Skip to main content
Erschienen in: Computing 6/2019

03.01.2019

A multi-objective invasive weed optimization algorithm for robust aggregate production planning under uncertain seasonal demand

verfasst von: Alireza Goli, Erfan Babaee Tirkolaee, Behnam Malmir, Gui-Bin Bian, Arun Kumar Sangaiah

Erschienen in: Computing | Ausgabe 6/2019

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

This paper addresses a robust multi-objective multi-period aggregate production planning (APP) problem based on different scenarios under uncertain seasonal demand. The main goals are to minimize the total cost including in-house production, outsourcing, workforce, holding, shortage and employment/unemployment costs, and maximize the customers’ satisfaction level. To deal with demand uncertainty, robust optimization approach is applied to the proposed mixed integer linear programming model. A goal programming method is then implemented to cope with the multi-objectiveness and validate the suggested robust model. Since APP problems are classified as NP-hard, two solution methods of non-dominated sorting genetic algorithm II (NSGA-II) and multi-objective invasive weed optimization algorithm (MOIWO) are designed to solve the problem. Moreover, Taguchi design method is implemented to increase the efficiency of the algorithms by adjusting the algorithms’ parameters optimally. Finally, several numerical test problems are generated in different sizes to evaluate the performance of the algorithms. The results obtained from different comparison criteria demonstrate the high quality of the proposed solution methods in terms of speed and accuracy in finding optimal solutions.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Literatur
1.
Zurück zum Zitat Ahmadi E, Zandieh M, Farrokh M, Emami SM (2016) A multi objective optimization approach for flexible job shop scheduling problem under random machine breakdown by evolutionary algorithms. Comput Oper Res 73:56–66MathSciNetMATHCrossRef Ahmadi E, Zandieh M, Farrokh M, Emami SM (2016) A multi objective optimization approach for flexible job shop scheduling problem under random machine breakdown by evolutionary algorithms. Comput Oper Res 73:56–66MathSciNetMATHCrossRef
2.
Zurück zum Zitat Babaee Tirkolaee E, Alinaghian M, Bakhshi Sasi M, Seyyed Esfahani MM (2016) Solving a robust capacitated arc routing problem using a hybrid simulated annealing algorithm: a waste collection application. J Ind Eng Manag Stud 3(1):61–76 Babaee Tirkolaee E, Alinaghian M, Bakhshi Sasi M, Seyyed Esfahani MM (2016) Solving a robust capacitated arc routing problem using a hybrid simulated annealing algorithm: a waste collection application. J Ind Eng Manag Stud 3(1):61–76
3.
Zurück zum Zitat Balasubbareddy M, Sivanagaraju S, Suresh CV (2015) Multi-objective optimization in the presence of practical constraints using non-dominated sorting hybrid cuckoo search algorithm. Eng Sci Technol Int J 18(4):603–615CrossRef Balasubbareddy M, Sivanagaraju S, Suresh CV (2015) Multi-objective optimization in the presence of practical constraints using non-dominated sorting hybrid cuckoo search algorithm. Eng Sci Technol Int J 18(4):603–615CrossRef
4.
Zurück zum Zitat Baykasoglu, A. (2001). MOAPPS 1.0: Aggregate production planning using the multiple-objective tabu search. International Journal of Production Research, 39(16):3685–3702 Baykasoglu, A. (2001). MOAPPS 1.0: Aggregate production planning using the multiple-objective tabu search. International Journal of Production Research, 39(16):3685–3702
5.
Zurück zum Zitat Behnamian J, Ghomi SF (2011) Hybrid flowshop scheduling with machine and resource-dependent processing times. Appl Math Model 35(3):1107–1123MathSciNetMATHCrossRef Behnamian J, Ghomi SF (2011) Hybrid flowshop scheduling with machine and resource-dependent processing times. Appl Math Model 35(3):1107–1123MathSciNetMATHCrossRef
9.
Zurück zum Zitat Charnes A, Cooper WW (1977) Goal programming and multiple objective optimizations: part 1. Eur J Oper Res 1(1):39–54MATHCrossRef Charnes A, Cooper WW (1977) Goal programming and multiple objective optimizations: part 1. Eur J Oper Res 1(1):39–54MATHCrossRef
10.
Zurück zum Zitat Chen YK, Liao HC (2003) An investigation on selection of simplified aggregate production planning strategies using MADM approaches. Int J Prod Res 41(14):3359–3374MATHCrossRef Chen YK, Liao HC (2003) An investigation on selection of simplified aggregate production planning strategies using MADM approaches. Int J Prod Res 41(14):3359–3374MATHCrossRef
11.
Zurück zum Zitat Cheraghalipour A, Paydar MM, Hajiaghaei-Keshteli M (2018) A bi-objective optimization for citrus closed-loop supply chain using Pareto-based algorithms. Appl Soft Comput 69:33–59CrossRef Cheraghalipour A, Paydar MM, Hajiaghaei-Keshteli M (2018) A bi-objective optimization for citrus closed-loop supply chain using Pareto-based algorithms. Appl Soft Comput 69:33–59CrossRef
12.
Zurück zum Zitat Deb K, Agrawal S, Pratap A, Meyarivan T (2002) A fast and elitist multi-objective genetic algorithms: NSGA-II. IEEE Trans Evol Comput 6:182–197CrossRef Deb K, Agrawal S, Pratap A, Meyarivan T (2002) A fast and elitist multi-objective genetic algorithms: NSGA-II. IEEE Trans Evol Comput 6:182–197CrossRef
13.
Zurück zum Zitat Denisov VI, Timofeeva AY, Khailenko EA, Buzmakova OI (2014) Robust estimation of nonlinear structural models. J Appl Ind Math 8(1):28–39MathSciNetMATHCrossRef Denisov VI, Timofeeva AY, Khailenko EA, Buzmakova OI (2014) Robust estimation of nonlinear structural models. J Appl Ind Math 8(1):28–39MathSciNetMATHCrossRef
14.
Zurück zum Zitat Entezaminia A, Heidari M, Rahmani D (2017) Robust aggregate production planning in a green supply chain under uncertainty considering reverse logistics: a case study. Int J Adv Manuf Technol 90:1507–1528CrossRef Entezaminia A, Heidari M, Rahmani D (2017) Robust aggregate production planning in a green supply chain under uncertainty considering reverse logistics: a case study. Int J Adv Manuf Technol 90:1507–1528CrossRef
15.
Zurück zum Zitat Filatovas E, Kurasova O, Sindhya K (2015) Synchronous R-NSGA-II: an extended preference-based evolutionary algorithm for multi-objective optimization. Informatica 26(1):33–50CrossRef Filatovas E, Kurasova O, Sindhya K (2015) Synchronous R-NSGA-II: an extended preference-based evolutionary algorithm for multi-objective optimization. Informatica 26(1):33–50CrossRef
16.
Zurück zum Zitat Giannoccaro, I., Pontrandolfo, P. (2001). Models for supply chain management: a taxonomy. Proceedings of the Production and Operations Management. Conference POMS mastery in the new millennium, Orlando, FL, USA Giannoccaro, I., Pontrandolfo, P. (2001). Models for supply chain management: a taxonomy. Proceedings of the Production and Operations Management. Conference POMS mastery in the new millennium, Orlando, FL, USA
17.
Zurück zum Zitat Goli, A., and Davoodi, S.M.R. (2018). Coordination policy for production and delivery scheduling in the closed loop supply chain. Production Engineering, 1-11 Goli, A., and Davoodi, S.M.R. (2018). Coordination policy for production and delivery scheduling in the closed loop supply chain. Production Engineering, 1-11
18.
Zurück zum Zitat Goodman DA (1974) A goal programming approach to aggregate planning of production and work force. Manag Sci 20(12):1569–1575MATHCrossRef Goodman DA (1974) A goal programming approach to aggregate planning of production and work force. Manag Sci 20(12):1569–1575MATHCrossRef
19.
Zurück zum Zitat Holt CC, Modigliani F, Simon HA (1955) A Linear decision rule for production and employment scheduling. Manag Sci 2(1):1–30CrossRef Holt CC, Modigliani F, Simon HA (1955) A Linear decision rule for production and employment scheduling. Manag Sci 2(1):1–30CrossRef
20.
Zurück zum Zitat Holt CC, Modigliani F, Muth JF, Simon HA (1961) Planning Production Inventories and Workforce. Am Econ Rev 51(4):697–699 Holt CC, Modigliani F, Muth JF, Simon HA (1961) Planning Production Inventories and Workforce. Am Econ Rev 51(4):697–699
21.
Zurück zum Zitat Ismail HA, Packianather MS, Grosvenor RI (2017) Multi-objective invasive weed optimization of the LQR controller. Int J Autom Comput 14(3):321–339CrossRef Ismail HA, Packianather MS, Grosvenor RI (2017) Multi-objective invasive weed optimization of the LQR controller. Int J Autom Comput 14(3):321–339CrossRef
22.
Zurück zum Zitat Jamalnia, A. (2017). Evaluating the performance of aggregate production planning strategies under uncertainty (Doctoral dissertation, Manchester Business School) Jamalnia, A. (2017). Evaluating the performance of aggregate production planning strategies under uncertainty (Doctoral dissertation, Manchester Business School)
23.
Zurück zum Zitat Kanyalkar AP, Adil GK (2010) A robust optimisation model for aggregate and detailed planning of a multi-site procurement-production-distribution system. Int J Prod Res 48(3):635–656MATHCrossRef Kanyalkar AP, Adil GK (2010) A robust optimisation model for aggregate and detailed planning of a multi-site procurement-production-distribution system. Int J Prod Res 48(3):635–656MATHCrossRef
24.
25.
Zurück zum Zitat Kogan K, Portougal V (2006) Multi-period aggregate production planning in a news-vendor framework. J Oper Res Soc 57:423–433MATHCrossRef Kogan K, Portougal V (2006) Multi-period aggregate production planning in a news-vendor framework. J Oper Res Soc 57:423–433MATHCrossRef
26.
Zurück zum Zitat Kundu D, Suresh K, Ghosh S, Das S, Panigrahi BK, Das S (2011) Multi-objective optimization with artificial weed colonies 18(12):2441–2454 Kundu D, Suresh K, Ghosh S, Das S, Panigrahi BK, Das S (2011) Multi-objective optimization with artificial weed colonies 18(12):2441–2454
27.
Zurück zum Zitat Leung SCH, Chan SSW (2009) A goal programming model for aggregate production planning with resource utilization constraint. Elsevier Comput Ind Eng 56:1053–1064CrossRef Leung SCH, Chan SSW (2009) A goal programming model for aggregate production planning with resource utilization constraint. Elsevier Comput Ind Eng 56:1053–1064CrossRef
28.
Zurück zum Zitat Leung SCH, Wu Y (2004) A robust optimization model for stochastic aggregate production planning. Prod Plan Control Manag Oper 15(5):502–514CrossRef Leung SCH, Wu Y (2004) A robust optimization model for stochastic aggregate production planning. Prod Plan Control Manag Oper 15(5):502–514CrossRef
29.
Zurück zum Zitat Leung SCH, Wu Y, Lai KK (2006) A stochastic programming approach for multi-site aggregate production planning. J Oper Res Soc 57(2):123–132MATHCrossRef Leung SCH, Wu Y, Lai KK (2006) A stochastic programming approach for multi-site aggregate production planning. J Oper Res Soc 57(2):123–132MATHCrossRef
30.
Zurück zum Zitat Leung SCH, Wu Y, Lai K (2003) Multi-site aggregate production planning with multiple objectives: a goal programming approach. Prod Plan Control Manag Oper 14(5):425–436CrossRef Leung SCH, Wu Y, Lai K (2003) Multi-site aggregate production planning with multiple objectives: a goal programming approach. Prod Plan Control Manag Oper 14(5):425–436CrossRef
31.
Zurück zum Zitat Liange W (2013) A simultaneous decision model for production marketing and finance. Manag Sci 19(2):161–172 Liange W (2013) A simultaneous decision model for production marketing and finance. Manag Sci 19(2):161–172
32.
Zurück zum Zitat Lieckens, K. and Vandaele, N. (2014). A decision support system for the stochastic aggregate planning problem: March 28 2014 Lieckens, K. and Vandaele, N. (2014). A decision support system for the stochastic aggregate planning problem: March 28 2014
33.
Zurück zum Zitat Lockett AG, Muhlemann AP (1978) A stochastic programming model for aggregate production planning. Eur J Oper Res 2(5):350–356MATHCrossRef Lockett AG, Muhlemann AP (1978) A stochastic programming model for aggregate production planning. Eur J Oper Res 2(5):350–356MATHCrossRef
34.
Zurück zum Zitat Makui A, Heydari M, Aazami A, Dehghani E (2016) Accelerating Benders decomposition approach for robust aggregate production planning of products with a very limited expiration date. Comput Ind Eng 100(2016):34–51CrossRef Makui A, Heydari M, Aazami A, Dehghani E (2016) Accelerating Benders decomposition approach for robust aggregate production planning of products with a very limited expiration date. Comput Ind Eng 100(2016):34–51CrossRef
35.
Zurück zum Zitat Masoud ASM, Hwang CL (1980) An aggregate production planning model and application of three multiple objective decision methods. Int J Prod Res 18:741–752CrossRef Masoud ASM, Hwang CL (1980) An aggregate production planning model and application of three multiple objective decision methods. Int J Prod Res 18:741–752CrossRef
36.
Zurück zum Zitat Mirzapour Al-e-hashem SMJ, Malekly H, Aryanezhad MB (2011) A multi-objective robust optimization model for multi-product multi-site aggregate production planning in a supply chain under uncertainty. Int J Prod Econ 134(1):28–42CrossRef Mirzapour Al-e-hashem SMJ, Malekly H, Aryanezhad MB (2011) A multi-objective robust optimization model for multi-product multi-site aggregate production planning in a supply chain under uncertainty. Int J Prod Econ 134(1):28–42CrossRef
37.
Zurück zum Zitat Mirzapour Al-e-hashem, S.M.J., Aryanezhad, M.B. and Sadjadi, S.J. (2012). An efficient algorithm to solve a multi-objective robust aggregate production planning in an uncertain environment.The International Journal of Advanced Manufacturing Technology, 58(5):765-782 Mirzapour Al-e-hashem, S.M.J., Aryanezhad, M.B. and Sadjadi, S.J. (2012). An efficient algorithm to solve a multi-objective robust aggregate production planning in an uncertain environment.The International Journal of Advanced Manufacturing Technology, 58(5):765-782
38.
Zurück zum Zitat Mirzapour Al-e-hashem SMJ, Baboli A, Sazvar Z (2013) A stochastic aggregate production planning model in a green supply chain: considering flexible lead times, nonlinear purchase and shortage cost functions. Eur J Oper Res 230(1):26–41MathSciNetMATHCrossRef Mirzapour Al-e-hashem SMJ, Baboli A, Sazvar Z (2013) A stochastic aggregate production planning model in a green supply chain: considering flexible lead times, nonlinear purchase and shortage cost functions. Eur J Oper Res 230(1):26–41MathSciNetMATHCrossRef
39.
Zurück zum Zitat Modarres M, Izadpanahi E (2016) Aggregate production planning by focusing on energy saving: a robust optimization approach. J Clean Prod 133(2016):1074–1085CrossRef Modarres M, Izadpanahi E (2016) Aggregate production planning by focusing on energy saving: a robust optimization approach. J Clean Prod 133(2016):1074–1085CrossRef
40.
Zurück zum Zitat Mula J, Poler R, García-Sabater JP, Lario FC (2006) Models for production planning under uncertainty: a review. Int J Prod Econ 103:271–285CrossRef Mula J, Poler R, García-Sabater JP, Lario FC (2006) Models for production planning under uncertainty: a review. Int J Prod Econ 103:271–285CrossRef
42.
Zurück zum Zitat Mazulla JM (1978) Production switching heuristics for the aggregate planning problem. Manag Sci 24(12):1242–1251CrossRef Mazulla JM (1978) Production switching heuristics for the aggregate planning problem. Manag Sci 24(12):1242–1251CrossRef
43.
Zurück zum Zitat Nam SJ, Logendran R (1992) Aggregate production planning: a survey of models and methodologies. Eur J Oper Res 61:255–272CrossRef Nam SJ, Logendran R (1992) Aggregate production planning: a survey of models and methodologies. Eur J Oper Res 61:255–272CrossRef
44.
Zurück zum Zitat Niknamfar AH, Akhavan Niaki ST, Pasandideh SHR (2015) Robust optimization approach for an aggregate production–distribution planning in a three-level supply chain. Int J Adv Manuf Technol 76(1):623–634CrossRef Niknamfar AH, Akhavan Niaki ST, Pasandideh SHR (2015) Robust optimization approach for an aggregate production–distribution planning in a three-level supply chain. Int J Adv Manuf Technol 76(1):623–634CrossRef
45.
Zurück zum Zitat Ning Y, Liu J, Yan L (2013) Uncertain aggregate production planning. Soft Comput 17(4):617–624CrossRef Ning Y, Liu J, Yan L (2013) Uncertain aggregate production planning. Soft Comput 17(4):617–624CrossRef
46.
Zurück zum Zitat Nowak M (2013) An interactive procedure for aggregate production planning. Croatian Oper Res Rev 4(1):247–257MathSciNetMATH Nowak M (2013) An interactive procedure for aggregate production planning. Croatian Oper Res Rev 4(1):247–257MathSciNetMATH
47.
Zurück zum Zitat Pradenas L, Penailillo F, Ferland J (2004) Aggregate production planning problem. A new algorithm. Elsevier Electron Notes Discrete Math 18:193–199MathSciNetMATHCrossRef Pradenas L, Penailillo F, Ferland J (2004) Aggregate production planning problem. A new algorithm. Elsevier Electron Notes Discrete Math 18:193–199MathSciNetMATHCrossRef
48.
Zurück zum Zitat Rahmati SHA, Hajipour V, Niaki STA (2013) A soft-computing Pareto-based meta-heuristic algorithm for a multi-objective multi-server facility location problem. Appl Soft Comput 13(4):1728–1740CrossRef Rahmati SHA, Hajipour V, Niaki STA (2013) A soft-computing Pareto-based meta-heuristic algorithm for a multi-objective multi-server facility location problem. Appl Soft Comput 13(4):1728–1740CrossRef
49.
Zurück zum Zitat Rakes TR, Franz LS, Wynne AJ (1984) Aggregate production planning using chance-constrained goal programming. Int J Prod Res 22(4):673–684CrossRef Rakes TR, Franz LS, Wynne AJ (1984) Aggregate production planning using chance-constrained goal programming. Int J Prod Res 22(4):673–684CrossRef
50.
Zurück zum Zitat Ramezanian R, Rahmani D, Barzinpour F (2012) An aggregate production planning model for two phase production systems: solving with genetic algorithm and tabu search. Expert Syst Appl 39:1256–1263CrossRef Ramezanian R, Rahmani D, Barzinpour F (2012) An aggregate production planning model for two phase production systems: solving with genetic algorithm and tabu search. Expert Syst Appl 39:1256–1263CrossRef
51.
Zurück zum Zitat Sangaiah AK, Thangavelu AK, Gao XZ, Anbazhagan N, Durai MS (2015) An ANFIS approach for evaluation of team-level service climate in GSD projects using Taguchi-genetic learning algorithm. Appl Soft Comput 30:628–635CrossRef Sangaiah AK, Thangavelu AK, Gao XZ, Anbazhagan N, Durai MS (2015) An ANFIS approach for evaluation of team-level service climate in GSD projects using Taguchi-genetic learning algorithm. Appl Soft Comput 30:628–635CrossRef
52.
Zurück zum Zitat Singh N, Singh SB (2017) A novel hybrid GWO-SCA approach for optimization problems. Eng Sci Technol Int J 20(6):1586–1601CrossRef Singh N, Singh SB (2017) A novel hybrid GWO-SCA approach for optimization problems. Eng Sci Technol Int J 20(6):1586–1601CrossRef
53.
Zurück zum Zitat Soyster AL (1973) Convex programming with set-inclusive constraints and applications to inexact linear programming. Oper Res 21(5):1154–1157MathSciNetMATHCrossRef Soyster AL (1973) Convex programming with set-inclusive constraints and applications to inexact linear programming. Oper Res 21(5):1154–1157MathSciNetMATHCrossRef
54.
Zurück zum Zitat Srinivasan S, Ramakrishnan S (2013) A social intelligent system for multi-objective optimization of classification rules using cultural algorithms. Computing 95(4):327–350MathSciNetMATHCrossRef Srinivasan S, Ramakrishnan S (2013) A social intelligent system for multi-objective optimization of classification rules using cultural algorithms. Computing 95(4):327–350MathSciNetMATHCrossRef
55.
Zurück zum Zitat Srinivass N, Deb K (1994) Multi-objective optimization using non-dominated sorting in genetic algorithm. Evol Comput 2:221–248CrossRef Srinivass N, Deb K (1994) Multi-objective optimization using non-dominated sorting in genetic algorithm. Evol Comput 2:221–248CrossRef
56.
Zurück zum Zitat Taguchi, G. (1986). Introduction to quality engineering: designing quality into products and processes (No. 658.562 T3) Taguchi, G. (1986). Introduction to quality engineering: designing quality into products and processes (No. 658.562 T3)
57.
Zurück zum Zitat Taguchi G, Chowdhury S, Wu Y (2005) Taguchi’s quality engineering handbook, vol 1736. Wiley, HobokenMATH Taguchi G, Chowdhury S, Wu Y (2005) Taguchi’s quality engineering handbook, vol 1736. Wiley, HobokenMATH
58.
Zurück zum Zitat Tirkolaee EB, Goli A, Bakhsi M, Mahdavi I (2017) A robust multi-trip vehicle routing problem of perishable products with intermediate depots and time windows. Numer Algebra Control Optim 7(4):417–433MathSciNetMATHCrossRef Tirkolaee EB, Goli A, Bakhsi M, Mahdavi I (2017) A robust multi-trip vehicle routing problem of perishable products with intermediate depots and time windows. Numer Algebra Control Optim 7(4):417–433MathSciNetMATHCrossRef
59.
Zurück zum Zitat Tirkolaee EB, Mahdavi I, Esfahani MMS (2018) A robust periodic capacitated arc routing problem for urban waste collection considering drivers and crew’s working time. Waste Manag 76:138–146CrossRef Tirkolaee EB, Mahdavi I, Esfahani MMS (2018) A robust periodic capacitated arc routing problem for urban waste collection considering drivers and crew’s working time. Waste Manag 76:138–146CrossRef
60.
Zurück zum Zitat Techawiboonwong A, Yenradee P (2010) Aggregate production planning with workforce transferring plan for multiple product types. Prod Plan Control Manag Oper 14(5):447–458CrossRef Techawiboonwong A, Yenradee P (2010) Aggregate production planning with workforce transferring plan for multiple product types. Prod Plan Control Manag Oper 14(5):447–458CrossRef
61.
Zurück zum Zitat Thompson SD, Wantanabe DT, Davis WJ (1993) A comparative study of aggregate production planning strategies under conditions of uncertainty and cyclic product demands. Int J Prod Res 31(8):1957–1979CrossRef Thompson SD, Wantanabe DT, Davis WJ (1993) A comparative study of aggregate production planning strategies under conditions of uncertainty and cyclic product demands. Int J Prod Res 31(8):1957–1979CrossRef
62.
Zurück zum Zitat Vörös J (1999) On the risk-based aggregate planning for seasonal products. Int J Prod Econ 59(1–3):195–201CrossRef Vörös J (1999) On the risk-based aggregate planning for seasonal products. Int J Prod Econ 59(1–3):195–201CrossRef
63.
Zurück zum Zitat Zitzler E, Deb K, Thiele L (2000) Comparison of multiobjective evolutionary algorithms: empirical results. Evol Comput 8(2):173–195CrossRef Zitzler E, Deb K, Thiele L (2000) Comparison of multiobjective evolutionary algorithms: empirical results. Evol Comput 8(2):173–195CrossRef
Metadaten
Titel
A multi-objective invasive weed optimization algorithm for robust aggregate production planning under uncertain seasonal demand
verfasst von
Alireza Goli
Erfan Babaee Tirkolaee
Behnam Malmir
Gui-Bin Bian
Arun Kumar Sangaiah
Publikationsdatum
03.01.2019
Verlag
Springer Vienna
Erschienen in
Computing / Ausgabe 6/2019
Print ISSN: 0010-485X
Elektronische ISSN: 1436-5057
DOI
https://doi.org/10.1007/s00607-018-00692-2

Weitere Artikel der Ausgabe 6/2019

Computing 6/2019 Zur Ausgabe