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Distributed Vehicle Routing Approximation

dc.contributor.advisorBonakdarpour, Borzoo
dc.contributor.authorKrishnan, Akhil
dc.contributor.departmentComputing and Softwareen_US
dc.date.accessioned2016-11-03T14:51:38Z
dc.date.available2016-11-03T14:51:38Z
dc.date.issued2017
dc.descriptionDistributed Approximationen_US
dc.description.abstractThe classic vehicle routing problem (VRP) is generally concerned with the optimal design of routes by a fleet of vehicles to service a set of customers by minimizing the overall cost, usually the travel distance for the whole set of routes. Although the problem has been extensively studied in the context of operations research and optimization, there is little research on solving the VRP, where distributed vehicles need to compute their respective routes in a decentralized fashion. Our first contribution is a synchronous distributed approximation algorithm that solves the VRP. Using the duality theorem of linear programming, we show that the approximation ratio of our algorithm is $O(n . (\rho)^{1/n} .log(n+m))$, where $\rho$ is the maximum cost of travel or service in the input VRP instance, $n$ is the size of the graph, and $m$ is the number of vehicles. We report results of simulations comparing our algorithm results with ILP solutions and a greedy algorithm.en_US
dc.description.degreeMaster of Science (MSc)en_US
dc.description.degreetypeThesisen_US
dc.description.layabstractThe Open Multi-Depot Vehicle Routing Problem(OMDVRP) problem is solved using an synchronous distributed algorithm and the approximation ratio is found and simulation results comparing the performance of ILP , greedy and the designed algorithm is done.en_US
dc.identifier.urihttp://hdl.handle.net/11375/20769
dc.language.isoen_USen_US
dc.subjectVRP, NP-Complete, Distributeden_US
dc.titleDistributed Vehicle Routing Approximationen_US
dc.typeThesisen_US

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