Modeling, Integration and Simulation of the Photovoltaic Power Plant Considering LVRT Capability and Transient Voltage Stability

Author:

Saidi Abdelaziz Salah1,Ali Zemi Osama2,Alhmoud Lina3,Malik Muhammad Umar4

Affiliation:

1. Electrical Engineering Department, King Khalid University, Abha 61421, KINGDOM OF SAUDI ARABIA

2. National Grid company, Project Management Office, Central Operation Area, KINGDOM OF SAUDI ARABIA

3. Electrical Power Engineering Department, Hijjawi Faculty for Engineering Technology, Yarmouk University, Irbid 21163, JORDAN

4. Grid Studies Department, National Grid Company, KINGDOM OF SAUDI ARABIA

Abstract

This paper investigates how high photovoltaic energy penetration impacts dynamic performance and voltage regulation of the modified IEEE-9 bus grid. The transmission power system was modeled and simulated using PSCAD-EMTDC software to conduct the study. Load flow analysis is implemented to explore the power system’s capability to incorporate the desired photovoltaic power. Moreover, the study is based on time response simulations to grid disturbances. The supply and control of reactive power from solar power generation plants are becoming critical issues to study because they can facilitate the integration of PV in power grids under different operating conditions. Network-related faults like a PV solar power plant event outage, a three-phase short-circuit at a conventional bus, and a voltage dip at the PV solar power plant have been considered. The results will help identify the protective devices and strategies needed to maintain the stability and reliability of the system operation and transient analysis of the network under external power network fault and recovery operation. Thus, it has practical significance for real utility studies. Moreover, this comprehensive study will be a valuable guide for assessing and improving the grid’s performance under the study of any other grids, which also gives the vast potential and need for solar energy penetration into the grid systems.

Publisher

World Scientific and Engineering Academy and Society (WSEAS)

Subject

Electrical and Electronic Engineering,Energy (miscellaneous)

Reference20 articles.

1. P. S. Kundur, Power System Stability And Control. McGraw-Hill, Inc, 2007.

2. A. S. Saidi and M. I. Al-Rayif, “Impact of static and dynamic load model on the low voltage ride-through of the doubly-fed induction generator wind farm,” WSEAS Transactions on Power Systems, vol. 12, pp. 1–10, 2017.

3. K. Gunalan and C. Sharmeela, “A new control strategy to enhance LVRT for doubly fed induction generator,” WSEAS Transactions on Power Systems, vol. 10, pp. 135–144, 2015.

4. S. A. Adegoke and Y. Sun, “Power system optimization approach to mitigate voltage instability issues: A review,” Cogent Engineering, vol. 10, 2023.

5. A. G. Expósito and E. R. Ramos, “Augmented rectangular load flow model,” IEEE Transactions on Power Systems, vol. 17, pp. 271–276, 2002.

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