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      Solving a New Multi-Period Multi-Objective Multi-Product Aggregate Production Planning Problem Using Fuzzy Goal Programming

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      https://www.riss.kr/link?id=A100259709

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      다국어 초록 (Multilingual Abstract)

      This paper introduces a new multi-product multi-period multi-objective aggregate production planning problem. The proposed problem is modeled using multi-objective mixed-integer mathematical programming. Three objective functions, including minimizing total cost, maximizing customer services level, and maximizing the quality of endproduct, are considered, simultaneously. Several constraints such as quantity of production, available time, work force levels, inventory levels, backordering levels, machine capacity, warehouse space and available budget are also considered. Some parameters of the proposed model are assumed to be qualitative and modeled using fuzzy sets. Then, a fuzzy goal programming approach is proposed to solve the model. The proposed approach is applied on a real-world industrial case study of a color and resin production company called Teiph-Saipa. The approach is coded using LINGO software. The efficacy and applicability of the proposed approach are illustrated in the case study. The results of proposed approach are compared with those of the existing experimental methods used in the company. The relative dominance of the proposed approach is revealed in comparison with the experimental method. Finally, a data dictionary, including the way of gathering data for running the model, is proposed in order to facilitate the reimplementation of the model for future development and case studies.
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      This paper introduces a new multi-product multi-period multi-objective aggregate production planning problem. The proposed problem is modeled using multi-objective mixed-integer mathematical programming. Three objective functions, including minimizing...

      This paper introduces a new multi-product multi-period multi-objective aggregate production planning problem. The proposed problem is modeled using multi-objective mixed-integer mathematical programming. Three objective functions, including minimizing total cost, maximizing customer services level, and maximizing the quality of endproduct, are considered, simultaneously. Several constraints such as quantity of production, available time, work force levels, inventory levels, backordering levels, machine capacity, warehouse space and available budget are also considered. Some parameters of the proposed model are assumed to be qualitative and modeled using fuzzy sets. Then, a fuzzy goal programming approach is proposed to solve the model. The proposed approach is applied on a real-world industrial case study of a color and resin production company called Teiph-Saipa. The approach is coded using LINGO software. The efficacy and applicability of the proposed approach are illustrated in the case study. The results of proposed approach are compared with those of the existing experimental methods used in the company. The relative dominance of the proposed approach is revealed in comparison with the experimental method. Finally, a data dictionary, including the way of gathering data for running the model, is proposed in order to facilitate the reimplementation of the model for future development and case studies.

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      목차 (Table of Contents)

      • ABSTRACT
      • 1. INTRODUCTION
      • 2. LITERATURE OF PAST WORKS
      • 3. MULTI-OBJECTIVE MULTI-PERIOD MULTI-PRODUCT AGGREGATE PRODUCTION PLANNING PROBLEM
      • 4. SOLUTION PROCEDURE
      • ABSTRACT
      • 1. INTRODUCTION
      • 2. LITERATURE OF PAST WORKS
      • 3. MULTI-OBJECTIVE MULTI-PERIOD MULTI-PRODUCT AGGREGATE PRODUCTION PLANNING PROBLEM
      • 4. SOLUTION PROCEDURE
      • 5. CONCLUSIONS
      • REFERENCES
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      참고문헌 (Reference)

      1 Zhang, R, "The activity-based aggregate production planning with capacity expansion in manufacturing systems" 62 (62): 491-503, 2012

      2 Cooper, W. W, "Some implications of the newer analytic approaches to management" 4 (4): 51-64, 1961

      3 Tonelli, F, "Production planning of mixed-model assembly lines: a heuristic mixed integer programming based approach" 24 (24): 110-127, 2013

      4 Junior, M. L, "Production planning and control for remanufacturing : literature review and analysis" 23 (23): 419-435, 2012

      5 Holt, C. C, "Planning production, inventories, and work" 51 (51): 697-699, 1961

      6 Charnes, A, "Optimal estimation of executive compensation by linear programming" 1 (1): 138-151, 1955

      7 Fung, R. Y, "Multiproduct aggregate production planning with fuzzy demands and fuzzy capacities, IEEE Transactions on Systems" 33 (33): 302-313, 2003

      8 Leung, S. C, "Multi-site aggregate production planning with multiple objectives : a goal programming approach" 14 (14): 425-436, 2003

      9 Liang, T. F, "Multi-objective aggregate production planning decisions using twophase fuzzy goal programming method" 7 (7): 365-383, 2011

      10 Giannoccaro, I, "Models for supply chain management: a taxonomy" 2001

      1 Zhang, R, "The activity-based aggregate production planning with capacity expansion in manufacturing systems" 62 (62): 491-503, 2012

      2 Cooper, W. W, "Some implications of the newer analytic approaches to management" 4 (4): 51-64, 1961

      3 Tonelli, F, "Production planning of mixed-model assembly lines: a heuristic mixed integer programming based approach" 24 (24): 110-127, 2013

      4 Junior, M. L, "Production planning and control for remanufacturing : literature review and analysis" 23 (23): 419-435, 2012

      5 Holt, C. C, "Planning production, inventories, and work" 51 (51): 697-699, 1961

      6 Charnes, A, "Optimal estimation of executive compensation by linear programming" 1 (1): 138-151, 1955

      7 Fung, R. Y, "Multiproduct aggregate production planning with fuzzy demands and fuzzy capacities, IEEE Transactions on Systems" 33 (33): 302-313, 2003

      8 Leung, S. C, "Multi-site aggregate production planning with multiple objectives : a goal programming approach" 14 (14): 425-436, 2003

      9 Liang, T. F, "Multi-objective aggregate production planning decisions using twophase fuzzy goal programming method" 7 (7): 365-383, 2011

      10 Giannoccaro, I, "Models for supply chain management: a taxonomy" 2001

      11 Mula, J, "Models for production planning under uncertainty : a review" 103 (103): 271-285, 2006

      12 Abass, S. A, "Modeling and solving production planning problem under uncertainty : a case study" 2 (2): 60-65, 2012

      13 Baykasoglu, A, "MOAPPS 1. 0 : aggregate production planning using the multiple-objective tabu search" 39 (39): 3685-3702, 2001

      14 Hannan, E. L, "Linear programming with multiple fuzzy goals" 6 (6): 235-248, 1981

      15 Hassan Zadeh, A, "Integration of process planning and production planning and control in cellular manufacturing" 25 (25): 840-857, 2014

      16 Ghasemy Yaghin, R, "Integrated markdown pricing and aggregate production planning in a two echelon supply chain: a hybrid fuzzy multiple objective approach" 36 (36): 6011-6030, 2012

      17 Narasimhan, R, "Goal programming in a fuzzy environment" 11 (11): 325-336, 1980

      18 Lee, Y. Y, "Fuzzy sets theory approach to aggregate production planning and inventory control" Kansas State University 1990

      19 Zimmermann, H. J, "Fuzzy programming and linear programming with several objective functions" 1 (1): 45-55, 1978

      20 Chen, L. H, "Fuzzy goal programming with different importance and priorities" 133 (133): 548-556, 2001

      21 Tiwari, R. N, "Fuzzy goal programming : an additive model" 24 (24): 27-34, 1987

      22 Tang, J, "Fuzzy formulation for multi-product aggregate production planning" 11 (11): 670-676, 2000

      23 Rinks, D. B, "Fuzzy Information and Decision Processes" North-Holland 267-278, 1982

      24 Zimmermann, H. J, "Description and optimization of fuzzy systems" 2 (2): 209-215, 1975

      25 Barzilai, J, "Deriving weights from pairwise comparison matrices" 48 (48): 1226-1232, 1997

      26 Bellman, R. E, "Decision-making in a fuzzy environment" 17 (17): B141-B164, 1970

      27 Bushuev, M, "Convex optimisation for aggregate production planning" 52 (52): 1050-1058, 2014

      28 Turksen, I. B, "Computer Integrated Manufacturing" Springer 243-266, 1988

      29 Turksen, I. B, "Approximate reasoning for production planning" 26 (26): 23-37, 1988

      30 Rinks, D. B, "Applied Systems and Cybernetics" Pergamon Press 2877-2883, 1981

      31 Wang, R. C, "Application of fuzzy multi-objective linear programming to aggregate production planning" 46 (46): 17-41, 2004

      32 Mirzapour Al-e-Hashem, S. M. J, "An efficient algorithm to solve a multi-objective robust aggregate production planning in an uncertain environment" 58 (58): 765-782, 2012

      33 Filho, O. S, "An aggregate production planning model with demand under uncertainty" 10 (10): 745-756, 1999

      34 Ramezanian, R, "An aggregate production planning model for two phase production systems: solving with genetic algorithm and tabu search" 39 (39): 1256-1263, 2012

      35 Wang, R. C, "Aggregate production planning with multiple objectives in a fuzzy environment" 133 (133): 521-536, 2001

      36 Lin, T. M, "Aggregate production planning with multiple fuzzy goals" 19 (19): 39-47, 2002

      37 Karmarkar, U. S, "Aggregate production planning for process industries under oligopolistic competition" 223 (223): 680-689, 2012

      38 Jain, A, "Aggregate production planning for a continuous reconfigurable manufacturing process" 32 (32): 1213-1236, 2005

      39 Nam, S. J, "Aggregate production planning : a survey of models and methodologies" 61 (61): 255-272, 1992

      40 Mirzapour Al-e-Hashem, S. M. J, "A stochastic aggregate production planning model in a green supply chain: considering flexible lead times, nonlinear purchase and shortage cost functions" 230 (230): 26-41, 2013

      41 Jamalnia, A, "A simulation testing and analysis of aggregate production planning strategies" 24 (24): 423-448, 2013

      42 Leung, S. C, "A robust optimization model for stochastic aggregate production planning" 15 (15): 502-514, 2004

      43 Sakallı, U. S, "A possibilistic aggregate production planning model for brass casting industry" 21 (21): 319-338, 2010

      44 Mirzapour Al-E-Hashem, S. M. J, "A multi-objective robust optimization model for multi-product multi-site aggregate production planning in a supply chain under uncertainty" 134 (134): 28-42, 2011

      45 Corominas, A, "A manufacturing and remanufacturing aggregate planning model considering a non-linear supply function of recovered products" 23 (23): 194-204, 2012

      46 Holt, C. C, "A linear decision rule for production and employment scheduling" 2 (2): 1-30, 1955

      47 Jamalnia, A, "A hybrid fuzzy goal programming approach with different goal priorities to aggregate production planning" 56 (56): 1474-1486, 2009

      48 Leung, S. C, "A goal programming model for aggregate production planning with resource utilization constraint" 56 (56): 1053-1064, 2009

      49 Madadi, N, "A deterministic aggregate production planning model considering quality of products" 46 (46): 12-15, 2013

      50 Li, B, "A belief-rule-based inference method for aggregate production planning under uncertainty" 51 (51): 83-105, 2013

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2015-08-03 학술지명변경 한글명 : Industrial Engineeering & Management Systems -> Industrial Engineering & Management Systems
      외국어명 : Industrial Engineeering & Management Systems An International Journal -> Industrial Engineering & Management Systems An International Journal
      KCI등재
      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2009-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2007-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.13 0.13 0.1
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
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