Optimal Restoration Sequence of Parallel Power System Using Genetic Algorithm †
Abstract
:1. Introduction
2. Post Fault Restoration
3. Problem Formulation and Mathematical Modelling
- Maximizing the overall generation capability in minimum restoration time;
- Optimal transmission path is selected to rejuvenate the NBSUs;
- Minimum number of transmission switching is performed to restore the system.
3.1. MWH Capability Enhancement
3.2. Constraint Power Requirement
3.3. Critical Time Interval Limits
3.4. Energization of the Connected Bus Will Energize the Line and Vice Versa
3.5. If Connected Buses/Line Is Rejuvenated, Then They Will Not Turn-Off Again
3.6. Initially, the Line and Bus of the Black Start Unit Are Just Connected
3.7. Non-Black Start Unit Is Energized after the Energization of Its Connected Bus
4. Case Study
5. Results and Discussion
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Zhu, Y.; Zhou, Y.; Wang, Z.; Zhou, C.; Gao, B. A terminal distribution network black-start optimization method based on pruning algorithm considering distributed generators. Energy Rep. 2021, 8, 237–244. [Google Scholar] [CrossRef]
- Busby, J.W.; Baker, K.; Bazilian, M.D.; Gilbert, A.Q.; Grubert, E.; Rai, V.; Rhodes, J.D.; Shidore, S.; Smith, C.A.; Webber, M.E. Cascading risks: Understanding the 2021 winter blackout in Texas. Energy Res. Soc. Sci. 2021, 77, 102106. [Google Scholar] [CrossRef]
- Lyster, R.; Verchick, R.R.J.F.i.C. Building a Climate-Resilient Power Grid: Lessons from Texas-Size Storms and the Queensland Floods. Front. Clim. 2021, 3, 734227. [Google Scholar] [CrossRef]
- Widiputra, V.; Jung, J. Development of restoration algorithm under cold load pickup condition using tabu search in distribution system. In Proceedings of the 2018 IEEE Power & Energy Society General Meeting (PESGM), Portland, OR, USA, 5–10 August 2018; pp. 1–5. [Google Scholar]
- Widiputra, V.; Jufri, F.H.; Jung, J. Development of service restoration algorithm under cold load pickup condition using conservation voltage reduction and particle swarm optimization. Int. Trans. Electr. Energy Syst. 2020, 30, e12544. [Google Scholar] [CrossRef]
- Wu, Y.; Tang, Y.; Han, B.; Ni, M.; Systems, E. A topology analysis and genetic algorithm combined approach for power network intentional islanding. Int. J. Electr. Power Energy Syst. 2015, 71, 174–183. [Google Scholar] [CrossRef]
- Patsakis, G.; Rajan, D.; Aravena, I.; Rios, J.; Oren, S. Optimal Black Start Allocation for Power System Restoration. IEEE Trans. Power Syst. 2018, 33, 6766–6776. [Google Scholar] [CrossRef]
- Qiu, F.; Wang, J.; Chen, C.; Tong, J. Optimal Black Start Resource Allocation. IEEE Trans. Power Syst. 2016, 31, 2493–2494. [Google Scholar] [CrossRef]
- Patsakis, G.; Rajan, D.; Aravena, I.; Oren, S. Strong mixed-integer formulations for power system islanding and restoration. IEEE Trans. Power Syst. 2019, 34, 4880–4888. [Google Scholar] [CrossRef]
- Zhao, J.; Zhang, Q.; Ziwen, L.; Xiaokang, W. A distributed black-start optimization method for global transmission and distribution network. IEEE Trans. Power Syst. 2021, 36, 4471–4481. [Google Scholar] [CrossRef]
- Sun, K.; Hou, Y.; Sun, W.; Qi, J. Power System Control under Cascading Failures: Understanding, Mitigation, and System Restoration; John Wiley & Sons: Hoboken, NJ, USA, 2019. [Google Scholar]
- El-Werfelli, M.; Dunn, R.; Iravani, P. Backbone-network reconfiguration for power system restoration using genetic algorithm and expert system. In Proceedings of the 2009 International Conference on Sustainable Power Generation and Supply, Nanjing, China, 6–7 April 2009; pp. 1–6. [Google Scholar]
- Pirzadi, M.; Ghadimi, A.A.; Daeichian, A.J.E.P.S.R. Distributed multi-agent transmission system restoration using dynamic programming in an uncertain environment. Electr. Power Syst. Res. 2021, 196, 107270. [Google Scholar] [CrossRef]
Sr No. | Title | Journal | Conclusion |
---|---|---|---|
1 | Optimal Black Start Resource Allocation [8] | IEEE Transactions on Power System | Procurement of the right amount of BS resources at the right locations to minimize the restore cost and time |
2 | Optimal Black Start Allocation for Power System Restoration [7] | IEEE Transactions on Power Systems | Optimally allocate BS units in the grid, simultaneously optimizing system parameters. |
3 | Strong Mixed-Integer Formulations for Power System Islanding and Restoration [9] | IEEE Transactions on Power Systems | Intentional controlled islanding (ICI) and black start allocation (BSA) have been formulated. |
4 | A Distributed Black-Start Optimization Method for Global Transmission and Distribution Network [10] | IEEE Transactions on Power Systems | Coordination of transmission and distribution network to minimize the outage cost. |
Generator Number | Generator Status | Bus Location |
---|---|---|
1 | Black-Start | 30 |
2 | Black-Start | 31 |
3 | Non-Black Start | 32 |
4 | Non-Black Start | 33 |
5 | Non-Black Start | 34 |
6 | Black-Start | 35 |
7 | Non-Black Start | 36 |
8 | Non-Black Start | 37 |
9 | Non-Black Start | 38 |
10 | Non-Black Start | 39 |
Island | BS Gen | NBS Gen | Cranking Path (Bus Number) |
---|---|---|---|
Island 1 | G8 | 30→2→25→37 | |
G1 | G9 | 30→2→25→26→29→38 | |
G10 | 30→2→1→39 | ||
Island 2 | G2 | G3 | 31→6→11→10→32 |
Island 3 | G6 | G5 (prioritized) G4 | 35→22→21→16→19→20→34 35→22→21→16→19→33 |
G7 | 35→22→23→36 |
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Aftab, S.U.; Numan, M.; Farooq, H.; Ahmed, N.; Hassan, Z.U. Optimal Restoration Sequence of Parallel Power System Using Genetic Algorithm. Eng. Proc. 2022, 20, 38. https://doi.org/10.3390/engproc2022020038
Aftab SU, Numan M, Farooq H, Ahmed N, Hassan ZU. Optimal Restoration Sequence of Parallel Power System Using Genetic Algorithm. Engineering Proceedings. 2022; 20(1):38. https://doi.org/10.3390/engproc2022020038
Chicago/Turabian StyleAftab, Saad Ullah, Muhammad Numan, Hasaan Farooq, Naseer Ahmed, and Zain Ul Hassan. 2022. "Optimal Restoration Sequence of Parallel Power System Using Genetic Algorithm" Engineering Proceedings 20, no. 1: 38. https://doi.org/10.3390/engproc2022020038
APA StyleAftab, S. U., Numan, M., Farooq, H., Ahmed, N., & Hassan, Z. U. (2022). Optimal Restoration Sequence of Parallel Power System Using Genetic Algorithm. Engineering Proceedings, 20(1), 38. https://doi.org/10.3390/engproc2022020038