6-11 },
numpages = 6,
url = { /proceedings/icrtitcs2012/number10/10315-1456/ },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Proceeding Article
%1 International Conference on Recent Trends in Information Technology and Computer Science 2012
%A Nanaware R. A.
%A Sawant S. R.
%A Jadhav B. T.
%T Modeling of Hydraulic Turbine and Governor for Dynamic Studies of HPP
%J International Conference on Recent Trends in Information Technology and Computer Science 2012
%@ 0975-8887
%V ICRTITCS2012
%N 10
%P 6-11
%D 2013
%I International Journal of Computer Applications
Abstract

Accurate modeling of hydraulic turbine and its governor system is essential to depict and analyze the system response during an emergency. In this paper, both hydraulic turbine and turbine governor system are modeled. The hydro turbine model is designed using penstock and turbine characteristic equations and its governor system is modeled using PID controller. The simulation model is developed using MATLAB SIMULINK. The dynamic response of governing system to the disturbances such as load variation on the generator parameter is studied. The results graphically demonstrate the effect of load variation on generator parameters.

References
  1. Woodward J. L. , "Hydraulic-Turbine Transfer Function for use in Governing Studies", Proceedings of the IEE, Vol. 115, pp. 424-426, March 1968.
  2. R. Oldenburger and J. Donelson, "Dynamic Response of a Hydroelectric Plant", Transactions of AIEE, Vol. 81, pp. 403-418, October 1962.
  3. J. M. Undrill and J. L. Woodward, "Non-Linear Hydro Governing Model and Improved Calculation for Determining Temporary Droop", IEEE Transactions on Power Apparatus and Systems, Vol. PAS-86, PP. 443-453April 1967.
  4. IEEE Committee Report, "Hydraulic Turbine and Turbine Control Models For System Dynamic Studies", IEEE Transactions on Power Systems, Vol. 7, No. 1, pp. 167-179, February 1992.
  5. IEEE Committee Report, "Dynamic Models for Steam and Hydro Turbines in Power System Studies", IEEE, Transactions on Power Apparatus and Systems, Vol. PAS-92, No. 6, PP. 1904-1915, Nov. /Dec. 1973.
  6. C. C. Young, "Equipment and System Modeling for Large Scale Stability Studies", IEEE Transactions on Power Apparatus and Systems, Vol. 91, pp. 99-109, January 1972.
  7. D. G. Ramey and J. W. Skooglund, "Detailed Hydro governor Representation for System Stability Studies", IEEE Transactions on Power Apparatus and Systems, Vol PAS-89, No. 1, pp. 106-112, January 1970.
  8. Working Group on Prime Mover and Energy Supply, "Hydraulic Turbine and Turbine Control Models for System Dynamic Studies", Models for System, Dynamic Performance Studies. IEEE Transaction on Power System, Vol. 7. No. 1 pp. 167-179,February 1992.
  9. P. Kundur. "Power System Stability and Control", McGraw-Hill, 1994. C684, C687, C688, C689, C90.
  10. Louis N. Hannett, James W. Feltes, B. Fardanesh, "Field Test to Validate Hydro Turbine-Governor Model Structure and Parameters", IEEE Transaction on Power System. Vol. 9 . No. 4. , pp. 684-688 November 1994.
  11. E. De Jager, N. Janssens, B. Malfliet, F. Van De Meulebroeke, "Hydro Turbine Model For System Dynamic Studies", IEEE Transaction on Power System, Vol. 9. No. 4 February 1994
  12. Yin Chin Choo, Kashem M. Muttaqi, M. Negnevitsky, "Modelling of hydraulic governor-turbine for control stabilization", Australian and New Zealand Industrial and Applied Mathematics Journal. ISSN1446-8735, 13 Aug 2008, pp C681-C698
  13. Machowski J. , Bialek J. W. , Robak S. , Bumby J. R. , 1998 "Excitation Control system for use with synchronous generators" IEE Proc. -Gener. Transm. Distrib. , 145(5), pp. 537-546, September 1998.
  14. Goyal H. , Hanmandlu M. , and Kothari D. P. "An Artificial Intelligence based Approach for Control of Small HydroPower Plants" Centre for Energy Studies, Indian Institute of Technology,New Delhi-110016 (India)
  15. http://www. mathworks. com/ products/simpower/
Index Terms

Computer Science
Information Sciences

Keywords

Hydro Power Plant Turbine Model Penstock Pid Turbine Governor