Research Article

THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY

Volume: 10 Number: 1 June 30, 2024
EN TR

THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY

Abstract

Generators used in multi-machine power systems are very affected by transient situations such as malfunctions and line breaks. In transient situations, the system becomes unstable, and oscillations increase. In particular, order modeling of synchronous generators effectively eliminates transient stability situations. To analyze this in the best way, a small signal stability analysis is performed. This study was carried out in the MATLAB-based Power Systems Analysis Program (PSAT), using the 2nd-order and 5th-order models of the synchronous generator for small signal stability analysis in a 3-machine 9-bus power system. While the 2nd-order model is used as the traditional model in synchronous generators, the 5th-order model has been developed as a dynamic order model. Especially in the 5th-order model, it was developed based on a sub-temporal model for better damping of the system. In the comparisons made in both order models, the real and imaginary values and participation factors are shown in figures, while the eigenvalues, damping percentage, frequency, dominant values, and operating modes are presented in tables. By using both order models in the synchronous generator, the number of eigenvalues of the system was determined. The results obtained showed that the 5th-order model gave better results in small signal stability analysis.

Keywords

References

  1. Elliott, R. T., Arabshahi, P., and Kirschen, D. S. "A Generalized PSS Architecture for Balancing Transient and Small-Signal Response", IEEE Transactions on Power Systems, Vol. 35 No.2, 1446-1456, 2019.
  2. Dey, P., Bhattacharya, A., and Das, P., "Tuning of Power System Stabilizer for Small Signal Stability Improvement of Interconnected Power System", Applied Computing and Informatics, Vol.16 No.1/2, 3-28, 2017.
  3. He, P., Ma, T., Li, Z., Chen, J., and Fang, Q., "Small-Signal Stability Analysis of Wind Power Integrated System with Different PSS Models", 5th Asia Conference on Power and Electrical Engineering (ACPEE), 2020, 721-726.
  4. He, P., Zheng, M., Jin, H., Gong, Z., and Dong, J. "Introducing MRAC-PSS-VI to Increase Small-Signal Stability of the Power System After Wind Power Integration", International Transactions on Electrical Energy Systems, Vol.2022, 1-12, 2022.
  5. Talha, A. and Qureshi, I. S. "Small Signal Stability Analysis of Power System with Wind Generation Using Optimized Wind PSS", Saudi Arabia Smart Grid (SASG), IEEE, 2015, 1-5.
  6. Mehta, B., Bhatt, P., and Pandya, V., "Small Signal Stability Analysis of Power Systems with DFIG based Wind Power Penetration", International Journal of Electrical Power & Energy Systems, Vol. 58, 64-74, 2014.
  7. Essallah, S., Bouallegue, A., and Khedher, A. "Integration of Automatic Voltage Regulator and Power System Stabilizer: Small-Signal Stability in DFIG-Based Wind Farms", Journal of Modern Power Systems and Clean Energy, Vol. 7 No. 5, 1115-1128, 2019.
  8. Bhukya, J., and Mahajan, V."Integration Of DFIG Based Wind Turbine Generator On Small Signal Stability Of Power Systems", Innovations in Power and Advanced Computing Technologies, IEEE, 2017, 1-6.

Details

Primary Language

English

Subjects

Electrical Energy Transmission, Networks and Systems

Journal Section

Research Article

Publication Date

June 30, 2024

Submission Date

March 26, 2024

Acceptance Date

June 7, 2024

Published in Issue

Year 2024 Volume: 10 Number: 1

APA
Döşoğlu, M. K., & Kaymaz, E. (2024). THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY. Mugla Journal of Science and Technology, 10(1), 113-119. https://doi.org/10.22531/muglajsci.1458879
AMA
1.Döşoğlu MK, Kaymaz E. THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY. Mugla Journal of Science and Technology. 2024;10(1):113-119. doi:10.22531/muglajsci.1458879
Chicago
Döşoğlu, Mehmet Kenan, and Enes Kaymaz. 2024. “THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY”. Mugla Journal of Science and Technology 10 (1): 113-19. https://doi.org/10.22531/muglajsci.1458879.
EndNote
Döşoğlu MK, Kaymaz E (June 1, 2024) THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY. Mugla Journal of Science and Technology 10 1 113–119.
IEEE
[1]M. K. Döşoğlu and E. Kaymaz, “THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY”, Mugla Journal of Science and Technology, vol. 10, no. 1, pp. 113–119, June 2024, doi: 10.22531/muglajsci.1458879.
ISNAD
Döşoğlu, Mehmet Kenan - Kaymaz, Enes. “THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY”. Mugla Journal of Science and Technology 10/1 (June 1, 2024): 113-119. https://doi.org/10.22531/muglajsci.1458879.
JAMA
1.Döşoğlu MK, Kaymaz E. THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY. Mugla Journal of Science and Technology. 2024;10:113–119.
MLA
Döşoğlu, Mehmet Kenan, and Enes Kaymaz. “THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY”. Mugla Journal of Science and Technology, vol. 10, no. 1, June 2024, pp. 113-9, doi:10.22531/muglajsci.1458879.
Vancouver
1.Mehmet Kenan Döşoğlu, Enes Kaymaz. THE EFFECTS OF DYNAMIC MODELS USED IN SYNCHRONOUS GENERATOR ON SMALL SIGNAL STABILITY. Mugla Journal of Science and Technology. 2024 Jun. 1;10(1):113-9. doi:10.22531/muglajsci.1458879

8805

Mugla Journal of Science and Technology (MJST) is licensed under the Creative Commons Attribution-Noncommercial-Pseudonymity License 4.0 international license