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@article{julka_agent-based_2002,
title = {Agent-based supply chain management-1: framework},
volume = {26},
shorttitle = {Agent-based supply chain management—1},
number = {12},
urldate = {2013-01-14},
journal = {Computers \& Chemical Engineering},
author = {Julka, N. and Srinivasan, R. and Karimi, I.},
year = {2002},
pages = {1755-1769},
file = {science.pdf:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/52D778RT/science.pdf:application/pdf}
}
@misc{coinosi,
author = {John Forrest and others},
title = {{COIN-OR Open Solver Interface}},
month = dec,
year = {2014},
url = {https://projects.coin-or.org/Osi},
howpublished = {\url{https://projects.coin-or.org/Osi}}
}
@inproceedings{gidden_agent-based_slc_2013,
address = {Salt Lake City, {UT}, United States},
title = {{An Agent-Based Framework for Fuel Cycle Simulation with Recycling}},
booktitle = {Proceedings of {GLOBAL}},
author = {Gidden, Matthew and Wilson, Paul},
month = sep,
year = {2013},
file = {abstract.pdf:/home/gidden/.mozilla/firefox/oyw9n8ps.default/zotero/storage/K5HAE4UP/abstract.pdf:application/pdf;paper.pdf:/home/gidden/.mozilla/firefox/oyw9n8ps.default/zotero/storage/UP53JEMP/paper.pdf:application/pdf;pres.pdf:/home/gidden/.mozilla/firefox/oyw9n8ps.default/zotero/storage/8SE9FWZP/pres.pdf:application/pdf}
}
@phdthesis{gidden_agent-based_2013,
address = {Madison},
type = {Prelim},
title = {{An Agent-Based Modeling Framework and Application for the Generic Nuclear Fuel Cycle}},
url = {http://dx.doi.org/10.6084/m9.figshare.1132596},
abstract = {The nuclear fuel cycle describes the process of the evolution of nuclear fuel from mining to eventual
interment. It is a complex system comprised of supplier and consumer facilities which act in a global
context. It is cyclical, i.e., fuel is not simply used and disposed of in all cases; the notion of the recycling
and reuse of fuel must be taken into account. Further complicating the analysis of the nuclear fuel cycle
are competing metrics, such as overall cost, repository capacity, support facility capacity, etc. Nuclear fuel
cycle simulators have been developed in order to ascertain the effect of different fuel cycle options, such
as fuel types, reactor types, and technology availability. Previous simulation technologies have relied
primarily on pure system dynamics approaches. This work describes an agent-based modeling approach
that allows increased modeling flexibility through the use of dynamically loadable agent actors. A linear
programming and mixed integer-linear programming variation of the multi-commodity transportation
problem is proposed to be used in the simulation framework to facilitate the matching of suppliers and
consumers of commodities. Modeling of recycling scenarios is achieved through a proposed approxima-
tion linear programming formulation with domain-specific constraints, allowing separated material to
be matched to multiple target fuel requests. The combination of the market resolution mechanism with
an automated recipe matching algorithm placed in the framework of the Cyclus simulation provides a
first-of-the-kind application of a dynamic, agent-based model of the nuclear fuel cycle.},
school = {University of Wisconsin},
author = {Gidden, Matthew J.},
month = sep,
year = {2013},
file = {prelim.pdf:/home/gidden/.mozilla/firefox/oyw9n8ps.default/zotero/storage/RA4AKFE7/prelim.pdf:application/pdf;presentation.pdf:/home/gidden/.mozilla/firefox/oyw9n8ps.default/zotero/storage/78PPAE6U/presentation.pdf:application/pdf}
}
@inproceedings{gidden_agent-based_2014,
address = {Kyoto, Japan},
title = {Agent-Based Dynamic Resource Exchange in {Cyclus}},
booktitle = {Proceedings of {PHYSOR}},
author = {Gidden, Matthew and Carlsen, R. and Opotowsky, A. and Rakhimov, O. and Scopatz, A. and Wilson, P.},
month = sep,
year = {2014},
keywords = {submitted},
file = {paper.pdf:/home/gidden/.mozilla/firefox/oyw9n8ps.default/zotero/storage/3Z4FTJ6U/Gidden et al. - 2014 - Agent-Based Dynamic Resource Exchange in Cyclus.pdf:application/pdf;pres.pdf:/home/gidden/.mozilla/firefox/oyw9n8ps.default/zotero/storage/VC6NAGGM/main.pdf:application/pdf}
}
@techreport{guerin_impact_2009,
address = {Cambridge, {MA}, United States},
type = {Technical Report},
title = {Impact of Alternative Nuclear Fuel Cycle Options on Infrastructure and Fuel Requirements, Actinide and Waste Inventories, and Economics},
number = {{MIT-NFC-TR-111}},
institution = {{MIT} Center for Advanced Nuclear Energy Systems ({CANES)}},
author = {Guerin, L. and Kazimi, M.},
month = sep,
year = {2009},
file = {cafca.pdf:/home/gidden/.zotero/zotero/c080cdlf.default/zotero/storage/4CPD7KTB/cafca.pdf:application/pdf}
}
@article{andrianova_desae_2008,
title = {Desae program for systems studies of long-term growth of nuclear power},
volume = {105},
number = {6},
urldate = {2013-02-20},
journal = {Atomic energy},
author = {Andrianova, E. A. and Davidenko, V. D. and Tsibul'skii, V. F.},
year = {2008},
pages = {385-390},
file = {2237069.pdf:/home/gidden/.zotero/zotero/c080cdlf.default/zotero/storage/QTKH7DM9/2237069.pdf:application/pdf}
}
@article{schneider_nfcsim:_2005,
title = {{NFCSim}: A Dynamic Fuel Burnup and Fuel Cycle Simulation Tool},
volume = {151},
number = {1},
journal = {Nuclear Technology},
author = {Schneider, Erich A. and Bathke, Charles G. and James, Michael R.},
month = jul,
year = {2005},
keywords = {Fuel Cycle, Reactivity Modeling, Simulation},
pages = {35--50},
file = {NT-151-1-35-Schneider, et al.pdf:/Users/khuff/Library/Application Support/Zotero/Profiles/yvcdiih0.default/zotero/storage/6PQV8DQ3/NT-151-1-35-Schneider, et al.pdf:application/pdf}
}
@inproceedings{holmgren_agent_2007,
title = {An agent based simulator for production and transportation of products},
urldate = {2013-01-22},
booktitle = {The 11th World Conference on Transport Research, Berkeley, {USA}},
author = {Holmgren, J. and Davidsson, P. and Persson, J. A. and Ramstedt, L.},
year = {2007},
pages = {8-12},
file = {WCTR07_HolmgrenEtAl.pdf:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/GG39CBMH/WCTR07_HolmgrenEtAl.pdf:application/pdf}
}
@article{swaminathan_modeling_1998,
title = {Modeling Supply Chain Dynamics: A Multiagent Approach},
volume = {29},
number = {3},
urldate = {2013-01-14},
journal = {Decision Sciences},
author = {Swaminathan, J. and Smith, S. and Sadeh, N},
month = jul,
year = {1998},
pages = {607--632},
file = {Modeling Supply Chain Dynamics: A Multiagent Approach - Swaminathan - 2007 - Decision Sciences - Wiley Online Library:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/HWQCKZTX/abstract.html:text/html}
}
@article{van_der_zee_modeling_2005,
title = {A modeling framework for supply chain simulation: Opportunities for improved decision making},
volume = {36},
shorttitle = {A modeling framework for supply chain simulation},
number = {1},
urldate = {2013-01-14},
journal = {Decision Sciences},
author = {Van der Zee, D. J. and Van der Vorst, J.},
year = {2005},
pages = {65-95},
file = {j.1540-5915.2005.00066.x.pdf:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/3SXJM52B/j.1540-5915.2005.00066.x.pdf:application/pdf}
}
@article{chatfield_multi-formalism_2007,
title = {A multi-formalism architecture for agent-based, order-centric supply chain simulation},
volume = {15},
number = {2},
urldate = {2013-01-14},
journal = {Simulation Modelling Practice and Theory},
author = {Chatfield, D. C. and Hayya, J. C. and Harrison, T. P.},
year = {2007},
pages = {153-174},
file = {science.pdf:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/MBZCXHIP/science.pdf:application/pdf}
}
@article{nagurney_supply_2002,
title = "A supply chain network equilibrium model",
journal = "Transportation Research Part E: Logistics and Transportation Review",
volume = "38",
number = "5",
pages = "281 - 303",
year = "2002",
note = "",
issn = "1366-5545",
doi = "10.1016/S1366-5545(01)00020-5",
author = "Anna Nagurney and June Dong and Ding Zhang",
keywords = "Supply chains",
keywords = "Networks",
keywords = "Equilibrium",
keywords = "Variational inequalities",
keywords = "Decentralized decision-making"
}
@ARTICLE{song_nash_2002,
author={Song, H. and Chen-Ching Liu and Lawarree, J.},
journal={Power Systems, IEEE Transactions on}, title={Nash equilibrium bidding strategies in a bilateral electricity market},
year={2002},
volume={17},
number={1},
pages={73-79},
keywords={electricity supply industry;game theory;power system economics;Nash equilibrium bidding strategy;bilateral electricity market;deregulation;game theory;generating companies;generic generating cost matrix;loads' willingness to pay vector;network optimization techniques;optimal assignment problem;power system economics;Contracts;Costs;Electricity supply industry;Electricity supply industry deregulation;Environmental economics;Game theory;Nash equilibrium;Power generation;Power generation economics;Sufficient conditions},
doi={10.1109/59.982195},
ISSN={0885-8950},}
@ARTICLE{mazumdar_fairness_1991,
author={Mazumdar, R. and Mason, L.G. and Douligeris, C.},
journal={Communications, IEEE Transactions on},
title={Fairness in network optimal flow control: optimality of product forms},
year={1991},
volume={39},
number={5},
pages={775-782},
keywords={game theory;optimisation;telecommunication networks;telecommunications control;Jackson network;Nash arbitration point;constrained optimization problem;convexity properties;delay constrained traffic;fairness;game theory;multiclass telecommunications;network optimal flow control;network optimization criterion;optimal operation point;pareto optimal;product forms;user performance objectives;user powers;user throughputs;Communication system traffic control;Constraint optimization;Degradation;Delay;Game theory;Intelligent networks;Optimal control;Telecommunication control;Telecommunication traffic;Throughput},
doi={10.1109/26.87140},
ISSN={0090-6778},}
@article{strotz_cardinal_1953,
title = {Cardinal utility},
urldate = {2013-01-23},
journal = {The American Economic Review},
author = {Strotz, R. H.},
year = {1953},
pages = {384-397},
file = {1831501.pdf:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/9NPW5ZFC/1831501.pdf:application/pdf}
}
@inproceedings{boucher_cosi:_2006,
address = {Miami, {FL}, United States},
title = {{"COSI":} The Complete Renewal of the Simulation Software for The Fuel Cycle Analysis},
volume = {1},
booktitle = {Fuel Cycle and High Level Waste Management},
author = {Boucher, L. and Grouiller, J. P},
publisher = {{ASME}, New York, {NY}, {USA}},
month = jul,
year = {2006},
annote = {This paper describes a use case for the updated code. The {ICONE13} paper supposedly describes the actual code structure.},
file = {cosi.pdf:/home/gidden/.zotero/zotero/c080cdlf.default/zotero/storage/Q5E7Q2SG/cosi.pdf:application/pdf}
},
@techreport{shropshire_advanced_2009,
title = {Advanced Fuel Cycle Cost Basis},
abstract = {This report, commissioned by the {U.S.} Department of Energy ({DOE)}, provides a comprehensive set of cost data supporting a cost analysis for the relative economic comparison of options for use in the Advanced Fuel Cycle Initiative ({AFCI)} Program. The report describes the {AFCI} cost basis development process, reference information on {AFCI} cost modules, a procedure for estimating fuel cycle costs, economic evaluation guidelines, and a discussion on the integration of cost data into economic computer models. This report contains reference cost data for 26 cost modules—24 fuel cycle cost modules and 2 reactor modules. The cost modules were developed in the areas of natural uranium mining and milling, conversion, enrichment, depleted uranium disposition, fuel fabrication, interim spent fuel storage, reprocessing, waste conditioning, spent nuclear fuel ({SNF)} packaging, long-term monitored retrievable storage, near surface disposal of low-level waste ({LLW)}, geologic repository and other disposal concepts, and transportation processes for nuclear fuel, {LLW}, {SNF}, and high-level waste.},
language = {English},
urldate = {2010-03-15},
author = {Shropshire, D. E. and Williams, K. A. and Boore, W. B. and Smith, J. D. and Dixon, B. W. and Dunzik-Gougar, M. and Adams, R. D. and Gombert, D.},
month = aug,
year = {2009},
keywords = {Advanced Fuel Cycle Initiative ({AFCI)} Program, High Level Radioactive Waste ({HLW)}, Low-Level Waste ({LLW)}, Spent Nuclear Fuel ({SNF)}, Uranium Mining \& Milling, {U.S.} Dept of Energy ({DOE)}},
annote = {Gives and evaluates an expression for levelized fuel cycle cost with {VISION.}
Part of this expression was used in {TAE's} thesis.
},
file = {AdvancedFuelCycleCostBasisINL:/home/gidden/.zotero/zotero/c080cdlf.default/zotero/storage/PKW7WXVT/AdvancedFuelCycleCostBasisINL:application/pdf}
}
@book{Law:1999:SMA:554952,
author = {Law, Averill M. and Kelton, David M.},
title = {Simulation Modeling and Analysis},
year = {1999},
isbn = {0070592926},
edition = {3rd},
publisher = {McGraw-Hill Higher Education},
}
@phdthesis{oliver_geniusv2:_2009,
title = {GENIUSV2: Software Design and Mathematical Formulations for Multi-Region Discrete Nuclear Fuel Cycle Simulation and Analysis},
urldate = {2012-11-25},
school = {University of Wisconsin-Madison},
author = {Oliver, Kyle M.},
year = {2009},
file = {thesis_KMO.pdf:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/GED9HPK8/thesis_KMO.pdf:application/pdf}
}
@article{yacout_vision_2006,
title={VISION--Verifiable Fuel Cycle Simulation of Nuclear Fuel Cycle Dynamics},
author={Yacout, AM and Jacobson, JJ and Matthern, GE and Piet, SJ and Shropshire, DE and Laws, CT},
journal={Waste Management},
year={2006}
}
@article{schweitzer_improved_2008,
title = {Improved Building Methodology and Analysis of Delay Scenarios of Advanced Nuclear Fuel Cycles with the Verifiable Fuel Cycle Simulation Model ({VISION)}},
url = {http://repository.lib.ncsu.edu/ir/handle/1840.16/123},
urldate = {2013-02-18},
author = {Schweitzer, Tyler Martin},
year = {2008},
file = {sweitzer.pdf:/home/gidden/.zotero/zotero/c080cdlf.default/zotero/storage/WHSFBIUU/sweitzer.pdf:application/pdf}
},
@techreport{busquim_e_silva_system_2008,
address = {Cambridge, {MA}, United States},
title = {A System Dynamics Study of the Nuclear Fuel Cycle with Recycling: Options and Outcomes for the {US} and Brazil},
number = {{MIT-NFC-TR-103}},
institution = {{MIT} Center for Advanced Nuclear Energy Systems ({CANES)}},
author = {Busquim e Silva, R. and Kazimi, {M.S.} and Hejzlar, P.},
month = nov,
year = {2008},
keywords = {Actinide Burner Reactors ({ABR)}, Combined Non-Fertile and {UO2} Fuel ({CONFU)}, Electricity, Enrichment, Fuel Cycle, Gas-Cooled Fast Reactor ({GFR)}, Light Water Reactors ({LWR)}, Radioactive, Reactors, Reprocessing, Spent Fuel, Transuranics ({TRU)}, Uranium},
pages = {199},
file = {MIT-NFC-TR-103 2.pdf:/home/gidden/.zotero/zotero/c080cdlf.default/zotero/storage/WJD93ESZ/MIT-NFC-TR-103 2.pdf:application/pdf}
}
@inproceedings{van_den_durpel_daness_2009,
address = {Paris, France},
title = {{DANESS} V4.2: Overview of Capabilities and Developments},
booktitle = {Proceedings of Global 2009},
author = {Van Den Durpel and Yacout, A. and Wade, D. and Taiwo, T. and Lauferts, U.},
month = sep,
year = {2009},
file = {381_9501.pdf:/home/gidden/.zotero/zotero/c080cdlf.default/zotero/storage/6FEPDQQH/381_9501.pdf:application/pdf}
}
@article{mouginot2012class,
title={CLASS, a new tool for nuclear scenarios: Description \& First Application},
author={Mouginot, B and Clavel, JB and Thiolliere, N},
journal={World Academy of Science, Engineering and Technology, International Journal of Mathematical, Computational, Physical, Electrical and Computer Engineering},
volume={6},
number={3},
pages={232--235},
year={2012},
publisher={Citeseer}
}
@article{forrester1971counterintuitive,
title={Counterintuitive behavior of social systems},
author={Forrester, Jay W},
journal={Theory and Decision},
volume={2},
number={2},
pages={109--140},
year={1971},
publisher={Springer}
}
@inproceedings{durpel_daness_2003,
address = {New Orleans, {LA}, United States},
title = {Daness dynamic analysis of nuclear system strategies},
isbn = {0894486772},
abstract = {The dynamic analysis of multiple development paths for nuclear energy systems has gained interest worldwide. Especially in the light of the different roadmap exercises that have been undertaken in the past years indicating the need for symbiotic nuclear energy systems in the longer term. The symbiosis between different nuclear reactor types and their associated fuel cycle should fulfill competing objectives for such systems, i.e., economics, environmental friendliness, resource longevity, waste management, and non-proliferation. A new code, dubbed {DANESS}, has been developed which allows performing such dynamic analysis of nuclear energy systems composed of multiple reactors and fuel cycle options including cross-flow of fissile material between the different components of the system. Today, the code allows mass-flow analysis and economics and is currently being extended to include life-cycle analysis data, non-proliferation metrics and non-nuclear energy sources. This paper will describe the main features of this code and will indicate the possible uses and future developments.},
booktitle = {Global 2003: Atoms for Prosperity: Updating Eisenhouwer's Global Vision for Nuclear Energy},
publisher = {American Nuclear Society},
author = {Durpel, L. Van Den and Yacout, A. and Wade, D. and Khalil, H.},
month = nov,
year = {2003},
keywords = {Data, Development, Energy, Environmental Impact, Fast, Fuels, Light Water Reactors ({LWR)}, Management, Nuclear, Reduction, Research, Technology, Transfer, Waste},
pages = {1613--1620},
file = {1613.pdf:/filespace/people/g/gidden/.zotero/zotero/r4cvjg0j.default/zotero/storage/XICUVZZH/1613.pdf:application/pdf}
}
@article{forrestcbc,
title={Cbc (coin-or branch and cut) open-source mixed integer programming solver, 2012},
author={Forrest, John},
journal={URL https://projects. coin-or. org/Cbc}
}
@inproceedings{even1975complexity,
title={On the complexity of time table and multi-commodity flow problems},
author={Even, Shimon and Itai, Alon and Shamir, Adi},
booktitle={Foundations of Computer Science, 1975., 16th Annual Symposium on},
pages={184--193},
year={1975},
organization={IEEE}
}
@misc{wnarussia2016,
title = {{World Nuclear Association: Russia's Nuclear Fuel Cycle}},
howpublished = {\url{http://www.world-nuclear.org/information-library/country-profiles/countries-o-s/russia-nuclear-fuel-cycle.aspx}},
note = {Accessed: 2016-06-05}
}
@misc{gidden_dre_2016,
author = {Matthew Gidden and Paul Wilson},
title = {{GitHub} repository: dre-paper},
year = {2016},
publisher = {GitHub},
howpublished = {\url{https://github.com/cyclus/dre-paper}},
commit = {7b636a6344089713ed72dc033ba93a7ab71024b6}
}
@article{carlsen_fleet_2016,
title={Challenging Fuel Cycle Modeling Assumptions: Facility and Time Step Discretization Effects},
author={Robert W. Carlsen and Paul P.H. Wilson},
journal={Nuclear Technology},
year={2016},
month = {September},
volume = {195},
number = {3},
url = {dx.doi.org/10.13182/NT15-138},
language={English}
}
@article{brown2016identification,
title={Identification of fuel cycle simulator functionalities for analysis of transition to a new fuel cycle},
author={Brown, Nicholas R and Carlsen, Brett W and Dixon, Brent W and Feng, Bo and Greenberg, Harris R and Hays, Ross D and Passerini, Stefano and Todosow, Michael and Worrall, Andrew},
journal={Annals of Nuclear Energy},
volume={96},
pages={88--95},
year={2016},
publisher={Elsevier}
}
@article{worrall_scenario_2007,
title = {Scenario {Analyses} of {Future} {UK} {Fuel} {Cycle} {Options}},
volume = {44},
issn = {0022-3131},
url = {http://www.tandfonline.com/doi/abs/10.1080/18811248.2007.9711279},
doi = {10.1080/18811248.2007.9711279},
abstract = {As an international nuclear company and one which is involved throughout the nuclear fuel cycle, a complete (holistic) understanding of the technicalities and economics of a range of nuclear fuel cycles is an important part of Nexia Solutions' business. To this end, Nexia Solutions has developed the capability to model and assess a range of reactor systems and fuel cycles using both “off the shelf” as well as bespoke software, including tools developed in-house. This paper presents a range of potential United Kingdom (UK) specific nuclear fuel cycle options for current, near, medium and long-term deployment that have been evaluated using these analysis tools and capabilities. These fuel cycles illustrate how the UK could utilize the plutonium stockpile and highlights some of the key issues for UK new nuclear build scenarios in the near, medium and long term.},
number = {3},
urldate = {2015-01-09},
journal = {Journal of Nuclear Science and Technology},
author = {Worrall, Andrew and Gregg, Robert},
month = mar,
year = {2007},
pages = {249--256},
file = {Full Text PDF:/Users/khuff/Library/Application Support/Zotero/Profiles/j0wwsb33.default/zotero/storage/VFGPIUJZ/WORRALL and GREGG - 2007 - Scenario Analyses of Future UK Fuel Cycle Options.pdf:application/pdf;Snapshot:/Users/khuff/Library/Application Support/Zotero/Profiles/j0wwsb33.default/zotero/storage/26UWTQ8I/18811248.2007.html:text/html;Snapshot:/Users/khuff/Library/Application Support/Zotero/Profiles/j0wwsb33.default/zotero/storage/Q6HDC6JI/login.html:text/html}
}
@article{Huff201646,
title = "Fundamental concepts in the Cyclus nuclear fuel cycle simulation framework ",
journal = "Advances in Engineering Software ",
volume = "94",
number = "",
pages = "46 - 59",
year = "2016",
note = "",
issn = "0965-9978",
doi = "http://dx.doi.org/10.1016/j.advengsoft.2016.01.014",
url = "http://www.sciencedirect.com/science/article/pii/S0965997816300229",
author = "Kathryn D. Huff and Matthew J. Gidden and Robert W. Carlsen and Robert R. Flanagan and Meghan B. McGarry and Arrielle C. Opotowsky and Erich A. Schneider and Anthony M. Scopatz and Paul P.H. Wilson",
keywords = "Nuclear fuel cycle",
keywords = "Simulation",
keywords = "Agent based modeling",
keywords = "Nuclear engineering",
keywords = "Object orientation",
keywords = "Systems analysis "
}