Otwarty dostęp

An integrated optimization model for procurement and production lot sizing and scheduling problems


Zacytuj

Almada-Lobo, B., Klabjan, D., Carravilla, M. A., Oliveira, J. F., 2010. Multiple machine continuous setup lotsizing with sequence-dependent setups. Computational Optimization and Application, 47(3), 529–552, 2010, DOI: 10.1007/s10589-009-9235-8. Search in Google Scholar

Almeder, C., Klabjan, D., Traxler, R., Almada-Lobo, B., (2014. Lead time considerations for the multi-level capacitated lot-sizing problem. European Journal of Operational Research, 241(3), 727–738, 2015, DOI: 10.1016/j.ejor.2014.09.030. Search in Google Scholar

Avadiappan, V., Gupta, D., Maravelias, C. T., 2022. Production scheduling under demand uncertainty in the presence of feedback: model comparisons, insights, and paradoxes. Computers and Chemical Engineering, 168, 108028. Search in Google Scholar

Badri, H. M., Khamis, N. K. Ghazali, M. J., 2020. Integration of lot sizing and scheduling models to minimize production cost and time in the automotive industry. International Journal of Industrial Optimization, 1(1), 1–14. Search in Google Scholar

Cheraghalipour. A. Farsad. S., 2018. A bi-objective sustainable supplier selection and order allocation considering quantity discounts under disruption risks: a case study in plastic industry. Computers & Industrial Engineering, 118, 237–250. Search in Google Scholar

Choudhary, D. Shankar, R., 2013. Joint decision of procurement lot-size, supplier selection, and carrier selection. Journal of Purchasing and Supply Management, 19(1), 16–26, DOI: 10.1016/j.pursup.2012.08.002. Search in Google Scholar

Cunha, A. L., Santos, M. O., Morabito, R. Barbosa-Póvoa, A., 2018. An integrated approach for production lot sizing and raw material purchasing. European Journal of Operational Research, 269(3), 923–938, DOI: 10.1016/j.ejor.2018.02.042. Search in Google Scholar

Ertogral, K., Darwish, M., Ben-Daya, M., 2007. Production and shipment lot sizing in a vendor-buyer supply chain with transportation cost. European Journal of Operational Research, 176(3), 1592–1606, DOI: 10.1016/j.ejor.2005.10.036. Search in Google Scholar

Georgiadis, G. P., Kopanos, G. M., Karkaris, A., Ksafopoulos, H., Georgiadis, M. C., 2019. Optimal production scheduling in the dairy industries. Industrial Engineering and Chemistry Research, 58(16), 6537–6550, DOI: 10.1021/acs.iecr.8b05710. Search in Google Scholar

Hamdan. S. and Cheaitou. A., 2017. Dynamic green supplier selection and order allocation with quantity discounts and varying supplier availability. Computers & Industrial Engineering 110, 573–589. Search in Google Scholar

Koch, C., Arbaoui, T., Ouzene, Y., Yalaoui, F., De Brunier, H., Jaunet, N., and De Wulf, A., A metaheuristic approach for solving a simultaneous lot sizing and scheduling problem with client prioritization in tire industry, Computers & Industrial Engineering, 165, 107932. Search in Google Scholar

Lee, A. H. I., Kang, H. Y., Lai, C. M., Hong, W. Y., 2013. An integrated model for lot sizing with supplier selection and quantity discounts. Applied Mathematical Modeling, 37(7), 4733–4746, DOI: 10.1016/j.apm.2012.09.056. Search in Google Scholar

Liu, M., Wang, S., and Chu, C., 2013. Scheduling deteriorating jobs with past-sequence-dependent delivery times. International Journal of Production Economics, 144(2), 418–421, DOI: 10.1016/j.ijpe.2013.03.009. Search in Google Scholar

Mirzaee. H., Naderi. B., Pasandideh. S. H. R., 2018. A Preemptive Fuzzy Goal Programming Model for Generalized Supplier Selection and Order Allocation with Incremental Discount. Computers & Industrial Engineering, 122, 292–302. Search in Google Scholar

Mohammadi, M., Esmaelian, M., Atighehchian, A., 2020. Design of mathematical models for the integration of purchase and production lot-sizing and scheduling problems under demand uncertainty. Applied Mathematical Modelling, 84, 1–18, DOI: 10.1016/j.apm.2020.03.021. Search in Google Scholar

Permatasari, H. A. I., Rosyidi, C. N., Laksono, P. W., 2023. Optimization model for lot sizing and scheduling problem considering multiple suppliers, quantity discounts, carriers, and production time constraints. Lecture Notes in Mechanical Engineering, Proceedings of the 6th Asia Pacific Conference on Manufacturing Systems and 4th International Manufacturing Engineering Conference, Surakarta, Indonesia Search in Google Scholar

Pinedo, M. L., 2016. Scheduling: Theory, algorithms, and systems 5th Edition. Springer International Publishing, Switzerland. Search in Google Scholar

Quadt, D., 2004. Lot-Sizing and Scheduling for Flexible Flow Lines (Lecture Notes in Economics and Mathematical Systems Book 546) 1st ed. Springer-Verlag Heidelberg, Germany. Search in Google Scholar

Quadt, D. Kuhn, H., 2007. Conceptual framework for lot-sizing and scheduling of flexible flow lines. International Journal of Production Research, 43(11), 2291–2308. Search in Google Scholar

Ramezanian, R., Saidi-Mehrabad, M., Teimoury, E., 2013. A mathematical model for integrating lot-sizing and scheduling problem in capacitated flow shop environments. International Journal of Advanced Manufacturing Technology,66(1–4), 347–361, DOI: 10.1007/s00170-012-4329-3. Search in Google Scholar

Shalke. P. N., Paydar. M. M., Hajiaghaei-Keshteli. M., 2018. Sustainable supplier selection and order allocation through quantity discounts. International Journal of Management Science and Engineering Management, 13(1), 20–32. Search in Google Scholar

Su, T. S., 2018. Optimal lot-sizing decisions with integrated purchasing, manufacturing, and assembling for remanufacturing systems. Iranian Journal of Fuzzy Systems, 15(3), 1–26. Search in Google Scholar

Sutrisno, Solikhin, Wicaksono, P. A., 2020. Multi-objective optimisation approach as decision-making support for product mixing and raw material allocation planning. International Journal of Procurement Management, 13(2), 180–198, DOI: 10.1504/IJPM.2020.106511. Search in Google Scholar

Zhou, S., Zhou, Y., Zuo, X., Xiao, Y., 2018. Modeling and solving the constrained multi-items lot sizing problem with time-varying setup cost. Chaos, Solitons and Fractals, 116, 202–207. Search in Google Scholar