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Inventory rationing in a make-to-stock system with batch production and lost sales

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Published

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Inventory rationing in a make-to-stock system with batch production and lost sales. / Pang, Zhan; Shen, Houcai; Cheng, T.C.E. .
In: Production and Operations Management, Vol. 23, No. 7, 07.2014, p. 1243-1257.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Pang, Z, Shen, H & Cheng, TCE 2014, 'Inventory rationing in a make-to-stock system with batch production and lost sales', Production and Operations Management, vol. 23, no. 7, pp. 1243-1257. https://doi.org/10.1111/poms.12190

APA

Pang, Z., Shen, H., & Cheng, T. C. E. (2014). Inventory rationing in a make-to-stock system with batch production and lost sales. Production and Operations Management, 23(7), 1243-1257. https://doi.org/10.1111/poms.12190

Vancouver

Pang Z, Shen H, Cheng TCE. Inventory rationing in a make-to-stock system with batch production and lost sales. Production and Operations Management. 2014 Jul;23(7):1243-1257. Epub 2014 Mar 13. doi: 10.1111/poms.12190

Author

Pang, Zhan ; Shen, Houcai ; Cheng, T.C.E. . / Inventory rationing in a make-to-stock system with batch production and lost sales. In: Production and Operations Management. 2014 ; Vol. 23, No. 7. pp. 1243-1257.

Bibtex

@article{d7eb247741424ee6bb2cc02bb95e356e,
title = "Inventory rationing in a make-to-stock system with batch production and lost sales",
abstract = "We address an inventory rationing problem in a lost sales make-to-stock (MTS) production system with batch ordering and multiple demand classes. Each production order contains a single batch of a fixed lot size and the processing time of each batch is random. Assuming that there is at most one order outstanding at any point in time, we first address the case with the general production time distribution. We show that the optimal order policy is characterized by a reorder point and the optimal rationing policy is characterized by time-dependent rationing levels. We then approximate the production time distribution with a phase-type distribution and show that the optimal policy can be characterized by a reorder point and state-dependent rationing levels. Using the Erlang production time distribution, we generalize the model to a tandem MTS system in which there may be multiple outstanding orders. We introduce a state-transformation approach to perform the structural analysis and show that both the reorder point and rationing levels are state dependent. We show the monotonicity of the optimal reorder point and rationing levels for the outstanding orders, and generate new theoretical and managerial insights from the research findings.",
keywords = "Inventory Rationing, Batch Production, Markov Decision Process",
author = "Zhan Pang and Houcai Shen and T.C.E. Cheng",
year = "2014",
month = jul,
doi = "10.1111/poms.12190",
language = "English",
volume = "23",
pages = "1243--1257",
journal = "Production and Operations Management",
issn = "1059-1478",
publisher = "Wiley-Blackwell",
number = "7",

}

RIS

TY - JOUR

T1 - Inventory rationing in a make-to-stock system with batch production and lost sales

AU - Pang, Zhan

AU - Shen, Houcai

AU - Cheng, T.C.E.

PY - 2014/7

Y1 - 2014/7

N2 - We address an inventory rationing problem in a lost sales make-to-stock (MTS) production system with batch ordering and multiple demand classes. Each production order contains a single batch of a fixed lot size and the processing time of each batch is random. Assuming that there is at most one order outstanding at any point in time, we first address the case with the general production time distribution. We show that the optimal order policy is characterized by a reorder point and the optimal rationing policy is characterized by time-dependent rationing levels. We then approximate the production time distribution with a phase-type distribution and show that the optimal policy can be characterized by a reorder point and state-dependent rationing levels. Using the Erlang production time distribution, we generalize the model to a tandem MTS system in which there may be multiple outstanding orders. We introduce a state-transformation approach to perform the structural analysis and show that both the reorder point and rationing levels are state dependent. We show the monotonicity of the optimal reorder point and rationing levels for the outstanding orders, and generate new theoretical and managerial insights from the research findings.

AB - We address an inventory rationing problem in a lost sales make-to-stock (MTS) production system with batch ordering and multiple demand classes. Each production order contains a single batch of a fixed lot size and the processing time of each batch is random. Assuming that there is at most one order outstanding at any point in time, we first address the case with the general production time distribution. We show that the optimal order policy is characterized by a reorder point and the optimal rationing policy is characterized by time-dependent rationing levels. We then approximate the production time distribution with a phase-type distribution and show that the optimal policy can be characterized by a reorder point and state-dependent rationing levels. Using the Erlang production time distribution, we generalize the model to a tandem MTS system in which there may be multiple outstanding orders. We introduce a state-transformation approach to perform the structural analysis and show that both the reorder point and rationing levels are state dependent. We show the monotonicity of the optimal reorder point and rationing levels for the outstanding orders, and generate new theoretical and managerial insights from the research findings.

KW - Inventory Rationing

KW - Batch Production

KW - Markov Decision Process

U2 - 10.1111/poms.12190

DO - 10.1111/poms.12190

M3 - Journal article

VL - 23

SP - 1243

EP - 1257

JO - Production and Operations Management

JF - Production and Operations Management

SN - 1059-1478

IS - 7

ER -