English

Towards Asymptotically Optimal One-to-One PDP Algorithms for Capacity 2+ Vehicles

Computational Complexity 2016-10-31 v1 Discrete Mathematics Data Structures and Algorithms

Abstract

We consider the one-to-one Pickup and Delivery Problem (PDP) in Euclidean Space with arbitrary dimension dd where nn transportation requests are picked i.i.d. with a separate origin-destination pair for each object to be moved. First, we consider the problem from the customer perspective where the objective is to compute a plan for transporting the objects such that the Euclidean distance traveled by the vehicles when carrying objects is minimized. We develop a polynomial time asymptotically optimal algorithm for vehicles with capacity o(n2d)o(\sqrt[2d]{n}) for this case. This result also holds imposing LIFO constraints for loading and unloading objects. Secondly, we extend our algorithm to the classical single-vehicle PDP where the objective is to minimize the total distance traveled by the vehicle and present results indicating that the extended algorithm is asymptotically optimal for a fixed vehicle capacity if the origins and destinations are picked i.i.d. using the same distribution.

Keywords

Cite

@article{arxiv.1610.09132,
  title  = {Towards Asymptotically Optimal One-to-One PDP Algorithms for Capacity 2+ Vehicles},
  author = {Martin Olsen},
  journal= {arXiv preprint arXiv:1610.09132},
  year   = {2016}
}
R2 v1 2026-06-22T16:35:03.062Z