Production and Transportation Integration for Commit-to-Delivery Mode with General Shipping Costs
Published Online:4 May 2020https://doi.org/10.1287/ijoc.2019.0935
References
- (2002a) On the effectiveness of zero-inventory-ordering policies for the economic lot-sizing model with a class of piecewise linear cost structures. Oper. Res. 50(6):1058–1067.Link, Google Scholar
- (2002b) Effective zero-inventory-ordering policies for the single-warehouse multiretailer problem with piecewise linear cost structures. Management Sci. 48(11):1446–1460.Link, Google Scholar
- (2010) Integrated production and outbound distribution scheduling: Review and extensions. Oper. Res. 58(1):130–148.Link, Google Scholar
- (2006) Order assignment and scheduling in a supply chain. Oper. Res. 54(3):555–572.Link, Google Scholar
- (2009) Integrated order scheduling and packing. Production Oper. Management 18(6):672–692.Crossref, Google Scholar
- (2005) Integrated scheduling of production and distribution operations. Management Sci. 51(4):614–628.Link, Google Scholar
- (2003) Models and methods for merge-in-transit operations. Transportation Sci. 37(1):1–22.Link, Google Scholar
- EMS (2018) EMS rate standard for domestic express (China). Accessed September 17, 2018, http://www.ems.com.cn/serviceguide/zifeichaxun/e\_zi\_fei\_biao\_zhun.html.Google Scholar
- FedEx Express (2018) Promotional export rates for international priority freight shipments (from Hong Kong). http://www.fedex.com/hk_english/rates/.Google Scholar
- (2015) Balancing production and distribution in paper manufacturing. Production Oper. Management 24(7):1164–1178.Crossref, Google Scholar
- (2008) The integrated production and transportation scheduling problem for a product with a short lifespan. INFORMS J. Comput. 20(1):21–33.Link, Google Scholar
- (2003) Supply chain scheduling: Batching and delivery. Oper. Res. 51(4):566–584.Link, Google Scholar
- (2016) An integrated approach to tactical transportation planning in logistics networks. Transportation Sci. 50(2):439–460.Link, Google Scholar
- (2010) Economic lot-sizing for integrated production and transportation. Oper. Res. 58(2):428–444.Link, Google Scholar
- (1995) Improving the complexities of approximation algorithms for optimization problems. Oper. Res. Lett. 17(2):85–87.Crossref, Google Scholar
- (2017) Integrated production, inventory and delivery problems: Complexity and algorithms. INFORMS J. Comput. 29(2):232–250.Link, Google Scholar
- (2004) Dynamic lot sizing with batch ordering and truckload discounts. Oper. Res. 52(4):639–654.Link, Google Scholar
- (2010) Optimizing production and transportation in a commit-to-delivery business mode. Eur. J. Oper. Res. 203(3):614–618.Crossref, Google Scholar
- (1991) A theory of rolling horizon decision making. Ann. Oper. Res. 29(1):387–415.Crossref, Google Scholar
- (1987) Freezing the master production schedule under rolling planning horizons. Management Sci. 33(9):1137–1149.Link, Google Scholar
- (2007) Production and transportation integration for a make-to-order manufacturing company with a commit-to-delivery business mode. Manufacturing Service Oper. Management 9(2):206–224.Link, Google Scholar
- (2013) Integrated machine scheduling and vehicle routing with time windows. Eur. J. Oper. Res. 227(1):152–165.Crossref, Google Scholar
- (2001) Fully polynomial approximation schemes for single-item capacitated economic lot-sizing problems. Math. Oper. Res. 26(2):339–357.Link, Google Scholar
- (2000) When does a dynamic programming formulation guarantee the existence of a fully polynomial time approximation scheme (FPTAS)? INFORMS J. Comput. 12(1):57–74.Link, Google Scholar
- (1998) Column generation algorithms, chapter 11. Integer Programming (Wiley, New York), 189–202.Google Scholar
- (2013) The knapsack problem with a minimum filling constraint. Naval Res. Logist. 60(1):56–63.Crossref, Google Scholar
- (2015) An improved algorithm for integrated production and distribution scheduling problem with committed delivery dates. Optim. Lett. 9(3):537–567.Crossref, Google Scholar
- (2010) Integrated production and distribution scheduling with committed delivery dates. Oper. Res. Lett. 38(2):133–138.Crossref, Google Scholar

