JOURNAL ARTICLE

A Multiplier Adjustment Method for Dynamic Resource Allocation Problems

Tassio A. CarvalhoWarren B. Powell

Year: 2000 Journal:   Transportation Science Vol: 34 (2)Pages: 150-164   Publisher: Institute for Operations Research and the Management Sciences

Abstract

Dynamic fleet management problems (with a homogeneous fleet) are classically formulated as dynamic networks, or linear programs with side constraints. Recently, a new dynamic control approach was introduced, called a logistics queueing network. Instead of a large linear program, the problem is decomposed into small subproblems that are guided by two control variables that push these local problems to produce a solution that is close to a global optimum. In prior work, these control variables were updated using a subgradient approximation. In this paper, we propose a multiplier adjustment method for solving the same problem. Numerical experiments show that this method produces better solutions with greater stability. The new method is somewhat slower, and is more difficult to implement. We believe that both methods will represent reasonable choices for solving the problem.

Keywords:
Mathematical optimization Subgradient method Queueing theory Lagrange multiplier Multiplier (economics) Computer science Control variable Resource allocation Stability (learning theory) Work (physics) Linear programming Mathematics Engineering Economics

Metrics

42
Cited By
3.17
FWCI (Field Weighted Citation Impact)
12
Refs
0.92
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced Queuing Theory Analysis
Social Sciences →  Business, Management and Accounting →  Management Information Systems
Transportation Planning and Optimization
Social Sciences →  Social Sciences →  Transportation
Supply Chain and Inventory Management
Social Sciences →  Business, Management and Accounting →  Management Information Systems

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