Automated radio network design using ant colony optimization

dc.contributor.advisorChairperson, Graduate Committee: John Paxtonen
dc.contributor.authorSharkey, Jeffrey Allenen
dc.date.accessioned2013-06-25T18:41:50Z
dc.date.available2013-06-25T18:41:50Z
dc.date.issued2008en
dc.description.abstractRadio networks can provide reliable communication for rural intelligent transportation systems (ITS). Engineers manually design these radio networks by selecting tower locations and equipment while meeting a series of constraints such as coverage, bandwidth, maximum delay, and redundancy, all while minimizing network cost. As network size and constraints grow, the design process can quickly become overwhelming. In this thesis we model the network design problem (NDP) as a generalized Steiner tree-star (GSTS) problem. Any solution to the minimum Steiner tree (MST) problem on a constructed GSTS graph will directly identify the tower locations and equipment needed to build the network at an optimal cost. The direct MST solution can only satisfy coverage constraints. Because the MST problem is known to be NP-hard, our research applies ant colony optimization (ACO) to find near-optimal MST solutions. Using ACO also allows us to meet bandwidth, maximum delay, and redundancy constraints. We verify that our approach finds near-optimal designs by comparing it against a 2-approximation algorithm in several different scenarios.en
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/2254en
dc.language.isoenen
dc.publisherMontana State University - Bozeman, College of Engineeringen
dc.rights.holderCopyright 2008 by Jeffrey Allen Sharkeyen
dc.subject.lcshTelecommunicationen
dc.subject.lcshRDS (Radio)en
dc.subject.lcshWireless communication systemsen
dc.titleAutomated radio network design using ant colony optimizationen
dc.typeThesisen
thesis.catalog.ckey1331837en
thesis.degree.committeemembersMembers, Graduate Committee: Jian Tang; Rockford J. Ross; Doug Galarusen
thesis.degree.departmentComputer Science.en
thesis.degree.genreThesisen
thesis.degree.nameMSen
thesis.format.extentfirstpage1en
thesis.format.extentlastpage53en

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