4.4 Article

Robust N-k CCUC model considering the fault outage probability of units and transmission lines

期刊

IET GENERATION TRANSMISSION & DISTRIBUTION
卷 13, 期 17, 页码 3782-3791

出版社

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-gtd.2019.0780

关键词

probability; integer programming; stochastic processes; power generation scheduling; power generation dispatch; power system security; transmission lines; robust optimisation; traditional fault outage uncertainty set; robust contingency constrained unit commitment model; fault repair time; probability criterion; unit outage contingencies; stochastic fault outage scenarios; k CCUC model; fault outage probability; robust CCUC model; UC decision; normal operation time; load rate; Benders decomposition method; C& CG method; Benders-column and constraint generation method; modified IEEE-RTS-79 system; IEEE-RTS-96 system

资金

  1. National Natural Science Foundation of China [51777067]
  2. State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources [LAPS18003]
  3. project named Research on Green Dispatching Technology of Shanxi Power Grid [52053017000S]

向作者/读者索取更多资源

Robust optimisation has been applied to the dispatching problem considering fault outage of power systems. The traditional fault outage uncertainty set are too conservative. To solve this problem, a robust contingency constrained unit commitment (CCUC) model considering the outage probability of units and transmission lines is proposed. The proposed model has the following characteristics: (i) the outage probability of units is determined by normal operation time and fault repair time, whereas the outage probability of transmission lines is determined by length and load rate; (ii) based on the probability criterion of unit outage contingencies, the outage probabilities of units and transmission lines are both incorporated into the modelling of uncertainty sets; (iii) the robust CCUC model obtains UC decision of base case and the UC decision under uncertainty scenarios can adjust the output of units by spinning reserve capacity to cope with stochastic fault outage scenarios. The proposed robust CCUC model is solved with Benders-column and constraint generation (C&CG) method combined with Benders decomposition method and C&CG method. Simulations on the modified IEEE-RTS-79 system and IEEE-RTS-96 system demonstrate the effectiveness and reliability of the proposed robust CCUC model.

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