Modeling and Real-Time simulation of large hydropower plant

Автор: Sonam Dorji

Журнал: International Journal of Engineering and Manufacturing @ijem

Статья в выпуске: 3 vol.9, 2019 года.

Бесплатный доступ

In this paper, modeling and simulation of large hydropower plant in real-time platform named Real-Time Laboratory (RT-LAB) is carried out. First, a hydropower plant model consisting of nonlinear hydro turbine with PID governor and synchronous generator (SG) with DC1A excitation system and connected to grid is developed in MATLAB/Simulink environment. This model is then simulated in RT-LAB after the modification of MATLAB/Simulink model required for suitable operation in RT-LAB environment. Finally, the real-time simulation of hydropower plant when subjected to disturbances of load addition, reduction of load and short circuit fault analysis is presented and discussed.

Еще

Real-time laboratory (RT-LAB), hydropower plant, synchronous generator, real-time simulation, nonlinear hydro turbine

Короткий адрес: https://sciup.org/15015884

IDR: 15015884   |   DOI: 10.5815/ijem.2019.03.03

Список литературы Modeling and Real-Time simulation of large hydropower plant

  • N. Kishor, R. P. Saini, and S. P. Singh. A review on hydropower plant models and control. Renew. Sustain. Energy Rev., vol. 11, no. 5, pp. 776–796, 2007.
  • IEEE Working Group Report. Hydraulic Turbine and Turbine Control Models for System Pynamic Studies. 1992.
  • Opal-RT Technolgies. RT-LAB User Guide (Version 10.4). Unpublished.
  • H. Gao and C. Wang, “Effect of detailed hydro turbine models on power system analysis,” 2006 IEEE PES Power Syst. Conf. Expo. PSCE 2006 - Proc., no. 50277034, pp. 1577–1581, 2006.
  • E. De Jaeger, N. Janssens, B. Malfliet, and F. Van De Meulebroeke, “Hydro turbine model for system dynamic studies,” IEEE Trans. Power Syst., vol. 9, no. 4, pp. 1709–1715, 1994.
  • M. Vinatoru and E. Iancu, “The design of control systems for hydraulic turbines. 2006 IEEE Int. Conf. Autom. Qual. Testing, Robot. AQTR, no. 13, pp. 32–36, 2006.
  • L. G. Scherer and R. F. de Camargo. Control of Micro Hydro Power Stations Using Nonlinear Model of Hydraulic Turbine Applied on Microgrid Systems. Power Electronics Conference (COBEP), pp. 812-818, September 2011.
  • G. Konar, A.K. Singh, and N. Chakraborty. Modeling and Simulation of Standalone Micro Hydro-Diesel Hybrid Power Plant for Indian hilly Region. Chennai Fourth International Conference on Sustainable Energy and Intelligent Systems, pp. 159-166, December 2013.
  • F. Hong-qing and S. Zu-yi. Modeling and Simulation of Hydraulic Transients for Hydro Power Plants. IEEE/PES Transmission and Distribution Conference and Exhibition: Asia and Pacific, pp. 1-4, 2005.
  • O.P. Rahi and G. Kumar. Simulation Studies for Refurbishment and Uprating of Hydropower plants. IEEE/PES General Meeting Conference & Exposition, pp. 1-5, July 2014.
  • D. G. Ramey and J. W. Skooglund. Detailed Hydrogovernor Representation for System Stability Studies. IEEE Trans., vol. PAS-89, no. 1, pp. 106-112, January 1970.
  • H. Zhang, D. Chen, B. Xu, and F. Wang, “Nonlinear modeling and dynamic analysis of hydro-turbine governing system in the process of load rejection transient,” Energy Convers. Manag., vol. 90, pp. 128–137, 2014.
  • W. Li, L. Vanfretti, and M. Farrokhabadi. Modeling of Custom Hydro Turbine and Governor Models for Real-Time Simulation. Complex. Eng., pp. 1–6, 2012.
  • Y. Zhao, L. Shi, Y. Ni, and L. Yao. Modeling and Real-time simulation of wind farm. 2012 Asia-Pacific Power Energy Eng. Conf., pp. 1–4, 2012.
  • S. Mikkili, A. K. Panda, and J. Prattipati. Review of Real-Time Simulator and the Steps Involved for Implementation of a Model from MATLAB / SIMULINK to Real-Time. J. Inst. Eng. India Ser.B "DOI: 10.1007/s40031-014-0128-6", 2014.
Еще
Статья научная