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Dive into the research topics where Brian Kallehauge is active.

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Featured researches published by Brian Kallehauge.


Archive | 2005

Vehicle Routing Problem with Time Windows

Brian Kallehauge; Jesper Larsen; Oli B.G. Madsen; Marius M. Solomon

In this chapter we discuss the Vehicle Routing Problem with Time Windows in terms of its mathematical modeling, its structure and decomposition alternatives. We then present the master problem and the subproblem for the column generation approach, respectively. Next, we illustrate a branch-and-bound framework and address acceleration strategies used to increase the efficiency of branch-and-price methods. Then, we describe generalizations of the problem and report computational results for the classic Solomon test sets. Finally, we present our conclusions and discuss some open problems.


Computers & Operations Research | 2008

Formulations and exact algorithms for the vehicle routing problem with time windows

Brian Kallehauge

In this paper we review the exact algorithms proposed in the last three decades for the solution of the vehicle routing problem with time windows (VRPTW). The exact algorithms for the VRPTW are in many aspects inherited from work on the traveling salesman problem (TSP). In recognition of this fact this paper is structured relative to four seminal papers concerning the formulation and exact solution of the TSP, i.e. the arc formulation, the arc-node formulation, the spanning tree formulation, and the path formulation. We give a detailed analysis of the formulations of the VRPTW and a review of the literature related to the different formulations. There are two main lines of development in relation to the exact algorithms for the VRPTW. One is concerned with the general decomposition approach and the solution to certain dual problems associated with the VRPTW. Another more recent direction is concerned with the analysis of the polyhedral structure of the VRPTW. We conclude by examining possible future lines of research in the area of the VRPTW.


Computers & Operations Research | 2006

Lagrangian duality applied to the vehicle routing problem with time windows

Brian Kallehauge; Jesper Larsen; Oli B.G. Madsen

This paper considers the vehicle routing problem with time windows, where the service of each customer must start within a specified time interval. We consider the Lagrangian relaxation of the constraint set requiring that each customer must be served by exactly one vehicle yielding a constrained shortest path subproblem. We present a stabilized cutting-plane algorithm within the framework of linear programming for solving the associated Lagrangian dual problem. This algorithm creates easier constrained shortest path subproblems because less negative cycles are introduced and it leads to faster multiplier convergence due to a stabilization of the dual variables. We have embedded the stabilized cutting-plane algorithm in a branch-and-bound search and introduce strong valid inequalities at the master problem level by Lagrangian relaxation. The result is a Lagrangian branch-and-cut-and-price (LBCP) algorithm for the VRPTW. Making use of this acceleration strategy at the master problem level gives a significant speed-up compared to algorithms in the literature based on traditional column generation. We have solved two test problems introduced in 2001 by Gehring and Homberger with 400 and 1000 customers respectively, which to date are the largest problems ever solved to optimality. We have implemented the LBCP algorithm using the ABACUS open-source framework for solving mixed-integer linear-programs by branch, cut, and price.


Archive | 2005

The Vehicle Routing Problem with Time Windows

Brian Kallehauge; Jesper Larsen; Oli B.G. Madsen; Marius M. Solomon


Networks | 2007

Path inequalities for the vehicle routing problem with time windows

Brian Kallehauge; Natashia Boland; Oli B.G. Madsen


Computers & Operations Research | 2001

Lagrangean duality applied on vehicle routing with time windows

Brian Kallehauge; Jan Larsen; Oli B.G. Madsen


Archive | 2001

Lagrangean Duality Applied on Vehicle Routing with Time Windows - Experimental Results

Brian Kallehauge; Jesper Larsen; Oli B.G. Madsen


Conference on Maritime & Intermodal Logistics, 17-19 Dec 2007 | 2007

Network Design for Container Shipping Using Cutting Planes

Line Blander Reinhardt; Brian Kallehauge


Archive | 2007

Network Design Models for Container Shipping

Line Blander Reinhardt; Brian Kallehauge; Anders Nørrelund Nielsen; Allan Olsen


Archive | 2011

Routing and scheduling problems

Line Blander Reinhardt; David Pisinger; Oli B.G. Madsen; Brian Kallehauge

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Oli B.G. Madsen

Technical University of Denmark

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Jesper Larsen

Technical University of Denmark

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David Pisinger

Technical University of Denmark

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Kaj Madsen

Technical University of Denmark

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Natashia Boland

Georgia Institute of Technology

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