Parallel Power System Restoration

Published Online:https://doi.org/10.1287/ijoc.2022.1258

References

  • Adibi MM, Fink LH (1994) Overcoming restoration challenges associated with major power system disturbances—Restoration from cascading failures. IEEE Trans. Power Systems 9(1):22–28.CrossrefGoogle Scholar
  • Adibi MM, Fink LH (2006) Overcoming restoration challenges associated with major power system disturbances—Restoration from cascading failures. IEEE Power Energy Magazine 4(5):68–77.CrossrefGoogle Scholar
  • Adibi MM, Kafka RJ (1991) Power system restoration issues. IEEE Comput. Appl. Power 4(2):19–24.CrossrefGoogle Scholar
  • Apollonio N, Lari I, Ricca F, Simeone B (2008) Polynomial algorithms for partitioning a tree into single-center subtrees to minimize flat service costs. Networks 51(1):78–89.CrossrefGoogle Scholar
  • Chopra S, Qiu F, Shim S (2022) Parallel-power-system-restoration. https://github.com/s-shim/Parallel-Power-System-Restoration.Google Scholar
  • Coffrin C, Van Hentenryck P (2014) A linear-programming approximation of AC power flows. INFORMS J. Comput. 26:718–734.LinkGoogle Scholar
  • Coffrin C, Van Hentenryck P (2015) Transmission system restoration with co-optimization of repairs, load pickups, and generation dispatch. Electr. Power Energy Systems 72:144–154.CrossrefGoogle Scholar
  • Conrad SH, LeClaire RJ, O’Reilly GP, Uzunalioglu H (2006) Critical national infrastructure reliability modeling and analysis. Bell Labs Technical J. 11(3):57–71.CrossrefGoogle Scholar
  • Ferman M (2021) Winter storm could cost Texas more money than any disaster in state history. Texas Tribune (February 25), https://www.texastribune.org/2021/02/25/texas-winter-storm-cost-budget.Google Scholar
  • Gu X, Zhong H (2012) Optimisation of network reconfiguration based on a two-layer unit-restarting framework for power system restoration. IET Generation Transmission Distribution 6(7):693–700.CrossrefGoogle Scholar
  • Lin ZZ, Wen FS, Chung CY, Wong KP, Zhou H (2011) Division algorithm and interconnection strategy of restoration subsystems based on complex network theory. IET Generation Transmission Distribution 5(6):674–683.CrossrefGoogle Scholar
  • Lindenmeyer D, Dommel HW, Adibi MM (2001) Power system restoration: A bibliographical survey. Internat. J. Electr. Power Energy Systems 23(3):219–227.CrossrefGoogle Scholar
  • Liu Y, Fan R, Terzija V (2016) Power system restoration: A literature review from 2006 to 2016. J. Modern Power Systems Clean Energy 4(3):332–341.CrossrefGoogle Scholar
  • Liu WJ, Lin ZZ, Wen FS, Chung CY, Xue Y, Ledwich G (2015) Sectionalizing strategies for minimizing outage durations of critical loads in parallel power system restoration with bi-level programming. Internat. J. Electr. Power Energy Systems 71:327–334.CrossrefGoogle Scholar
  • Patsakis G, Rajan D, Aravena I, Rios J, Oren S (2018) Optimal black start allocation for power system restoration. IEEE Trans. Power Systems 33:6766–6776.CrossrefGoogle Scholar
  • Qiu F, Li P (2017) An integrated approach for power system restoration planning. Proc. IEEE 105(7):1234–1252.CrossrefGoogle Scholar
  • Sarmadi SAN, Dobakhshari AS, Azizi S, Ranjbar AM (2011) A sectionalizing method in power system restoration based on WAMS. IEEE Trans. Smart Grid 2(1):190–197.CrossrefGoogle Scholar
  • Sullivan BK, Malick NS (2021) 5 million Americans have lost power from Texas to North Dakota after devastating winter storm. Time (February 15), https://time.com/5939633/texas-power-outage-blackouts/.Google Scholar
  • Sun W, Liu C, Zhang L (2011) Optimal generator start-up strategy for bulk power system restoration. IEEE Trans. Power Systems 26(3):1357–1366.CrossrefGoogle Scholar
  • Towns J, Cockerill T, Dahan M, Foster I, Gaither K, Grimshaw A, Hazlewood V (2014) XSEDE: Accelerating scientific discovery. Comput. Sci. Engrg. 16:62–74.CrossrefGoogle Scholar
  • Van Hentenryck P, Coffrin C (2015) Transmission system repair and restoration. Math. Programming 151:347–373.CrossrefGoogle Scholar
  • Wang HT, Liu YT (2009) Multi-objective optimization of power system reconstruction based on NSGA-II. Dianli Xitong Zidonghua 33(23):14–18.Google Scholar
  • Wang C, Vittal V, Sun K (2011) OBDD-based sectionalization strategies for parallel power system restoration. IEEE Trans. Power Systems 26(3):1426–1433.CrossrefGoogle Scholar
  • Wang D, Gu X, Zhou G, Li S, Liang H (2017) Decision-making optimization of power system extended black-start coordinating unit restoration with load restoration. Internat. Trans. Electr. Energy Systems 27:1–18.Google Scholar
  • Weber PJ, Stengle J (2021) Texas death toll from February storm, outages surpasses 100. AP News (March 26), https://apnews.com/article/hypothermia-health-storms-power-outages-texas-ffeb5d49e1b43032ffdc93ea9d7cfa5f.Google Scholar
  • Xavier AS, Kazachkov AM, Qiu F (2021) ANL-CEEESA/UnitCommitment.jl: v0.2.2 (v0.2.2). Zenodo.org, https://doi.org/10.5281/zenodo.5120043.Google Scholar
  • Zhang C, Lin Z, Wen F, Ledwich G, Xue Y (2014) Two-stage power network reconfiguration strategy considering node importance and restored generation capacity. IET Generation Transmission Distribution 8(1):91–103.CrossrefGoogle Scholar
  • Zhu HN, Liu YT (2014) Multi-objective optimization of unit restoration during network reconstruction considering line restoration sequence. Dianli Xitong Zidonghua 38(16):53–59.Google Scholar
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