Resource Times:

Date / Time: 08/24/07 21:45:32


See the solver return definitions for optimal/feasible model and solve statuses. Solutions are not checked for how close they are to eachother. Resource times are considered the same, if they are within 10% of eachother. A solver is considered faster than another, if it is less than 50% faster than the other. A solver is considered much faster than another, if it is more than 50% faster than the other.

If a model was not solved optimal/feasible by both solvers, the resource time is considered the same. If a model was solved optimal/feasible by solver A but not by solver B, then solver A is considered infinitely faster than solver B. Similarly, if one solver has trace data and the other has no data, then the first solver is consideredinfinitely faster.

A solver is considered to have a better objective function value, if the relative objective value difference is greater than 1.00E-05 For objective values below 1e-1 we use absolute differences.

Tracefile 1 :3-Bonmin-1.trc.convex
Tracefile 2 :6-SBB-1.trc.convex
Solvers used : BONMIN
SBB
Modeltype(s)   MINLP
Threshold: Solver Faster 10%
Threshold: Solver Much Faster 50%
Threshold: Solver Infinitely Faster Other solver failed


Total Obj BONMIN better Obj same Obj SBB better
Solver BONMIN infinitely faster :- - - -
Solver BONMIN much faster :- - - -
Solver BONMIN faster : 1 1 - -
Solvers perform the same : 15 - 14 1
Solver SBB faster : 7 2 5 -
Solver SBB much faster : 9 5 4 -
Solver SBB infinitely faster : 3 - - 3
Both solvers failed to solve optimally : 5 - 5 -
Total models: : 408284




Solver return definition:

OutcomeModel StatusSolver Status
globally optimal 1 or 15 1
locally optimal/feasible 2 or 8 or 16 1 or 2 or 3 or 4 or 5




Resource Times:

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Solver BONMIN faster - Obj of BONMIN better:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
m6128.1900196.77000.651 8.22568769E+01 1.29824936E+02

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Solvers perform the same - Obj same for both solvers:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
alan0.09000.0100--- 2.92500000E+00 2.92500000E+00
ex1223a0.02000.0100--- 4.57958240E+00 4.57958240E+00
gbd0.01000.0000--- 2.20000000E+00 2.20000000E+00
nvs030.01000.0200--- 1.60000000E+01 1.60000000E+01
nvs100.03000.0200--- -3.10800000E+02 -3.10800000E+02
st_miqp10.02000.0300--- 2.81000000E+02 2.81000000E+02
st_miqp30.01000.0000--- -6.00000000E+00 -6.00000000E+00
st_miqp40.04000.0000--- -4.57400000E+03 -4.57400000E+03
st_miqp50.02000.0000--- -3.33888889E+02 -3.33888889E+02
st_test50.00000.0600--- -1.10000000E+02 -1.10000000E+02
st_test60.01000.0900--- 4.71000000E+02 4.71000000E+02
st_testph40.01000.0200--- -8.05000000E+01 -8.05000000E+01
synthes10.13000.0300--- 6.00975891E+00 6.00975891E+00
synthes20.10000.0400--- 7.30353125E+01 7.30353125E+01

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Solvers perform the same - Obj of SBB better:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
st_test80.01000.0100--- -2.95750000E+04 -2.96050000E+04

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Solver SBB faster - Obj of BONMIN better:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
meanvarx0.16000.0200--- 1.43692321E+01 1.44969830E+01
risk2bpb0.78000.42001.857 -5.58761394E+01 -5.57361685E+01

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Solver SBB faster - Obj same for both solvers:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
du-opt531.490020.82001.512 8.07365758E+00 8.07365758E+00
ex1223b0.25000.0000--- 4.57958240E+00 4.57958240E+00
fac10.13000.0100--- 1.60912612E+08 1.60912612E+08
m30.46000.40001.150 3.78000000E+01 3.78000000E+01
st_e140.30000.0200--- 4.57958241E+00 4.57958240E+00

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Solver SBB much faster - Obj of BONMIN better:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
du-opt28.47001.740016.362 3.55634005E+00 3.56108965E+00
m7729.5100223.46003.265 1.06756877E+02 1.23964378E+02
risk2b0.94000.39002.410 -5.58761394E+01 -5.57361685E+01
st_testgr12.99000.0400--- -1.28116000E+01 -1.27281000E+01
st_testgr31.80000.060030.000 -2.05900000E+01 -2.04688000E+01

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Solver SBB much faster - Obj same for both solvers:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
batch0.88000.23003.826 2.85506508E+05 2.85506508E+05
ex12230.30000.06005.000 4.57958241E+00 4.57958240E+00
fac31.84000.29006.345 3.19823098E+07 3.19823098E+07
synthes30.45000.18002.500 6.80097405E+01 6.80097405E+01

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Solver SBB infinitely faster - Obj of SBB better:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
st_e35fail 0.0100 -- NA 1.17178934E+05
st_miqp2fail 0.0300 -- NA 2.00000000E+00
stockcyclefail 98.0100 -- 1.79191271E+05 1.43295165E+05

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Both solvers failed to solve optimally - Obj same for both solvers:

Modelname Time (BONMIN) Time (SBB) Ratio (BONMIN / SBB) Obj (BONMIN) Obj (SBB)
fo7fail fail -- 2.07298251E+01 0.00000000E+00
o7fail fail -- 1.34678221E+02 0.00000000E+00
tls12fail fail -- NA 0.00000000E+00
tls6fail fail -- 1.68000000E+01 0.00000000E+00
tls7fail fail -- 1.92000000E+01 0.00000000E+00

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