MILP Formulations for Generator Maintenance Scheduling in Hydropower Systems
Maintenance activities help prevent costly generator breakdowns but because generators under maintenance are typically unavailable, the impact of maintenance schedules is significant and their cost must be accounted for when planning maintenance. In this paper, we address the generator maintenance s...
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| Vydáno v: | IEEE transactions on power systems Ročník 33; číslo 6; s. 6171 - 6180 |
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| Médium: | Journal Article |
| Jazyk: | angličtina |
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New York
IEEE
01.11.2018
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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| ISSN: | 0885-8950, 1558-0679 |
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| Abstract | Maintenance activities help prevent costly generator breakdowns but because generators under maintenance are typically unavailable, the impact of maintenance schedules is significant and their cost must be accounted for when planning maintenance. In this paper, we address the generator maintenance scheduling problem in hydropower systems. We propose a mixed-integer programing model that considers the time windows of the maintenance activities, as well as the nonlinearities and disjunctions of the hydroelectric production functions. Because the resulting model is hard to solve, we also propose an extended formulation, a set reduction approach that uses logical conditions for excluding unnecessary set elements from the model, and valid inequalities. We performed computational experiments using a variety of instances adapted from a real hydropower system in Canada, and the extended formulation with set reduction achieved the best results in terms of computational time and optimality gap. |
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| AbstractList | Maintenance activities help prevent costly generator breakdowns but because generators under maintenance are typically unavailable, the impact of maintenance schedules is significant and their cost must be accounted for when planning maintenance. In this paper, we address the generator maintenance scheduling problem in hydropower systems. We propose a mixed-integer programing model that considers the time windows of the maintenance activities, as well as the nonlinearities and disjunctions of the hydroelectric production functions. Because the resulting model is hard to solve, we also propose an extended formulation, a set reduction approach that uses logical conditions for excluding unnecessary set elements from the model, and valid inequalities. We performed computational experiments using a variety of instances adapted from a real hydropower system in Canada, and the extended formulation with set reduction achieved the best results in terms of computational time and optimality gap. |
| Author | Anjos, Miguel F. Desaulniers, Guy Rodriguez, Jesus A. Cote, Pascal |
| Author_xml | – sequence: 1 givenname: Jesus A. orcidid: 0000-0003-2116-0882 surname: Rodriguez fullname: Rodriguez, Jesus A. email: rodriguez@ingenieros.com organization: École Polytechnique de Montréal, Mathematics and Industrial Engineering, Montreal, QC, Canada – sequence: 2 givenname: Miguel F. orcidid: 0000-0002-8258-9116 surname: Anjos fullname: Anjos, Miguel F. email: anjos@stanfordalumni.org organization: École Polytechnique de Montréal, Mathematics and Industrial Engineering, Montreal, QC, Canada – sequence: 3 givenname: Pascal orcidid: 0000-0002-9491-9389 surname: Cote fullname: Cote, Pascal email: pascal.cote@riotinto.com organization: Rio Tinto Alcan, Quebec Power Operation, Saguenay, QC, Canada – sequence: 4 givenname: Guy surname: Desaulniers fullname: Desaulniers, Guy email: guy.desaulniers@gerad.ca organization: École Polytechnique de Montréal, Mathematics and Industrial Engineering, Montreal, QC, Canada |
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| SubjectTerms | Computing time Formulations Hydroelectric power Hydroelectric power generation Integer linear programming Maintenance engineering Maintenance management Mathematical programming Mixed integer linear programming optimal maintenance scheduling Reduction Schedules Scheduling Windows (intervals) |
| Title | MILP Formulations for Generator Maintenance Scheduling in Hydropower Systems |
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