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  • Search: subject:"Linear programming relaxations"
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Subject
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Linear programming relaxations 2 Mathematical programming 2 Mathematische Optimierung 2 Algorithm 1 Algorithmus 1 Betriebliche Standortwahl 1 Branch-and-bound algorithms 1 Firm location choice 1 Hierarchical network design 1 Integer programming 1 J-set relaxation 1 Location theory 1 McCormick inequalities 1 Network design and facility location 1 OR in telecommunications 1 Polynomial programming problems 1 Reformulation-Linearization Technique (RLT) 1 Standorttheorie 1 Theorie 1 Theory 1 Tree–tree networks 1 approximation algorithms 1 facilty location 1 latency problems 1 linear programming relaxations 1
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Undetermined 3
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Article 3
Type of publication (narrower categories)
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Article in journal 2 Aufsatz in Zeitschrift 2
Language
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English 2 Undetermined 1
Author
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Chakrabarty, Deeparnab 1 Dalkiran, Evrim 1 Ghalami, Laleh 1 Gollowitzer, Stefan 1 Gouveia, Luis 1 Ljubić, Ivana 1 Swamy, Chaitanya 1
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Published in...
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Computers & operations research : and their applications to problems of world concern ; an international journal 1 European Journal of Operational Research 1 Mathematics of operations research 1
Source
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ECONIS (ZBW) 2 RePEc 1
Showing 1 - 3 of 3
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On linear programming relaxations for solving polynomial programming problems
Dalkiran, Evrim; Ghalami, Laleh - In: Computers & operations research : and their … 99 (2018), pp. 67-77
Persistent link: https://www.econbiz.de/10011901562
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Facility location with client latencies : LP-based techniques for minimum-latency problems
Chakrabarty, Deeparnab; Swamy, Chaitanya - In: Mathematics of operations research 41 (2016) 3, pp. 865-883
Persistent link: https://www.econbiz.de/10011520582
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Enhanced formulations and branch-and-cut for the two level network design problem with transition facilities
Gollowitzer, Stefan; Gouveia, Luis; Ljubić, Ivana - In: European Journal of Operational Research 225 (2013) 2, pp. 211-222
We consider a new combinatorial optimization problem that combines network design and facility location aspects. Given a graph with two types of customers and two technologies that can be installed on the edges, the objective is to find a minimum cost subtree connecting all customers while the...
Persistent link: https://www.econbiz.de/10011052775
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