Cover
Vol. 12 No. 1 (2016)

Published: June 30, 2016

Pages: 12-22

Original Article

State Estimation via Phasor Measurement Units for Iraqi National Super Grid Power System Network

Abstract

In this paper describes the operation of power system networks to be nearest to stability rated values limits. State estimation for monitoring and protection power system is very important because it provides a real-time (RT) Phase angle of different nodes of accuracy and then analysis and decided to choose control way (methods). In order to detect the exact situation (instant state) for power system networks parameters. In this paper proposes a new monitoring and analysis system state estimation method integrating with MATLAB environment ability, by using phasor measurement units (PMU's) technology, by this system the estimation problem, iterations numbers, and processing time will reduce. The measurements of phasors value of voltage signal and current estimated and analyzed. Mat lab/PSAT package use as a tool to design and simulate four electrical power systems networks such as INSG 24 buses, IEEE14 bus, Diyala city 10buses (IRAQ), and IEEE6 bus and then installed and applied PMU’s devices to each system. Simulation results show that the PMU's performances effectiveness appear clearly. All results show the validation of PMU’s devices as an estimator to power system networks states and a significant improvement in the accuracy of the calculation of network status. All results achieved and discussed through this paper setting up mathematical models with Graph Theoretic Procedure algorithm.

References

  1. J. Zhao, et al. "Power System Real-Time Monitoring by Using PMU-Based Robust State Estimation Method," Transactions on Smart Grid, Vol.7, No.1, pp. 300-309, Jan. 2016.
  2. X. Bei, Y. Yoon, A. Abur.”Optimal Placement And Utilization Of Phasor Measurements For State Estimation”15th PSCC, Vol.26, 22-26 Aug.2005, pp:1- 6.
  3. A. G. Phadke, R. M. de Moraes. "The Wide World of Wide-area Measurement," in IEEE Power and Energy Magazine, vol. 6, no. 5, pp. 52-65, September-October 2008.
  4. Y. Guo, W. Wu , B. Zhang , H. Sun. “A fast solution for the lagrange multiplier-based electric power network parameter error model”. Energies, 2014, Vol. 7 , pp:1288–1299.
  5. M. Rihan, M. Ahmad, M. S. Beg, "Optimal Multistage Placement of PMUs with Limited Channel Capacity for a Smart Electrical and Electronic Engineering, 2013, Vol.3,NO.5,pp: 133-138.
  6. W. Rahman, M. Ali, A. Ullah, H. Rahman, M. Iqbal, H. Ahmad, A. Zeb, Z. Ali, M. Shahzad and B. Taj, "Advancement in Wide Area Monitoring Protection and Control Using PMU’s Model MATLAB/SIMULINK," Smart Grid and Renewable Energy, Vol. 3 No. 4, 2012, pp. 294-307.
  7. Standard for Synchrophasor Measurements for Power Systems," in IEEE Std C37.118.1-2011 (Revision of IEEE Std C37.118-2005), pp.1-61, Dec. 28 2011.
  8. estimation and bad data processing for systems including PMU and SCADA measurements”, Electric Power Systems Research, Vol. 81, No. 7, pp. 1514-1524, 2011.
  9. A. J. Roscoe, I. F. Abdulhadi, G. M. Burt, "P and M Class Phasor Measurement Unit Algorithms Using Adaptive Cascaded Filters," in IEEE Transactions on Power Delivery, Vol. 28, No. 3, pp. 1447-1459, 2013.
  10. T. Baldwin, L. Mili, M. Boisen, R. Adapa, “Power System Observability with Minimal Phasor Measurement Placement,” IEEE Transactions on Power Systems, Vol. 8, No. 2, pp. 707–715, May 1993.
  11. Federico Milano, PSAT: Power System Analysis Toolbox, Documentation for PSAT version 1.0.0, 2002, [online] Available: online. http://www.uclm.es/area/gsee/Web/Federico
  12. B. Singh, N.K. Sharma, A.N. Tiwari, K.S. Verma, S.N. Singh."Applications of phasor measurement units (PMUs) in electric power system networks incorporated with FACTS controllers". Journal of Engineering Science and Technology, Vol.3, No.3, 2011,pp:64-82.
  13. J. Luque and I. Gomez, "The role of medium access control protocols in SCADA systems," in IEEE Transactions on Power Delivery, vol. 11, No. 3, Jul 1996, pp. 11951200.
  14. M. Thomas, P. Kumar and V. Chandna, "Design, development and commissioning of a supervisory control and data acquisition (SCADA) laboratory for research & training," IEEE, Power Engineering Society