neos-3660371-kurow: Instance-to-Instance Comparison Results

Type: Instance
Submitter: Jeff Linderoth
Description: (None provided)
MIPLIB Entry

Parent Instance (neos-3660371-kurow)

All other instances below were be compared against this "query" instance.

neos-3660371-kurow Raw neos-3660371-kurow Decomposed neos-3660371-kurow Composite of MIC top 5 neos-3660371-kurow Composite of MIPLIB top 5 neos-3660371-kurow Model Group Composite
Raw This is the CCM image before the decomposition procedure has been applied.
Decomposed This is the CCM image after a decomposition procedure has been applied. This is the image used by the MIC's image-based comparisons for this query instance.
Composite of MIC Top 5 Composite of the five decomposed CCM images from the MIC Top 5.
Composite of MIPLIB Top 5 Composite of the five decomposed CCM images from the MIPLIB Top 5.
Model Group Composite Image Composite of the decomposed CCM images for every instance in the same model group as this query.

MIC Top 5 Instances

These are the 5 decomposed CCM images that are most similar to decomposed CCM image for the the query instance, according to the ISS metric.

Decomposed These decomposed images were created by GCG.
supportcase1 decomposed rmatr200-p10 decomposed rmatr200-p20 decomposed map14860-20 decomposed rmatr200-p5 decomposed
Name supportcase1 [MIPLIB] rmatr200-p10 [MIPLIB] rmatr200-p20 [MIPLIB] map14860-20 [MIPLIB] rmatr200-p5 [MIPLIB]
Rank / ISS The image-based structural similarity (ISS) metric measures the Euclidean distance between the image-based feature vectors for the query instance and all other instances. A smaller ISS value indicates greater similarity.
1 / 0.550 2 / 0.581 3 / 0.585 4 / 0.590 5 / 0.607
Raw These images represent the CCM images in their raw forms (before any decomposition was applied) for the MIC top 5.
supportcase1 raw rmatr200-p10 raw rmatr200-p20 raw map14860-20 raw rmatr200-p5 raw

MIPLIB Top 5 Instances

These are the 5 instances that are most closely related to the query instance, according to the instance statistic-based similarity measure employed by MIPLIB 2017

Decomposed These decomposed images were created by GCG.
allcolor10 decomposed neos-3665875-lesum decomposed ns2124243 decomposed ns2122698 decomposed neos-1396125 decomposed
Name allcolor10 [MIPLIB] neos-3665875-lesum [MIPLIB] ns2124243 [MIPLIB] ns2122698 [MIPLIB] neos-1396125 [MIPLIB]
Rank / ISS The image-based structural similarity (ISS) metric measures the Euclidean distance between the image-based feature vectors for the query instance and all model groups. A smaller ISS value indicates greater similarity.
44 / 0.794 47 / 0.798 93 / 0.892 130 / 0.941 260 / 1.223
Raw These images represent the CCM images in their raw forms (before any decomposition was applied) for the MIPLIB top 5.
allcolor10 raw neos-3665875-lesum raw ns2124243 raw ns2122698 raw neos-1396125 raw

Instance Summary

The table below contains summary information for neos-3660371-kurow, the five most similar instances to neos-3660371-kurow according to the MIC, and the five most similar instances to neos-3660371-kurow according to MIPLIB 2017.

INSTANCE SUBMITTER DESCRIPTION ISS RANK
Parent Instance neos-3660371-kurow [MIPLIB] Jeff Linderoth (None provided) 0.000000 -
MIC Top 5 supportcase1 [MIPLIB] Michael Winkler MIP instances collected from Gurobi forum with unknown application 0.549776 1
rmatr200-p10 [MIPLIB] Dmitry Krushinsky Instance coming from a formulation of the p-Median problem using square cost matrices. Solved by Gurobi 4.6.1 (12 threads) in 19644 seconds (January 2012). 0.580987 2
rmatr200-p20 [MIPLIB] Dmitry Krushinsky Instance coming from a formulation of the p-Median problem using square cost matrices. Solved using ug[SCIP/spx], a distributed massively parallel version of SCIP run on 2,000 cores at the HLRN-II super computer facility. 0.585294 3
map14860-20 [MIPLIB] Kiyan Ahmadizadeh Land parcel selection problems motivated by Red-Cockaded Woodpecker conservation problem 0.589839 4
rmatr200-p5 [MIPLIB] Dmitry Krushinsky Instance coming from a formulation of the p-Median problem using square cost matrices 0.607219 5
MIPLIB Top 5 allcolor10 [MIPLIB] Domenico Salvagnin Prepack optimization instance. 0.793662 44
neos-3665875-lesum [MIPLIB] Jeff Linderoth (None provided) 0.797683 47
ns2124243 [MIPLIB] Timo Berthold Instance coming from the NEOS Server with unknown application 0.891932 93
ns2122698 [MIPLIB] Timo Berthold Instance coming from the NEOS Server with unknown application. Solved by SCIP-CPLEX in 9500 seconds. 0.940657 130
neos-1396125 [MIPLIB] NEOS Server Submission Instance coming from the NEOS Server with unknown application 1.222805 260


neos-3660371-kurow: Instance-to-Model Comparison Results

Model Group Assignment from MIPLIB: neos-pseudoapplication-9
Assigned Model Group Rank/ISS in the MIC: 77 / 2.162

MIC Top 5 Model Groups

These are the 5 model group composite (MGC) images that are most similar to the decomposed CCM image for the query instance, according to the ISS metric.

These are model group composite (MGC) images for the MIC top 5 model groups.
Model group: rmatr Model group: map Model group: polygonpack Model group: sp_product Model group: neos-pseudoapplication-54
Name rmatr map polygonpack sp_product neos-pseudoapplication-54
Rank / ISS The image-based structural similarity (ISS) metric measures the Euclidean distance between the image-based feature vectors for the query instance and all other instances. A smaller ISS value indicates greater similarity.
1 / 0.763 2 / 0.770 3 / 0.978 4 / 0.986 5 / 1.023

Model Group Summary

The table below contains summary information for the five most similar model groups to neos-3660371-kurow according to the MIC.

MODEL GROUP SUBMITTER DESCRIPTION ISS RANK
MIC Top 5 rmatr Dmitry Krushinsky Model coming from a formulation of the p-Median problem using square cost matrices 0.762549 1
map Kiyan Ahmadizadeh Land parcel selection problems motivated by Red-Cockaded Woodpecker conservation problem 0.769600 2
polygonpack Antonio Frangioni Given a set P of polygons, not necessarily convex, and a rectangle, we want to find the subset S of P with largest possible total area and a position every p in S so that there are no overlaps and they are all included in the rectangle. We allow a small set of rotations (0, 90, 180, 270 degrees) for every polygon. The problem is simplified w.r.t. the real application because the polygons do not have (fully encircled) "holes", which are supposedly filled-in separately, although they can have "bays". Models are saved as .lp. Model LpPackingModel_Dim means that we are trying to pack polygons taken from set ; there are currently 5 different sets, and is 7, 10 or 15. 0.977832 3
sp_product MIPLIB submission pool Imported from the MIPLIB2010 submissions. 0.985813 4
neos-pseudoapplication-54 Jeff Linderoth (None provided) 1.023136 5