unfinished revision

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He Zhou 2023-01-09 20:24:25 +08:00
parent 7eee942129
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@ -567,37 +567,6 @@
url = {https://spaceflight.com/pricing/},
}
@Article{Andrews2011,
author = {Andrews, Jason and Bonnema, Abe},
title = {Ticket to space-how to get your small satellite from the cleanroom to orbit},
year = {2011},
}
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author = {Barschke, Merlin F},
journal = {Nanosatellites: Space and Ground Technologies, Operations and Economics},
title = {III-1b: launch costs},
year = {2020},
pages = {533--543},
publisher = {Wiley Online Library},
}
@InProceedings{Li2010,
author = {Li, Chao},
booktitle = {Advanced Materials Research},
title = {Anti-risk capability evaluation analysis on China instrument and meter industry},
year = {2010},
organization = {Trans Tech Publ},
pages = {297--302},
volume = {108},
}
@Article{Luo2020,
author = {Luo, S.and Choi, T.-M.},
title = {E-Commerce Supply Chains with Considerations of Cyber-Security: Should Governments Play a Role?},
year = {2020},
}
@Article{Chen2020,
author = {Chen, Xu and Yang, Huan and Wang, Xiaojun and Choi, Tsan-Ming},
journal = {Annals of Operations Research},
@ -727,20 +696,13 @@
publisher = {Wiley Online Library},
}
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author = {Satellite Industry Association},
title = {State of the Satellite Industry Report},
title = {The 2022 State of the Satellite Industry Report},
year = {2022},
url = {https://sia.org/news-resources/state-of-the-satellite-industry-report/},
}
@Book{Space2022,
author = {Bryce Space and Technology, LLC},
publisher = {Satellite Industry Association},
title = {The 2022 State of the Satellite Industry Report},
year = {2022},
url = {https://sia.org/news-resources/state-of-the-satellite-industry-report/},
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title = {Ticket to space-how to get your small satellite from the cleanroom to orbit},
@ -776,12 +738,12 @@
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journal = {The Journal of the Royal Aeronautical Society},
title = {Space Logistics Engineering. Edited by Kenneth Brown and Lawrence E. Ely. John Wiley & Sons, New York & London. 1962. 623 pp. Illustrated. 128s.},
title = {Space Logistics Engineering},
journal = {Journal of the Royal Aeronautical Society},
year = {1965},
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number = {649},
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volume = {69},
doi = {10.1017/S0001924000060772},
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@ -957,33 +919,25 @@
}
@Article{Balcik2019,
author = {Balcik, Burcu and Silvestri, Selene and Rancourt, Marie-Ève and Laporte, Gilbert},
journal = {Production and Operations Management},
author = {Balcik, Burcu and Silvestri, Selene and Rancourt, Marie-Eve and Laporte, Gilbert},
title = {Collaborative Prepositioning Network Design for Regional Disaster Response},
journal = {Production and Operations Management},
year = {2019},
volume = {28},
number = {10},
pages = {2431--2455},
volume = {28},
abstract = {We present a collaborative prepositioning strategy to strengthen the disaster preparedness of the Caribbean countries, which are frequently hit by hurricanes. Since different subsets of countries are affected in each hurricane season, significant risk pooling benefits can be achieved through horizontal collaboration, which involves joint ownership of prepositioned stocks. We worked with the intergovernmental Caribbean Disaster and Emergency Management Agency to design a collaborative prepositioning network in order to improve regional response capacity. We propose a novel insurance-based method to allocate the costs incurred to establish and operate the proposed collaborative prepositioning network among the partner countries. We present a stochastic programming model, which determines the locations and amounts of relief supplies to store, as well as the investment to be made by each country such that their premium is related to the cost associated with the expected value and the standard deviation of their demand. We develop a realistic data set for the network by processing real-world data. We conduct extensive numerical analyses and present insights that support practical implementation. We show that a significant reduction in total inventory can be achieved by applying collaborative prepositioning as opposed to a decentralized policy. Our results also demonstrate that reducing the replenishment lead time during the hurricane season and improving sea connectivity are essential to increasing the benefits resulting from the network.},
doi = {https://doi.org/10.1111/poms.13053},
eprint = {https://onlinelibrary.wiley.com/doi/pdf/10.1111/poms.13053},
keywords = {prepositioning, hurricane preparedness, horizontal collaboration, risk pooling, insurance},
url = {https://onlinelibrary.wiley.com/doi/abs/10.1111/poms.13053},
}
@Article{Gavish2004,
author = {Gavish, Bezalel and Kalvenes, Joakim},
journal = {Production and Operations Management},
title = {Dynamic Policies for Optimal LEO Satellite Launches},
year = {2004},
number = {4},
pages = {386--397},
volume = {13},
abstract = {Low-earth orbit satellite (LEO) systems continue to provide mobile communication services. The issue of cost containment in system maintenance is a critical factor for continued operation. Satellite finite life-times follow a stochastic process, and since satellite replenishment cost is the most significant on-going cost of operation, finding optimal launch policies is of paramount importance. This paper formulates the satellite launch problem as a Markovian decision model that can be solved using dynamic programming. The policy space of the system is enormous and traditional action space dominance rules do not apply. In order to solve the dynamic program for realistic problem sizes, a novel procedure for limiting the state space considered in the dynamic program is developed. The viability of the proposed solution procedure is demonstrated in example problems using realistic system data. The policies derived by the proposed solution procedure are superior to those currently considered by LEO system operators, and result in substantial annual cost savings.},
doi = {https://doi.org/10.1111/j.1937-5956.2004.tb00225.x},
eprint = {https://onlinelibrary.wiley.com/doi/pdf/10.1111/j.1937-5956.2004.tb00225.x},
keywords = {scheduling and sequencing, replenishment, inventory management},
url = {https://onlinelibrary.wiley.com/doi/abs/10.1111/j.1937-5956.2004.tb00225.x},
author = {Gavish, Bezalel and Kalvenes, Joakim},
title = {Dynamic Policies for Optimal LEO Satellite Launches},
journal = {Production and Operations Management},
year = {2004},
volume = {13},
number = {4},
pages = {386--397},
}
@Article{Brandimarte2013,
@ -1020,11 +974,22 @@
url = {https://www.reuters.com/lifestyle/science/launching-into-space-not-so-fast-insurers-balk-new-coverage-2021-09-01/},
}
@Article{2020-Babich-p223-240,
author = {Babich, Volodymyr and Hilary, Gilles},
title = {OM Forum—Distributed ledgers and operations: What operations management researchers should know about blockchain technology},
journal = {Manufacturing \& Service Operations Management},
year = {2020},
volume = {22},
number = {2},
pages = {223--240},
publisher = {INFORMS},
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View File

@ -567,31 +567,6 @@
url = {https://spaceflight.com/pricing/},
}
@Article{Andrews2011,
author = {Andrews, Jason and Bonnema, Abe},
title = {Ticket to space-how to get your small satellite from the cleanroom to orbit},
year = {2011},
}
@Article{Barschke2020,
author = {Barschke, Merlin F},
journal = {Nanosatellites: Space and Ground Technologies, Operations and Economics},
title = {III-1b: launch costs},
year = {2020},
pages = {533--543},
publisher = {Wiley Online Library},
}
@InProceedings{Li2010,
author = {Li, Chao},
booktitle = {Advanced Materials Research},
title = {Anti-risk capability evaluation analysis on China instrument and meter industry},
year = {2010},
organization = {Trans Tech Publ},
pages = {297--302},
volume = {108},
}
@Article{Luo2020,
author = {Luo, S.and Choi, T.-M.},
title = {E-Commerce Supply Chains with Considerations of Cyber-Security: Should Governments Play a Role?},
@ -727,20 +702,13 @@
publisher = {Wiley Online Library},
}
@Misc{Association,
@TechReport{Space2022,
author = {Satellite Industry Association},
title = {State of the Satellite Industry Report},
title = {The 2022 State of the Satellite Industry Report},
year = {2022},
url = {https://sia.org/news-resources/state-of-the-satellite-industry-report/},
}
@Book{Space2022,
author = {Bryce Space and Technology, LLC},
publisher = {Satellite Industry Association},
title = {The 2022 State of the Satellite Industry Report},
year = {2022},
url = {https://sia.org/news-resources/state-of-the-satellite-industry-report/},
}
@Article{Andrews2011,
author = {Andrews, Jason and Bonnema, Abe},
title = {Ticket to space-how to get your small satellite from the cleanroom to orbit},
@ -776,12 +744,12 @@
@Article{Follett1965,
author = {Follett, S. F.},
journal = {The Journal of the Royal Aeronautical Society},
title = {Space Logistics Engineering. Edited by Kenneth Brown and Lawrence E. Ely. John Wiley & Sons, New York & London. 1962. 623 pp. Illustrated. 128s.},
title = {Space Logistics Engineering},
journal = {Journal of the Royal Aeronautical Society},
year = {1965},
volume = {69},
number = {649},
pages = {65--65},
volume = {69},
doi = {10.1017/S0001924000060772},
publisher = {Cambridge University Press},
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}
@Article{Balcik2019,
author = {Balcik, Burcu and Silvestri, Selene and Rancourt, Marie-Ève and Laporte, Gilbert},
journal = {Production and Operations Management},
author = {Balcik, Burcu and Silvestri, Selene and Rancourt, Marie-Eve and Laporte, Gilbert},
title = {Collaborative Prepositioning Network Design for Regional Disaster Response},
journal = {Production and Operations Management},
year = {2019},
volume = {28},
number = {10},
pages = {2431--2455},
volume = {28},
abstract = {We present a collaborative prepositioning strategy to strengthen the disaster preparedness of the Caribbean countries, which are frequently hit by hurricanes. Since different subsets of countries are affected in each hurricane season, significant risk pooling benefits can be achieved through horizontal collaboration, which involves joint ownership of prepositioned stocks. We worked with the intergovernmental Caribbean Disaster and Emergency Management Agency to design a collaborative prepositioning network in order to improve regional response capacity. We propose a novel insurance-based method to allocate the costs incurred to establish and operate the proposed collaborative prepositioning network among the partner countries. We present a stochastic programming model, which determines the locations and amounts of relief supplies to store, as well as the investment to be made by each country such that their premium is related to the cost associated with the expected value and the standard deviation of their demand. We develop a realistic data set for the network by processing real-world data. We conduct extensive numerical analyses and present insights that support practical implementation. We show that a significant reduction in total inventory can be achieved by applying collaborative prepositioning as opposed to a decentralized policy. Our results also demonstrate that reducing the replenishment lead time during the hurricane season and improving sea connectivity are essential to increasing the benefits resulting from the network.},
doi = {https://doi.org/10.1111/poms.13053},
eprint = {https://onlinelibrary.wiley.com/doi/pdf/10.1111/poms.13053},
keywords = {prepositioning, hurricane preparedness, horizontal collaboration, risk pooling, insurance},
url = {https://onlinelibrary.wiley.com/doi/abs/10.1111/poms.13053},
}
@Article{Gavish2004,
author = {Gavish, Bezalel and Kalvenes, Joakim},
journal = {Production and Operations Management},
title = {Dynamic Policies for Optimal LEO Satellite Launches},
year = {2004},
number = {4},
pages = {386--397},
volume = {13},
abstract = {Low-earth orbit satellite (LEO) systems continue to provide mobile communication services. The issue of cost containment in system maintenance is a critical factor for continued operation. Satellite finite life-times follow a stochastic process, and since satellite replenishment cost is the most significant on-going cost of operation, finding optimal launch policies is of paramount importance. This paper formulates the satellite launch problem as a Markovian decision model that can be solved using dynamic programming. The policy space of the system is enormous and traditional action space dominance rules do not apply. In order to solve the dynamic program for realistic problem sizes, a novel procedure for limiting the state space considered in the dynamic program is developed. The viability of the proposed solution procedure is demonstrated in example problems using realistic system data. The policies derived by the proposed solution procedure are superior to those currently considered by LEO system operators, and result in substantial annual cost savings.},
doi = {https://doi.org/10.1111/j.1937-5956.2004.tb00225.x},
eprint = {https://onlinelibrary.wiley.com/doi/pdf/10.1111/j.1937-5956.2004.tb00225.x},
keywords = {scheduling and sequencing, replenishment, inventory management},
url = {https://onlinelibrary.wiley.com/doi/abs/10.1111/j.1937-5956.2004.tb00225.x},
author = {Gavish, Bezalel and Kalvenes, Joakim},
title = {Dynamic Policies for Optimal LEO Satellite Launches},
journal = {Production and Operations Management},
year = {2004},
volume = {13},
number = {4},
pages = {386--397},
}
@Article{Brandimarte2013,
@ -1020,11 +980,22 @@
url = {https://www.reuters.com/lifestyle/science/launching-into-space-not-so-fast-insurers-balk-new-coverage-2021-09-01/},
}
@Article{2020-Babich-p223-240,
author = {Babich, Volodymyr and Hilary, Gilles},
title = {OM Forum—Distributed ledgers and operations: What operations management researchers should know about blockchain technology},
journal = {Manufacturing \& Service Operations Management},
year = {2020},
volume = {22},
number = {2},
pages = {223--240},
publisher = {INFORMS},
}
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\gdef \@abspage@last{44}

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@ -1,4 +1,4 @@
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