Processing, Please wait...

  • Home
  • About Us
  • Search:
  • Advanced Search

Growing Science » Decision Science Letters » Integrating the sequence dependent setup time open shop problem and preventive maintenance policies

Journals

  • IJIEC (777)
  • MSL (2643)
  • DSL (690)
  • CCL (528)
  • USCM (1092)
  • ESM (421)
  • AC (562)
  • JPM (293)
  • IJDS (952)
  • JFS (101)
  • HE (32)
  • SCI (26)

DSL Volumes

    • Volume 1 (10)
      • Issue 1 (5)
      • Issue 2 (5)
    • Volume 2 (30)
      • Issue 1 (5)
      • Issue 2 (6)
      • Issue 3 (9)
      • Issue 4 (10)
    • Volume 3 (53)
      • Issue 1 (15)
      • Issue 2 (10)
      • Issue 3 (19)
      • Issue 4 (9)
    • Volume 4 (48)
      • Issue 1 (10)
      • Issue 2 (12)
      • Issue 3 (14)
      • Issue 4 (12)
    • Volume 5 (39)
      • Issue 1 (12)
      • Issue 2 (10)
      • Issue 3 (8)
      • Issue 4 (9)
    • Volume 6 (30)
      • Issue 1 (8)
      • Issue 2 (6)
      • Issue 3 (9)
      • Issue 4 (7)
    • Volume 7 (41)
      • Issue 1 (8)
      • Issue 2 (8)
      • Issue 3 (8)
      • Issue 4 (17)
    • Volume 8 (38)
      • Issue 1 (8)
      • Issue 2 (6)
      • Issue 3 (14)
      • Issue 4 (10)
    • Volume 9 (39)
      • Issue 1 (8)
      • Issue 2 (9)
      • Issue 3 (14)
      • Issue 4 (8)
    • Volume 10 (43)
      • Issue 1 (7)
      • Issue 2 (8)
      • Issue 3 (20)
      • Issue 4 (8)
    • Volume 11 (49)
      • Issue 1 (9)
      • Issue 2 (9)
      • Issue 3 (14)
      • Issue 4 (17)
    • Volume 12 (64)
      • Issue 1 (12)
      • Issue 2 (24)
      • Issue 3 (13)
      • Issue 4 (15)
    • Volume 13 (78)
      • Issue 1 (21)
      • Issue 2 (18)
      • Issue 3 (19)
      • Issue 4 (20)
    • Volume 14 (87)
      • Issue 1 (21)
      • Issue 2 (23)
      • Issue 3 (25)
      • Issue 4 (18)
    • Volume 15 (41)
      • Issue 1 (19)
      • Issue 2 (22)

Keywords

Supply chain management(168)
Jordan(165)
Vietnam(151)
Customer satisfaction(120)
Performance(115)
Supply chain(112)
Service quality(98)
Competitive advantage(97)
Tehran Stock Exchange(94)
SMEs(89)
optimization(87)
Sustainability(86)
Artificial intelligence(85)
Financial performance(84)
Trust(83)
TOPSIS(83)
Job satisfaction(81)
Genetic Algorithm(78)
Factor analysis(78)
Social media(78)


» Show all keywords

Authors

Naser Azad(82)
Zeplin Jiwa Husada Tarigan(66)
Mohammad Reza Iravani(64)
Endri Endri(45)
Muhammad Alshurideh(42)
Hotlan Siagian(40)
Dmaithan Almajali(37)
Jumadil Saputra(36)
Muhammad Turki Alshurideh(35)
Ahmad Makui(33)
Barween Al Kurdi(32)
Hassan Ghodrati(31)
Basrowi Basrowi(31)
Sautma Ronni Basana(31)
Mohammad Khodaei Valahzaghard(30)
Shankar Chakraborty(29)
Ni Nyoman Kerti Yasa(29)
Haitham M. Alzoubi(28)
Sulieman Ibraheem Shelash Al-Hawary(28)
Prasadja Ricardianto(28)


» Show all authors

Countries

Iran(2192)
Indonesia(1311)
Jordan(813)
India(793)
Vietnam(510)
Saudi Arabia(478)
Malaysia(444)
China(231)
United Arab Emirates(226)
Thailand(160)
United States(114)
Ukraine(110)
Turkey(110)
Egypt(106)
Peru(94)
Canada(93)
Morocco(86)
Pakistan(85)
United Kingdom(80)
Nigeria(78)


» Show all countries

Decision Science Letters

ISSN 1929-5812 (Online) - ISSN 1929-5804 (Print)
Quarterly Publication
Volume 5 Issue 4 pp. 535-550 , 2016

Integrating the sequence dependent setup time open shop problem and preventive maintenance policies Pages 535-550 Right click to download the paper Download PDF

Authors: K. Naboureh, E. Safari

DOI: 10.5267/j.dsl.2016.4.002

Keywords: Open shop, Meta heuristics, Preventive maintenance, SDST, Immune Algorithm

Abstract: In most industrial environments, it is usually considered that machines are accessible throughout the planning horizon, but in real situation, machines may be unavailable due to a scheduled preventive maintenance where the periods of unavailability are known in advance. The main idea of this paper is to consider different preventive maintenance policies on machines regarding open shop scheduling problem (OSSP) with sequence dependent setup times (SDST) using immune algorithm. The preventive maintenance (PM) policies are planned for maximizing availability of machines or keeping minimum level of reliability through the production horizon. The objective function of the paper is to minimize makespan. In total, the proposed algorithm extensively is compared with six adaptations of existing heuristic and meta-heuristic methods for the problem through data sets from benchmarks based on Taillard’s instances with some adjustments. The results show that the proposed algorithm outperforms other algorithms for this problem.

How to cite this paper
Naboureh, K & Safari, E. (2016). Integrating the sequence dependent setup time open shop problem and preventive maintenance policies.Decision Science Letters , 5(4), 535-550.

Refrences
Abdi, K., Fathian, M., & Safari, E. (2012). A novel algorithm based on hybridization of artificial immune system and simulated annealing for clustering problem. The International Journal of Advanced Manufacturing Technology,60(5-8), 723-732.
Aggoune, R. (2004). Minimizing the makespan for the flow shop scheduling problem with availability constraints. European Journal of Operational Research, 153(3), 534-543.
Allahverdi, A., Ng, C. T., Cheng, T. E., & Kovalyov, M. Y. (2008). A survey of scheduling problems with setup times or costs. European Journal of Operational Research, 187(3), 985-1032.
Allaoui, H., & Artiba, A. (2004). Integrating simulation and optimization to schedule a hybrid flow shop with maintenance constraints. Computers & Industrial Engineering, 47(4), 431-450.
Allaoui, H., & Artiba, A. (2006). Scheduling two-stage hybrid flow shop with availability constraints. Computers & Operations Research, 33(5), 1399-1419.
Allaoui, H., Lamouri, S., Artiba, A., & Aghezzaf, E. (2008). Simultaneously scheduling n jobs and the preventive maintenance on the two-machine flow shop to minimize the makespan. International Journal of Production Economics, 112(1), 161-167.
Anandaraman, C., Vikram, A., Sankar, M & Natarajan, R. (2012). Evolutionary approaches for scheduling a flexible manufacturing system with automated guided vehicles and robots.International Journal of Industrial Engineering Computations , 3(4), 627-648.
Andresen, M., BräSel, H., MöRig, M., Tusch, J., Werner, F., & Willenius, P. (2008). Simulated annealing and genetic algorithms for minimizing mean flow time in an open shop. Mathematical and Computer Modelling, 48(7), 1279-1293.
Baker, K. R. (1974). Introduction to sequence and scheduling. New York: John wiley& Sons.
Benbouzid-Sitayeb, F., Ammi, I., Varnier, C., & Zerhouni, N. (2008, April). Applying ant colony optimization for the joint production and preventive maintenance scheduling problem in the flowshop sequencing problem. In Information and Communication Technologies: From Theory to Applications, 2008. ICTTA 2008. 3rd International Conference on (pp. 1-6). IEEE.
Birolini, A. (2007). Reliability engineering (Vol. 5). Berlin: Springer.
Błażewicz, J., & Formanowicz, P. (2002). Scheduling jobs in open shops with limited machine availability. RAIRO-Operations Research, 36(02), 149-156.
Blum, C., & Sampels, M. (2004). An ant colony optimization algorithm for shop scheduling problems. Journal of Mathematical Modelling and Algorithms, 3(3), 285-308.
Brucker, P., Hurink, J., Jurisch, B., & Wöstmann, B. (1997). A branch & bound algorithm for the open-shop problem. Discrete Applied Mathematics, 76(1), 43-59.
Burton, J. S., Banerjee, A., & Sylla, C. (1989). A simulation study of sequencing and maintenance decisions in a dynamic job shop. Computers & industrial engineering, 17(1), 447-452.
Cassady, C. R., & Kutanoglu, E. (2003). Minimizing job tardiness using integrated preventive maintenance planning and production scheduling. IIE transactions, 35(6), 503-513.
Dorndorf, U., Pesch, E., & Phan‐Huy, T. (2001). Solving the open shop scheduling problem. Journal of Scheduling, 4(3), 157-174.
Duma, M., Marwala, T., Twala, B., & Nelwamondo, F. (2013). Partial imputation of unseen records to improve classification using a hybrid multi-layered artificial immune system and genetic algorithm. Applied Soft Computing, 13(12), 4461-4480.
Engin, O., & Döyen, A. (2004). A new approach to solve hybrid flow shop scheduling problems by artificial immune system. Future generation computer systems, 20(6), 1083-1095.
Espinouse, M. L., Formanowicz, P., & Penz, B. (2001). Complexity results and approximation algorithms for the two machine no-wait flow-shop with limited machine availability. Journal of the Operational Research Society, 52(1), 116-121.
Farmer, J. D., Packard, N. H., & Perelson, A. S. (1986). The immune system, adaptation, and machine learning. Physica D: Nonlinear Phenomena, 22(1), 187-204.
Forrest, S., Hoffmeyr, S.A. (2000). Engineering an immune system. Graft, 4(5), 5 –9.
Gao, J., & Fang, L. (2009). A novel artificial immune system for multiobjective optimization problems. In Advances in Neural Networks–ISNN 2009. Springer Berlin Heidelberg.
Garey, M. R., & Johnson, D. S. (1979). Computers and intractability: a guide to the theory of NP-completeness. 1979. San Francisco, LA: Freeman.
Ghodratnama, A., Rabbani, M., Tavakkoli-Moghaddam, R., & Baboli, A. (2010). Solving a single-machine scheduling problem with maintenance, job deterioration and learning effect by simulated annealing. Journal of Manufacturing Systems, 29(1), 1-9.
Gonzalez, F., & Dasgupta, D. (2003). A study of artificial immune systems applied to anomaly detection (Doctoral dissertation, University of Memphis).
Guo, Y., Lim, A., Rodrigues, B., & Yu, S. (2007). Machine scheduling performance with maintenance and failure. Mathematical and computer modelling, 45(9), 1067-1080.
Jabbarizadeh, F., Zandieh, M., & Talebi, D. (2009). Hybrid flexible flowshops with sequence-dependent setup times and machine availability constraints. Computers & Industrial Engineering, 57(3), 949-957.
Janeway, C. A., Travers, P., Walport, M., Capra, J. D., 2000. Immunobiology The Immune System in Health and Disease (4th ed.). Artes Médicas (in Portuguese).
Kaplanoğlu, V. (2014). Multi-agent based approach for single machine scheduling with sequence-dependent setup times and machine maintenance. Applied Soft Computing, 23, 165-179.
Karaboga, D., & Ozturk, C. (2011). A novel clustering approach: Artificial Bee Colony (ABC) algorithm. Applied soft computing, 11(1), 652-657.
Kubzin, M. A., Potts, C. N., & Strusevich, V. A. (2009). Approximation results for flow shop scheduling problems with machine availability constraints. Computers & Operations Research, 36(2), 379-390.
Li, Y. C. E., & Shaw, W. H. (1998). Simulation modeling of a dynamic job shop rescheduling with machine availability constraints. Computers & Industrial Engineering, 35(1), 117-120.
Liaw, C. F. (2000). A hybrid genetic algorithm for the open shop scheduling problem. European Journal of Operational Research, 124(1), 28-42.
Meeker, W. Q., & Escobar, L. A. (2014). Statistical methods for reliability data. John Wiley & Sons.
N. Abramson, 1963. Information Theory and Coding, McGrawHill, New York.
Naderi, B., Zandieh, M., & Ghomi, S. F. (2009). A study on integrating sequence dependent setup time flexible flow lines and preventive maintenance scheduling. Journal of intelligent manufacturing, 20(6), 683-694.
Nakagawa, T. (2006). Maintenance theory of reliability. Springer Science & Business Media.
Prins, C. (2000). Competitive genetic algorithms for the open-shop scheduling problem. Mathematical Methods of Operations Research, 52(3), 389-411.
Rausand, M., & Høyland, A. (2004). System reliability theory: models, statistical methods, and applications (Vol. 396). John Wiley & Sons.
Roshanaei, V., Esfehani, M. S., & Zandieh, M. (2010). Integrating non-preemptive open shops scheduling with sequence-dependent setup times using advanced metaheuristics. Expert Systems with Applications, 37(1), 259-266.
Ruiz, R., García-Díaz, J. C., & Maroto, C. (2007). Considering scheduling and preventive maintenance in the flowshop sequencing problem. Computers & Operations Research, 34(11), 3314-3330.
Safari, E., & Sadjadi, S. J. (2011). A hybrid method for flowshops scheduling with condition-based maintenance constraint and machines breakdown. Expert Systems with Applications, 38(3), 2020-2029.
Safari, E., Sadjadi, S. J., & Shahanaghi, K. (2010). Scheduling flowshops with condition-based maintenance constraint to minimize expected makespan. The International Journal of Advanced Manufacturing Technology, 46(5-8), 757-767.
Sarker, R., Omar, M., Hasan, S. K., & Essam, D. (2013). Hybrid Evolutionary Algorithm for job scheduling under machine maintenance. Applied Soft Computing, 13(3), 1440-1447.
Sha, D. Y., & Hsu, C. Y. (2008). A new particle swarm optimization for the open shop scheduling problem. Computers & Operations Research, 35(10), 3243-3261.
Sortrakul, N., Nachtmann, H. L., & Cassady, C. R. (2005). Genetic algorithms for integrated preventive maintenance planning and production scheduling for a single machine. Computers in Industry, 56(2), 161-168.
Taillard, E. (1993). Benchmarks for basic scheduling problems. European Journal of Operational Research, 64(2), 278-285.
Ushakov, I. A. (Ed.). (1994). Handbook of reliability engineering. John Wiley & Sons.
Vahedi Nouri, B., Fattahi, P., & Ramezanian, R. (2013). Hybrid firefly-simulated annealing algorithm for the flow shop problem with learning effects and flexible maintenance activities. International Journal of Production Research, 51(12), 3501-3515.
Yulan, J., Zuhua, J., & Wenrui, H. (2008). Multi-objective integrated optimization research on preventive maintenance planning and production scheduling for a single machine. The International Journal of Advanced Manufacturing Technology, 39(9-10), 954-964.
Zammori, F., Braglia, M., & Castellano, D. (2014). Harmony search algorithm for single-machine scheduling problem with planned maintenance. Computers & Industrial Engineering, 76, 333-346.
Zhou, B. H., Jiang, S. Y., Wang, S. J., Wu, B., & Xi, L. F. (2007). Integrated production and preventive maintenance scheduling algorithm for flow shops. Journal of Dalian Maritime University, 33(3), 32-35.
  • 17
  • 1
  • 2
  • 3
  • 4
  • 5

Journal: Decision Science Letters | Year: 2016 | Volume: 5 | Issue: 4 | Views: 2065 | Reviews: 0

Related Articles:
  • A non-permutation flowshop scheduling problem with lot streaming: A Mathema ...
  • M-machine, no-wait flowshop scheduling with sequence dependent setup times ...
  • Solving group scheduling problem in no-wait flexible flowshop with random m ...
  • A heuristic algorithm for scheduling in a flow shop environment to minimize ...
  • Optimization costs of the single-machine scheduling problem with maintenanc ...

Add Reviews

Name:*
E-Mail:
Review:
Bold Italic Underline Strike | Align left Center Align right | Insert smilies Insert link URLInsert protected URL Select color | Add Hidden Text Insert Quote Convert selected text from selection to Cyrillic (Russian) alphabet Insert spoiler
winkwinkedsmileam
belayfeelfellowlaughing
lollovenorecourse
requestsadtonguewassat
cryingwhatbullyangry
Security Code: *
Include security image CAPCHA.
Refresh Code

® 2010-2026 GrowingScience.Com