How to cite this paper
Costa, A., Cappadonna, F & Fichera, S. (2016). Minimizing the total tardiness for the tool change scheduling problem on parallel machines.International Journal of Industrial Engineering Computations , 7(2), 283-294.
Refrences
Akturk, M. S., Ghosh, J. B., & Gunes, E. D. (2004). Scheduling with tool changes to minimize total completion time: basic results and SPT performance. European Journal of Operational Research, 157(3), 784-790.
Akturk, M. S., Ghosh, J. B., & Kayan, R. K. (2007). Scheduling with tool changes to minimize total completion time under controllable machining conditions. Computers & operations research, 34(7), 2130-2146.
Biskup, D., Herrmann, J., & Gupta, J. N. (2008). Scheduling identical parallel machines to minimize total tardiness. International Journal of Production Economics, 115(1), 134-142.
Chen, J. S. (2008). Optimization models for the tool change scheduling problem. Omega, 36(5), 888-894.
Edis, E. B., Oguz, C., & Ozkarahan, I. (2013). Parallel machine scheduling with additional resources: Notation, classification, models and solution methods. European Journal of Operational Research, 230(3), 449-463.
Gray, A. E., Seidmann, A., & Stecke, K. E. (1993). A synthesis of decision models for tool management in automated manufacturing. Management science, 39(5), 549-567.
Hertz, A., Laporte, G., Mittaz, M., & Stecke, K. E. (1998). Heuristics for minimizing tool switches when scheduling part types on a flexible machine. IIE transactions, 30(8), 689-694.
Hwang, H. C., & Chang, S. Y. (1998). Parallel machines scheduling with machine shutdowns. Computers & Mathematics with Applications, 36(3), 21-31.
Hwang, H. C., Lee, K., & Chang, S. Y. (2005). The effect of machine availability on the worst-case performance of LPT. Discrete Applied Mathematics, 148(1), 49-61.
Lee, C. Y. (1996). Machine scheduling with an availability constraint. Journal of global optimization, 9(3-4), 395-416.
Lee, C. Y. (1991). Parallel machines scheduling with nonsimultaneous machine available time. Discrete Applied Mathematics, 30(1), 53-61
Lee, C. Y., Lei, L., & Pinedo, M. (1997). Current trends in deterministic scheduling. Annals of Operations Research, 70, 1-41.
Liao, C. J., Shyur, D. L., & Lin, C. H. (2005). Makespan minimization for two parallel machines with an availability constraint. European Journal of Operational Research, 160(2), 445-456.
Lin, C. H., & Liao, C. J. (2007). Makespan minimization for two parallel machines with an unavailable period on each machine. The International Journal of Advanced Manufacturing Technology, 33(9-10), 1024-1030.
Low, C., Ji, M., Hsu, C. J., & Su, C. T. (2010). Minimizing the makespan in a single machine scheduling problems with flexible and periodic maintenance. Applied Mathematical Modelling, 34(2), 334-342.
Ma, Y., Chu, C., & Zuo, C. (2010). A survey of scheduling with deterministic machine availability constraints. Computers & Industrial Engineering, 58(2), 199-211.
Montgomery, D. C., (2007). Design and analysis of experiments. New York: Wiley.
Naderi, B., & Salmasi, N. (2012). Permutation flowshops in group scheduling with sequence-dependent setup times. European Journal of Industrial Engineering, 6(2), 177-198.
Pinedo, M. L. (2012). Scheduling: theory, algorithms, and systems. Springer Science & Business Media.
Kan, A. R. (1976). Machine scheduling problems: classification, complexity and computations. Springer Science & Business Media.
Schmidt, G. (2000). Scheduling with limited machine availability. European Journal of Operational Research, 121(1), 1-15.
Tang, C. S., & Denardo, E. V. (1988). Models arising from a flexible manufacturing machine, part I: minimization of the number of tool switches. Operations research, 36(5), 767-777.
Wang, J. B., & Wei, C. M. (2011). Parallel machine scheduling with a deteriorating maintenance activity and total absolute differences penalties. Applied Mathematics and Computation, 217(20), 8093-8099.
Xu, D., Sun, K., & Li, H. (2008). Parallel machine scheduling with almost periodic maintenance and non-preemptive jobs to minimize makespan. Computers & operations research, 35(4), 1344-1349.
Xu, D., Liu, M., Yin, Y., & Hao, J. (2013). Scheduling tool changes and special jobs on a single machine to minimize makespan. Omega, 41(2), 299-304.
Yang, D. L., Cheng, T. C. E., Yang, S. J., & Hsu, C. J. (2012). Unrelated parallel-machine scheduling with aging effects and multi-maintenance activities. Computers & Operations Research, 39(7), 1458-1464.
Zarook, Y., & Abedi, M. (2014). JIT-scheduling in unrelated parallel-machine environment with aging effect and multi-maintenance activities. International Journal of Services and Operations Management, 18(1), 99-113.
Akturk, M. S., Ghosh, J. B., & Kayan, R. K. (2007). Scheduling with tool changes to minimize total completion time under controllable machining conditions. Computers & operations research, 34(7), 2130-2146.
Biskup, D., Herrmann, J., & Gupta, J. N. (2008). Scheduling identical parallel machines to minimize total tardiness. International Journal of Production Economics, 115(1), 134-142.
Chen, J. S. (2008). Optimization models for the tool change scheduling problem. Omega, 36(5), 888-894.
Edis, E. B., Oguz, C., & Ozkarahan, I. (2013). Parallel machine scheduling with additional resources: Notation, classification, models and solution methods. European Journal of Operational Research, 230(3), 449-463.
Gray, A. E., Seidmann, A., & Stecke, K. E. (1993). A synthesis of decision models for tool management in automated manufacturing. Management science, 39(5), 549-567.
Hertz, A., Laporte, G., Mittaz, M., & Stecke, K. E. (1998). Heuristics for minimizing tool switches when scheduling part types on a flexible machine. IIE transactions, 30(8), 689-694.
Hwang, H. C., & Chang, S. Y. (1998). Parallel machines scheduling with machine shutdowns. Computers & Mathematics with Applications, 36(3), 21-31.
Hwang, H. C., Lee, K., & Chang, S. Y. (2005). The effect of machine availability on the worst-case performance of LPT. Discrete Applied Mathematics, 148(1), 49-61.
Lee, C. Y. (1996). Machine scheduling with an availability constraint. Journal of global optimization, 9(3-4), 395-416.
Lee, C. Y. (1991). Parallel machines scheduling with nonsimultaneous machine available time. Discrete Applied Mathematics, 30(1), 53-61
Lee, C. Y., Lei, L., & Pinedo, M. (1997). Current trends in deterministic scheduling. Annals of Operations Research, 70, 1-41.
Liao, C. J., Shyur, D. L., & Lin, C. H. (2005). Makespan minimization for two parallel machines with an availability constraint. European Journal of Operational Research, 160(2), 445-456.
Lin, C. H., & Liao, C. J. (2007). Makespan minimization for two parallel machines with an unavailable period on each machine. The International Journal of Advanced Manufacturing Technology, 33(9-10), 1024-1030.
Low, C., Ji, M., Hsu, C. J., & Su, C. T. (2010). Minimizing the makespan in a single machine scheduling problems with flexible and periodic maintenance. Applied Mathematical Modelling, 34(2), 334-342.
Ma, Y., Chu, C., & Zuo, C. (2010). A survey of scheduling with deterministic machine availability constraints. Computers & Industrial Engineering, 58(2), 199-211.
Montgomery, D. C., (2007). Design and analysis of experiments. New York: Wiley.
Naderi, B., & Salmasi, N. (2012). Permutation flowshops in group scheduling with sequence-dependent setup times. European Journal of Industrial Engineering, 6(2), 177-198.
Pinedo, M. L. (2012). Scheduling: theory, algorithms, and systems. Springer Science & Business Media.
Kan, A. R. (1976). Machine scheduling problems: classification, complexity and computations. Springer Science & Business Media.
Schmidt, G. (2000). Scheduling with limited machine availability. European Journal of Operational Research, 121(1), 1-15.
Tang, C. S., & Denardo, E. V. (1988). Models arising from a flexible manufacturing machine, part I: minimization of the number of tool switches. Operations research, 36(5), 767-777.
Wang, J. B., & Wei, C. M. (2011). Parallel machine scheduling with a deteriorating maintenance activity and total absolute differences penalties. Applied Mathematics and Computation, 217(20), 8093-8099.
Xu, D., Sun, K., & Li, H. (2008). Parallel machine scheduling with almost periodic maintenance and non-preemptive jobs to minimize makespan. Computers & operations research, 35(4), 1344-1349.
Xu, D., Liu, M., Yin, Y., & Hao, J. (2013). Scheduling tool changes and special jobs on a single machine to minimize makespan. Omega, 41(2), 299-304.
Yang, D. L., Cheng, T. C. E., Yang, S. J., & Hsu, C. J. (2012). Unrelated parallel-machine scheduling with aging effects and multi-maintenance activities. Computers & Operations Research, 39(7), 1458-1464.
Zarook, Y., & Abedi, M. (2014). JIT-scheduling in unrelated parallel-machine environment with aging effect and multi-maintenance activities. International Journal of Services and Operations Management, 18(1), 99-113.