| Model
| Description
| Type
| Author
|
| agreste |
Agricultural Farm Level Model of NE Brazil |
LP |
Kutcher, G P |
| chance |
Chance Constrained Feed Mix Problem |
NLP |
Bracken, J |
| china |
Organic Fertilizer Use in Intensive Farming |
LP |
Wiens, T B |
| demo1 |
Simple Farm Level Model |
LP |
Kutcher, G P |
| demo7 |
Nonlinear Simple Agricultural Sector Model |
NLP |
Kutcher, G P |
| egypt |
Egypt Agricultural Model |
LP |
Kutcher, G P |
| indus |
Indus Agricultural Model |
LP |
Duloy, J H |
| indus89 |
Indus Basin Water Resource Model |
LP |
Ahmad, M |
| iswnm |
Indus Surface Water Network Submodule |
LP |
Duloy, J H |
| nebrazil |
North-East Brazil Regional Agricultural Model |
LP |
Kutcher, G P |
| paklive |
Pakistan Punjab Livestock Model |
LP |
World Bank |
| qdemo7 |
Nonlinear Simple Agricultural Sector Model QCP |
QCP |
Kutcher, G P |
| sarf |
Farm Credit and Income Distribution Model |
LP |
Husain, T |
| turkey |
Turkey Agricultural Model with Risk |
NLP |
Le-Si, V |
| Model
| Description
| Type
| Author
|
| cafemge |
Corporate average fuel economy standards |
MPSGE |
Thorpe, S |
| camcge |
Cameroon General Equilibrium Model Using NLP |
NLP |
Condon, T |
| camcns |
Cameroon General Equilibrium Model Using CNS |
CNS |
Condon, T |
| cammcp |
Cameroon General Equilibrium Model Using MCP |
MCP |
Condon, T |
| cammge |
Cameroon General Equilibrium Model Using MPSGE |
MPSGE |
Condon, T |
| cirimge |
Increasing returns in intermediate inputs |
MPSGE |
Lopez de Silanes, F |
| decomphh |
A Successive Recalibration Algorithm for GE Models with Many Households |
MPSGE |
Rutherford, T F |
| ers82mcp |
USDA-ERS CGE Model of the US |
MCP |
Robinson, S |
| finmge |
A General Equilibrium Model for Finland |
MPSGE |
Torma, H |
| gancns |
Macro-Economic Framework for India - CNS |
CNS |
Mitra, P |
| gancnsx |
Macro-Economic Framework for India - Tracking CNS |
CNS |
Mitra, P |
| ganges |
Macroeconomic Framework for India |
NLP |
Mitra, P |
| gangesx |
Economic Framework for India - Tracking |
NLP |
Mitra, P |
| gemmcp |
GEMTAP: A general equilibrium model for tax policy |
MCP |
Rutherford, T F |
| gemmge |
GEMTAP: A general equilibrium model for tax policy |
MPSGE |
Balard, C L |
| hansmcp |
Hansen's Activity Analysis Example - MCP |
MCP |
Scarf, H |
| hansmge |
Hansen's Activity Analysis Example - MPSGE |
MPSGE |
Scarf, H |
| harmge |
Increasing returns with average cost pricing |
MPSGE |
Kamiya, K |
| hhmax |
A Household Maximization Problem |
NLP |
Hosoe, N |
| irscge |
A CGE Model with Scale Economy |
NLP |
Hosoe, N |
| kehomge |
Multiple equilibria in a simple GE model |
MPSGE |
Kehoe, T |
| korcge |
General Equilibrium Model for Korea - NLP |
NLP |
Lewis, J |
| korcns |
General Equilibrium Model for Korea - CNS |
CNS |
Lewis, J |
| kormcp |
General Equilibrium Model for Korea - MCP |
MCP |
Lewis, J |
| lrgcge |
A Large Country CGE Model |
NLP |
Hosoe, N |
| moncge |
A Monopoly CGE Model |
NLP |
Hosoe, N |
| mr5mcp |
Multi-Region Growth Model Based on Global 2100 |
MCP |
Manne, A S |
| nash |
A non-cooperative game: Nash and Stackelberg versions |
MPEC |
Murphy, F H |
| oligomcp |
Oligopolistic Competition - Examples from MP |
MCP |
Harker, P T |
| quocge |
A CGE Model with Quotas |
NLP |
Hosoe, N |
| sammge |
Carbon taxes with exemptions for heavy industry |
MPSGE |
Boehringer, C |
| scarfmcp |
Scarf's Activity Analysis Example |
MCP |
Scarf, H |
| scarfmge |
Tax distortions in a small activity analysis model |
MPSGE |
Scarf, H |
| shovmge |
The economic effects of UK membership in the EC |
MPSGE |
Miller, M H |
| splcge |
A Simple CGE Model |
NLP |
Hosoe, N |
| stdcge |
A Standard CGE Model |
NLP |
Hosoe, N |
| threemge |
Three Approaches to Differential Tax Policy Analysis |
MPSGE |
Rutherford, T F |
| twocge |
A Two Country CGE Model |
NLP |
Hosoe, N |
| two3mcp |
Simple 2 x 2 x 2 General Equilibrium Model |
MCP |
Shoven, J |
| unstmge |
Globally Unstable Equilibria |
MPSGE |
Scarf, H |
| vonthmcp |
General Equilibrium Variant of the von Thunen Model |
MCP |
Rowse |
| vonthmge |
A General Equilibrium Version of the von Thunen Model |
MPSGE |
Mackinnon, J |
| Model
| Description
| Type
| Author
|
| alkyl |
Simplified Alkylation Process |
NLP |
Berna, T |
| batchdes |
Optimal Design for Chemical Batch Processing |
MINLP |
Kocis, G R |
| catmix |
Catalyst Mixing COPS 2.0 #14 |
NLP |
Dolan, E D |
| chem |
Chemical Equilibrium Problem |
NLP |
Bracken, J |
| csched |
Cyclic Scheduling of Continuous Parallel Units |
MINLP |
Jain, V |
| feedtray |
Optimum Feed Plate Location |
MINLP |
Viswanathan, J |
| gasoil |
Catalytic cracking of gas oil COPS 2.0 #12 |
NLP |
Ascher, U M |
| haverly |
Haverly's pooling problem example |
NLP |
Adhya, N |
| hda |
Synthesis: Hydrodealkylation of Toluene |
MINLP |
Kocis, G R |
| kport |
Product Portfolio Optimization |
MINLP |
Kallrath, J |
| methanol |
Methanol to hydrocarbons COPS 2.0 #13 |
NLP |
Ascher, U M |
| minlphi |
Heat Integrated Distillation Sequences |
NLP |
Floudas, C A |
| minlphix |
Heat Integrated Distillation Sequences |
MINLP |
Floudas, C A |
| nonsharp |
Synthesis of General Distillation Sequences |
MIP |
Aggarwal, A |
| nsharpx |
Synthesis of General Distillation Sequences |
MINLP |
Aggarwal, A |
| pinene |
Isometrization of alpha-pinene COPS 2.0 #5 |
NLP |
Ascher, U M |
| pool |
Pooling problem |
NLP |
Adhya, N |
| process |
Alkylation Process Optimization |
NLP |
Bracken, J |
| procsel |
Structural Optimization of Process Flowsheets |
MINLP |
Kocis, G R |
| reaction |
Logical Inference for Reaction path synthesis |
MIP |
Raman, R |
| synheat |
Simultaneous Optimization for Hen Synthesis |
MINLP |
Yee, T F |
| wall |
Chemical Equilibrium Problem |
NLP |
Wall, T W |
| wallmcp |
Chemical Equilibrium Problem as MCP |
MCP |
Wall, T W |
| Model
| Description
| Type
| Author
|
| etamac |
ETA-MACRO Energy Model for the USA |
NLP |
Manne, A S |
| etamge |
ETA-MACRO Energy Model for the USA - MPSGE Format |
MPSGE |
Manne, A S |
| gtm |
International Gas Trade Model |
NLP |
Manne, A S |
| korpet |
Investment Planning in the Korean Oil-Petro Industry |
MIP |
Suh, J S |
| launch |
Launch Vehicle Design and Costing |
NLP |
Bracken, J |
| markov |
Strategic Petroleum Reserve |
LP |
Teisberg, T J |
| otpop |
OPEC Trade and Production |
NLP |
Blitzer, C |
| pindyck |
Optimal Pricing and Extraction for OPEC |
NLP |
Pindyck, R S |
| pollut |
Industrial Pollution Control |
NLP |
Mangasarian, O L |
| shale |
Investment Planning in the Oil Shale Industry |
LP |
Melton, J W |
| srcpm |
Single-Region Contingency Planning Model |
NLP |
Manne, A S |
| tabora |
Tabora Rural Development - Fuelwood Production |
LP |
World Bank |
| turkpow |
Turkey Power Planning Model |
LP |
Turvey, R |
| Model
| Description
| Type
| Author
|
| bearing |
Hydrostatic Thrust Bearing Design for a Turbogenerator |
NLP |
Coello Coello, C A |
| camshape |
Shape optimization of a cam COPS 2.0 #4 |
NLP |
Anitescu, M |
| chain |
Hanging Chain COPS 2.0 #3 |
NLP |
Cesari, L |
| dispatch |
Economic Load Dispatch Including Transmission Losses |
NLP |
Wood, A J |
| elec |
Distribution of electrons on a sphere COPS 2.0 #2 |
NLP |
Dolan, E D |
| flowchan |
Flow in a channel COPS 2.0 #7 |
NLP |
Ascher, U M |
| fuel |
Fuel Scheduling and Unit Commitment Problem |
MINLP |
Wood, A J |
| gasnet |
Optimal Design of a Gas Transmission Network |
MINLP |
Edgar, T F |
| gastrans |
Gas Transmission Problem - Belgium |
MINLP |
de Wolf, D |
| gear |
Gear Train Design |
MINLP |
Deb, K |
| glider |
Hang glider COPS 2.0 #11 |
NLP |
Bulirsch, R |
| herves |
Herves (Transposable Element) Activity Calculations |
DNLP |
Meeraus, W H |
| hydro |
Hydrothermal Scheduling Problem |
NLP |
Wood, A J |
| jbearing |
Journal bearing COPS 2.0 #16 |
NLP |
Averick, B M |
| lnts |
Particle steering COPS 2.0 #9 |
NLP |
Betts, J |
| minsurf |
Minimal surface with obstacle COPS 2.0 #17 |
NLP |
Dolan, E D |
| pump |
Pump Network Synthesis |
MINLP |
Floudas, C A |
| robot |
Robot arm COPS 2.0 #8 |
NLP |
Dolan, E D |
| rocket |
Goddard rocket COPS 2.0 #10 |
NLP |
Bryson, A E |
| ship |
Structural Optimization |
NLP |
Bracken, J |
| spring |
Coil Compression String Design |
MINLP |
Sandgren, E |
| torsion |
Elastic-plastic torsion COPS 2.0 #15 |
NLP |
Averick, B M |
| trimloss |
Trim Loss Minimization |
MINLP |
Floudas, C A |
| water |
Design of a Water Distribution Network |
DNLP |
Brooke, A |
| waterx |
Design of a Water Distribution Network (MINLP) |
MINLP |
Brooke, A |
| windfac |
Winding Factor of Electrical Machines |
MINLP |
Michna, M |
| Model
| Description
| Type
| Author
|
| alan |
A Quadratic Programming Model for Portfolio Analysis |
MINLP |
Manne, A S |
| cmo |
Financial Optimization: Financial Engineering |
MIP |
Dahl, H |
| immun |
Financial Optimization: Risk Management |
NLP |
Dahl, H |
| meanvar |
Financial Optimization: Risk Management |
NLP |
Dahl, H |
| meanvarx |
Financial Optimization: Risk Management |
MINLP |
Dahl, H |
| port |
Simple Portfolio Model |
LP |
CDC |
| qalan |
A Quadratic Programming Model for Portfolio Analysis QCP |
MIQCP |
Manne, A S |
| qcp1 |
Standard QP Model QCP |
QCP |
Kalvelagen, E |
| qmeanvar |
Financial Optimization: Risk Management using MIQCP |
MIQCP |
Dahl, H |
| qmeanvag |
Portfolio Modeling with Parallel Solutions |
MIQCP |
Dahl, H |
| qp1 |
Standard QP Model |
NLP |
Kalvelagen, E |
| qp1x |
Standard QP Model with GDX data input |
NLP |
Kalvelagen, E |
| qp2 |
Standard QP Model - symmetry exploitations |
NLP |
Kalvelagen, E |
| qp3 |
Standard QP Model - intermediate variables |
NLP |
Kalvelagen, E |
| qp4 |
Standard QP Model - no covariance matrix |
NLP |
Kalvelagen, E |
| qp5 |
Standard QP Model - linear approximation |
LP |
Kalvelagen, E |
| qp6 |
Standard QP Model - LCP formulation of QP4 |
MCP |
Kalvelagen, E |
| qp7 |
Standard QP Model - conic programming formulation |
LP |
Andersen, E |
| repay |
Repayment Factors for Loans |
GAMS |
GAMS Development Corporation |
| tba |
Financial Optimization: Financial Engineering |
MIP |
Dahl, H |
| worst |
Financial Optimization: Risk Management |
NLP |
Dahl, H |
| Model
| Description
| Type
| Author
|
| aircraft |
Aircraft Allocation Under Uncertain Demand |
LP |
Dantzig, G B |
| ajax |
Ajax Paper Company Production Schedule |
LP |
CDC |
| ampl |
AMPL Sample Problem |
LP |
Fourer, R |
| badmip |
Rounding Problems in MIPs |
MIP |
Neumaier, A |
| blend |
Blending Problem I |
LP |
Dantzig, G B |
| csp |
Closest String Problem |
MIP |
Meneses, C N |
| cta |
Controlled Tabular Adjustments |
MIP |
Cox, L H |
| cutstock |
Cutting Stock - A Column Generation Approach |
MIP |
Gilmore, P C |
| danwolfe |
Dantzig Wolfe Decomposition and Grid Computing |
LP |
Dantzig, G B |
| decomp |
Decomposition Principle - Animated |
LP |
Dantzig, G B |
| dicegrid |
MIP Decomposition and Parallel Grid Submission - DICE Example |
MIP |
Bosch, R A |
| emfl |
Existing Multi Facility Location Problem - Cone Format |
LP |
Vanderbei, R |
| fawley |
Platoform Example Refinery |
LP |
Palmer, K H |
| feasopt1 |
An Infeasible Transportation Problem analyzed with Cplex option FeasOpt |
LP |
Dantzig, G B |
| fiveleap |
The Five Leaper Tour Problem |
MIP |
Chlond, M J |
| gamsrep |
The GAMS Model Library |
GAMS |
GAMS Development Corporation |
| gapmin |
Lagrangian Relaxation of Assignment Problem |
MIP |
Guignard, M |
| harkmcp |
Models of Spatial Competition in MCP Form |
MCP |
Harker, P T |
| ibm1 |
Aluminum Alloy Smelter Sample Problem |
LP |
IBM |
| jit |
Design of Just-in-Time Flowshops |
MINLP |
Gunasekaran, A |
| jobt |
On-the-Job Training |
LP |
Dantzig, G B |
| lop |
Line Optimization |
MIP |
Bussieck, M R |
| lrs |
Linear Recursive Sequence Optimization Model |
MIP |
GAMS Development Corporation |
| magic |
Magic Power Scheduling Problem |
MIP |
Garver, L L |
| mine |
Opencast Mining |
LP |
Williams, H P |
| mpstrans |
MPS file for transportation problem |
GAMS |
Dantzig, G B |
| mrp2 |
Materials Requirement Planning (MRP) Formulations |
MIP |
Voss, S |
| mst |
Minimum Spanning Tree |
GAMS |
Hillier, F S |
| nemhaus |
Scheduling to Minimize Interaction Cost |
MIP |
Carlson, R C |
| openpit |
Dynamic open pit mining extraction |
MIP |
GAMS Development Corporation |
| paperco |
Vertically Integrated Company |
LP |
Thompson, G |
| pdi |
ARCNET - Production Distribution and Inventory |
LP |
ARCNET |
| prodmix |
A Production Mix Problem |
LP |
Dantzig, G B |
| prodsch |
APEX - Production Scheduling Model |
MIP |
CDC |
| prodschx |
Production Scheduling Model using SOS1 and SOS2 |
MIP |
CDC |
| queens |
Maximum Queens Chess Problem |
MIP |
Beauvais, J |
| railcirc |
Minimum Circulation of Railway Stock |
MIP |
Schrijver, A |
| robert |
Elementary Production and Inventory Model |
LP |
Fourer, R |
| rotdk |
Robust Optimization |
MIP |
Laguna, M |
| senstran |
Sensitivity analysis using LOOPS |
LP |
Dantzig, G B |
| solnpool |
Cplex Solution Pool for a Simple Facility Location Problem |
MIP |
ILOG |
| sparta |
Military Manpower Planning from Wagner |
LP |
Wagner, H M |
| sroute |
The Shortest Route Problem |
LP |
Dantzig, G B |
| sroutex |
Shortest Route Algorithm |
GAMS |
Dantzig, G B |
| stockcc |
Minimizing Total Average Cycle Stock |
MINLP |
Silver, E A |
| swath |
Mission Planning for Synthetic Aperture Radar Surveillance |
MIP |
Panton, D M |
| thai |
Thai Navy Problem |
MIP |
Choypeng, P |
| thaix |
Thai Navy Problem Extended |
MIP |
Choypeng, P |
| traffic |
Traffic Equilibrium Problem |
MCP |
Ferris, M C |
| transmcp |
Transportation Model as Equilibrium Problem |
MCP |
Dantzig, G B |
| trnsgrid |
Grid Transportation Problem |
LP |
Ferris, M C |
| trnsport |
A Transportation Problem |
LP |
Dantzig, G B |
| tvcsched |
Flow Formulation of the ISCI Rotator Problem |
MIP |
Bollapragada, S |
| uimp |
UIMP - Production Scheduling Problem |
LP |
Ellison, E F D |
| weapons |
Weapons Assignment |
NLP |
Bracken, J |
| whouse |
Simple Warehouse Problem |
LP |
Dantzig, G B |
| zloof |
Relational Database Example |
GAMS |
Zloof, M M |
| Model
| Description
| Type
| Author
|
| absmip |
Discontinous functions abs() min() max() sign() as MIPs |
MIP |
GAMS Development Corporation |
| circle |
Circle Enclosing Points - SNOPT Example |
NLP |
Gill, P E |
| crazy |
Examples of Extended Arithmetic |
GAMS |
GAMS Development Corporation |
| cube |
Three-Dimensional Noughts and Crosses |
MIP |
Williams, H P |
| dice |
Non-transitive Dice Design |
MIP |
Bosch, R A |
| dicex |
Non-transitive Dice Design - Enhanced |
MIP |
Bosch, R A |
| epscm |
eps-Constraint Method for Multiobjective Optimization |
LP |
Mavrotas, G |
| fct |
LGO Interface Example |
DNLP |
Pinter, J D |
| gauss |
Matrix Inversion with Full Pivoting |
GAMS |
GAMS Development Corporation |
| great |
Great Circle Distances |
GAMS |
Brooke, A |
| himmel11 |
Himmelblau Test Problem Number 11 |
NLP |
Himmelblau, D M |
| himmel16 |
Area of Hexagon Test Problem |
NLP |
Himmelblau, D M |
| house |
House Plan Design |
NLP |
Borland |
| hs62 |
Hock - Schittkowski Problem 62 |
NLP |
Hock, W |
| icut |
Integer Cut Example |
MIP |
GAMS Development Corporation |
| imsl |
Piecewise Linear Approximation |
LP |
IMSL Inc |
| jacobi |
Asynchronous Jacobi Methods |
MCP |
Bertsekas, D P |
| knights |
Maximum Knights Problem |
MIP |
Dudeney, H E |
| knp |
Kissing Number Problem using Variable Neighborhood Search |
NLP |
Liberti, L |
| latin |
The Orthogonal Latin-Square Problem |
MIP |
Dantzig, G B |
| lmp1 |
Linear Multiplicative Model - Type 1 |
NLP |
Konno, H |
| lmp2 |
Linear Multiplicative Model - Type 2 |
NLP |
Tawarmalani, M |
| lmp3 |
Linear Multiplicative Model - Type 3 |
NLP |
Benson, H P |
| mathopt1 |
MathOptimizer Example 1 |
NLP |
Mathematica |
| mathopt2 |
MathOptimizer Example 2 |
NLP |
Mathematica |
| mathopt3 |
MathOptimizer Example 3 |
NLP |
Mathematica |
| mathopt4 |
MathOptimizer Example 4 |
NLP |
Mathematica |
| mathopt5 |
MathOptimizer Example 5 |
DNLP |
Mathematica |
| mathopt6 |
MathOptimizer Example 6 |
DNLP |
Mathematica |
| maxmin |
Max Min Location of Points in Unit Square |
DNLP |
Pinter, J D |
| mhw4d |
Nonlinear Test Problem |
NLP |
Wright, M H |
| mhw4dx |
MHW4D with additional Tests |
NLP |
Wright, M H |
| mhw4dxx |
MHW4DX with multiple solutions |
NLP |
Wright, M H |
| pentium |
Pentium Error Test |
GAMS |
House, B |
| pivot |
Simple Gaussian Elimination |
GAMS |
GAMS Development Corporation |
| polygon |
Largest small polygon COPS 2.0 #1 |
NLP |
Dolan, E D |
| popdynm |
Marine population dynamics COPS 2.0 #6 |
NLP |
Dolan, E D |
| prime |
Prime Number Generation |
GAMS |
GAMS Development Corporation |
| qp6 |
Standard QP Model - LCP formulation of QP4 |
MCP |
Kalvelagen, E |
| rbrock |
Rosenbrock Test Function |
NLP |
Rosenbrock, H H |
| t1000 |
LGO Test t1000_10 |
NLP |
Pinter, J D |
| trig |
Simple Trigonometric Example |
NLP |
Pinter, J D |
| Model
| Description
| Type
| Author
|
| andean |
Andean Fertilizer Model |
MIP |
Mennes, L B M |
| bid |
Bid Evaluation |
MIP |
Bracken, J |
| bidsos |
Bid Evaluation with SOS2 Sets |
MIP |
Bracken, J |
| cesam |
Cross Entropy SAM Estimation |
MCP |
Golan, A |
| diet |
Stigler's Nutrition Model |
LP |
Dantzig, G B |
| fertd |
Egypt - Dynamic Fertilizer Model |
MIP |
Choksi, A M |
| ferts |
Egypt - Static Fertilizer Model |
LP |
Choksi, A M |
| harker |
Models of Spatial Competition |
NLP |
Harker, P T |
| marco |
Mini Oil Refining Model |
LP |
Aronofsky, J S |
| mexls |
Mexico Steel - Large Static |
LP |
Kendrick, D |
| mexsd |
Mexico Steel - Small Dynamic |
MIP |
Kendrick, D |
| mexss |
Mexico Steel - Small Static |
LP |
Kendrick, D |
| msm |
Morocco Fertilizer Distribution - Mode Selection |
LP |
Meeraus, A |
| phosdis |
Sea Distances for World Phosphate Model |
LP |
Meeraus, A |
| rdata |
Sample Database of the US Economy |
MIP |
Kendrick, D |
| vietman |
Vietoriscz Manne Fertilizer Model 1961 |
MIP |
Manne, A S |
| westmip |
Economies of Scale and Investment over Time |
MIP |
Chenery, H B |
| yemcem |
Yemen Cement Model |
MIP |
World Bank |
| Model
| Description
| Type
| Author
|
| alphamet |
Alphametics - a Mathematical Puzzle |
MIP |
de Wetering, A V |
| coex |
Peacefully Coexisting Armies of Queens |
MIP |
Bosch, R A |
| coexx |
Peacefully Coexisting Armies of Queens - tight |
MIP |
Bosch, R A |
| cross |
Alcuin's River Crossing |
MIP |
Borndoerfer, R |
| cube |
Three-Dimensional Noughts and Crosses |
MIP |
Williams, H P |
| dice |
Non-transitive Dice Design |
MIP |
Bosch, R A |
| dicex |
Non-transitive Dice Design - Enhanced |
MIP |
Bosch, R A |
| knights |
Maximum Knights Problem |
MIP |
Dudeney, H E |
| latin |
The Orthogonal Latin-Square Problem |
MIP |
Dantzig, G B |
| marilyn |
Numerical Puzzle |
MIP |
Savant, M |
| queens |
Maximum Queens Chess Problem |
MIP |
Beauvais, J |
| tsp1 |
Traveling Salesman Problem - One |
MIP |
Kalvelagen, E |
| tsp2 |
Traveling Salesman Problem - Two |
MIP |
Kalvelagen, E |
| tsp3 |
Traveling Salesman Problem - Three |
MIP |
Kalvelagen, E |
| tsp4 |
Traveling Salesman Problem - Four |
MIP |
Kalvelagen, E |
| tsp42 |
TSP solution with subtour elimination |
MIP |
Dantzig, G B |
| Model
| Description
| Type
| Author
|
| icut |
Integer Cut Example |
MIP |
GAMS Development Corporation |
| logmip1a |
LogMIP User's Manual Example 1a - Job Scheduling |
LOGMIP |
Raman, R |
| logmip1b |
LogMIP User's Manual Example 1b - Job Scheduling |
LOGMIP |
Raman, R |
| logmip1c |
LogMIP User's Manual Example 1c - Job Scheduling |
LOGMIP |
Raman, R |
| logmip2 |
LogMIP User's Manual Example 2 - Example to illustrate disjunctions |
LOGMIP |
Vecchietti, A |
| logmip3 |
LogMIP User's Manual Example 3 - Synthesis of 8 Processes |
LOGMIP |
Raman, R |
| logmip4 |
LogMIP User's Manual Example 4 - Job Shop Scheduling |
LOGMIP |
Raman, R |
| prodschx |
Production Scheduling Model using SOS1 and SOS2 |
MIP |
CDC |
| thaix |
Thai Navy Problem Extended |
MIP |
Choypeng, P |
| tsp1 |
Traveling Salesman Problem - One |
MIP |
Kalvelagen, E |
| tsp2 |
Traveling Salesman Problem - Two |
MIP |
Kalvelagen, E |
| tsp3 |
Traveling Salesman Problem - Three |
MIP |
Kalvelagen, E |
| tsp4 |
Traveling Salesman Problem - Four |
MIP |
Kalvelagen, E |
| Model
| Description
| Type
| Author
|
| calendar |
Calendar Function Examples |
GAMS |
GAMS Development Corporation |
| cefiles |
Compressed Input Files |
GAMS |
GAMS Development Corporation |
| chartdat |
Create an example GDX file for the IDE Charting facility |
GAMS |
GAMS Development Corporation |
| deploy |
GAMS Deployment Model |
GAMS |
GAMS Development Corporation |
| dplytest |
A Deployment Test Model |
GAMS |
GAMS Development Corporation |
| encrypt |
Input file encyption demo |
GAMS |
GAMS Development Corporation |
| gamsrep |
The GAMS Model Library |
GAMS |
GAMS Development Corporation |
| gamshtm |
HTML generation of model library |
GAMS |
GAMS Development Corporation |
| gamsutil |
Generates some useful files from the Model Library |
GAMS |
GAMS Development Corporation |
| gmstest |
Test sript for library models |
GAMS |
GAMS Development Corporation |
| gsolver |
Compare the actual system with the original solver database |
GAMS |
GAMS Development Corporation |
| holiday |
US Holiday and Leave Chart |
GAMS |
GAMS Development Corporation |
| jdate |
Julian date test |
GAMS |
GAMS Development Corporation |
| licememo |
License Memorandum |
GAMS |
GAMS Development Corporation |
| mpstrans |
MPS file for transportation problem |
GAMS |
Dantzig, G B |
| schulz |
Termination routine to ensure solvers stay with resource limit |
GAMS |
GAMS Development Corporation |
| slvtest |
Solver combination test |
GAMS |
GAMS Development Corporation |
| version1 |
How to test for a GAMS version |
GAMS |
GAMS Development Corporation |