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词条 APOPT
释义

  1. See also

  2. References

  3. External links

{{Infobox Software
| name = APOPT
| developer = {{URL|apopt.com|Advanced Process Solutions, LLC}}
| latest_release_version = 1.0.4
| latest_release_date = {{Start date and age|2016|08|01}}
| operating_system = {{URL|apopt.com/developers.php|Cross-Platform}}
| genre = Technical computing
| license = Proprietary
| website = {{URL|apopt.com}}
}}

APOPT (for Advanced Process OPTimizer) is a software package for solving large-scale optimization problems of any of these forms:

  • Linear programming (LP)
  • Quadratic programming (QP)
  • Quadratically constrained quadratic program (QCQP)
  • Nonlinear programming (NLP)
  • Mixed integer programming (MIP)
  • Mixed integer linear programming (MILP)
  • Mixed integer nonlinear programming (MINLP)

Applications of the APOPT include chemical reactors,[1][2]

friction stir welding,[3] prevention of hydrate formation in deep-sea pipelines,[4][5] computational biology,[6] solid oxide fuel cells,[7][8] and flight controls for Unmanned Aerial Vehicles (UAVs).[9]

See also

  • APOPT is supported in AMPL, APMonitor, Gekko, Julia, MATLAB, Pyomo, and Python.

References

1. ^{{ cite patent | country = WO | number = 2012005740 | status = patent | title = Method for Controlling Bubble Formation in Polymerization Reactors | pubdate = 2012-01-12 | inventor = Lawson, K. W., Hedengren, J. D., Smith, L. C.}}
2. ^{{cite journal | last=Spivey | first=B. | title=Constrained Nonlinear Estimation for Industrial Process Fouling | journal=Industrial & Engineering Chemistry Research | volume=49 | issue=17 | pages=7824–7831 | year=2010 | doi=10.1021/ie9018116}}
3. ^{{cite thesis |degree=M.Sc. |first=Isak |last=Nielsen |title=Modeling and Control of Friction Stir Welding in 5 cm thick Copper Canisters |publisher=Linköping University |year=2012 |url=http://liu.diva-portal.org/smash/record.jsf?pid=diva2:535544&rvn=4}}
4. ^{{cite journal | last=Brower | first=D. | title=Fiber Optic Monitoring of Subsea Equipment | journal=OMAE 2012 Proceedings, Rio de Janeiro, Brazil | year=2012 | url=http://apm.byu.edu/prism/uploads/Members/hedengren_omae2012.pdf}}
5. ^{{cite journal | last=Brower | first=D. | title=Advanced Deepwater Monitoring System | journal=OMAE 2013 Proceedings, Nantes, France | year=2013 | url=http://apm.byu.edu/prism/uploads/Members/hedengren_omae2013.pdf}}
6. ^{{cite journal | last=Abbott | first=C. | title=New Capabilities for Large-Scale Models in Computational Biology | journal=AIChE Annual Meeting Proceedings, Pittsburgh, PA | year=2012 | url=http://apm.byu.edu/prism/uploads/Members/abbott_aiche12.pdf}}
7. ^{{cite journal | last=Spivey | first=B. | title=Dynamic Modeling of Reliability Constraints in Solid Oxide Fuel Cells and Implications for Advanced Control | journal=AIChE Annual Meeting Proceedings, Salt Lake City, Utah | year=2010 | url=http://apm.byu.edu/prism/uploads/Members/spivey_ppt_acc2012.pdf}}
8. ^{{cite journal | last=Jacobsen | first=L. | title=Model Predictive Control with a Rigorous Model of a Solid Oxide Fuel Cell | journal=American Control Conference (ACC), Washington, DC | year=2013 | url=http://apm.byu.edu/prism/uploads/Members/powell_acc2013.pdf}}
9. ^{{cite journal | last=Sun | first=L. | title=Optimal Trajectory Generation using Model Predictive Control for Aerially Towed Cable Systems | journal=Journal of Guidance, Control, and Dynamics | year=2013 | url=http://apm.byu.edu/prism/uploads/Members/sun_2013.pdf}}

External links

  • {{Official website|apopt.com}}
  • Web interface to solve optimization problems with the APOPT solver
  • Download APOPT for AMPL, MATLAB, Julia, Python, or APMonitor
{{Mathematical optimization software}}{{DEFAULTSORT:Apopt}}

2 : Numerical software|Mathematical optimization software

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