Capacity optimization under uncertainty: The impact of operational time lags
•Time lags are typically neglected in most real options models with capacity sizing.•The inclusion of time lags with sizing weakens standard results about hysteresis.•Time lags directly speed up the resumption decision but delay suspension.•Time lags increase capacity, which delays resumption but fa...
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Published in | European journal of operational research Vol. 262; no. 2; pp. 660 - 672 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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Elsevier B.V
16.10.2017
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ISSN | 0377-2217 1872-6860 1872-6860 |
DOI | 10.1016/j.ejor.2017.04.006 |
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Abstract | •Time lags are typically neglected in most real options models with capacity sizing.•The inclusion of time lags with sizing weakens standard results about hysteresis.•Time lags directly speed up the resumption decision but delay suspension.•Time lags increase capacity, which delays resumption but facilitates suspension.•The overall impact of time lags with capacity sizing depends on uncertainty.
Time lags in switching operational modes are typical in the manufacturing and power sectors but are not treated in most real options models. In this paper, we consider a firm that has the opportunity to suspend and to resume production infinitely many times subject to a time lag after each startup decision. We contribute to the literature by allowing the firm to determine its level of installed capacity in conjunction with its optimal investment timing. We find that an increase in the length of the time lag results in an increase in the optimal capacity level. Capacity optimization also interacts with the length of the time lag to affect investment timing and the triggers to suspend and resume production, thereby weakening the result about hysteresis from a standard real options model. Under the assumption of a fixed level of capacity, a longer lag speeds up the decision to resume operations due to a positive upside to the revenue but delays the suspension of operations. By contrast, with capacity optimization, a longer time lag results in a larger capacity choice, which can indirectly delay the investment decision and the timing to resume operations. This indirect effect dominates when the level of market uncertainty is low and the time lag is initially small. |
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AbstractList | •Time lags are typically neglected in most real options models with capacity sizing.•The inclusion of time lags with sizing weakens standard results about hysteresis.•Time lags directly speed up the resumption decision but delay suspension.•Time lags increase capacity, which delays resumption but facilitates suspension.•The overall impact of time lags with capacity sizing depends on uncertainty.
Time lags in switching operational modes are typical in the manufacturing and power sectors but are not treated in most real options models. In this paper, we consider a firm that has the opportunity to suspend and to resume production infinitely many times subject to a time lag after each startup decision. We contribute to the literature by allowing the firm to determine its level of installed capacity in conjunction with its optimal investment timing. We find that an increase in the length of the time lag results in an increase in the optimal capacity level. Capacity optimization also interacts with the length of the time lag to affect investment timing and the triggers to suspend and resume production, thereby weakening the result about hysteresis from a standard real options model. Under the assumption of a fixed level of capacity, a longer lag speeds up the decision to resume operations due to a positive upside to the revenue but delays the suspension of operations. By contrast, with capacity optimization, a longer time lag results in a larger capacity choice, which can indirectly delay the investment decision and the timing to resume operations. This indirect effect dominates when the level of market uncertainty is low and the time lag is initially small. Time lags in switching operational modes are typical in the manufacturing and power sectors but are not treated in most real options models. In this paper, we consider a firm that has the opportunity to suspend and to resume production infinitely many times subject to a time lag after each startup decision. We contribute to the literature by allowing the firm to determine its level of installed capacity in conjunction with its optimal investment timing. We find that an increase in the length of the time lag results in an increase in the optimal capacity level. Capacity optimization also interacts with the length of the time lag to affect investment timing and the triggers to suspend and resume production, thereby weakening the result about hysteresis from a standard real options model. Under the assumption of a fixed level of capacity, a longer lag speeds up the decision to resume operations due to a positive upside to the revenue but delays the suspension of operations. By contrast, with capacity optimization, a longer time lag results in a larger capacity choice, which can indirectly delay the investment decision and the timing to resume operations. This indirect effect dominates when the level of market uncertainty is low and the time lag is initially small. |
Author | Siddiqui, Afzal S. Boonman, Hettie J. |
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SubjectTerms | Capacity optimization Computer and Systems Sciences data- och systemvetenskap Investment analysis Real options Time lag |
Title | Capacity optimization under uncertainty: The impact of operational time lags |
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