A “Push-Pull” rearrangement while routing for a driverless delivery vehicle

A home delivery logistics network is able to deliver goods to the home in reusable smart-boxes transported by Driverless Delivery Vehicles (DDV). Since the delivery vehicle does not have a human driver, in this case, how to deliver, pick up and rearrange smart-boxes into the Driverless Delivery Vehi...

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Autores principales: Samir Tetouani, Abdelssamad Chouar, Jamal Lmariouh, Aziz Soulhi, Jamila Elalami
Formato: article
Lenguaje:EN
Publicado: Taylor & Francis Group 2019
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Acceso en línea:https://doaj.org/article/78d3eb5fa5584005a141ce1c24c3b1e6
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spelling oai:doaj.org-article:78d3eb5fa5584005a141ce1c24c3b1e62021-11-04T15:51:55ZA “Push-Pull” rearrangement while routing for a driverless delivery vehicle2331-191610.1080/23311916.2019.1567662https://doaj.org/article/78d3eb5fa5584005a141ce1c24c3b1e62019-01-01T00:00:00Zhttp://dx.doi.org/10.1080/23311916.2019.1567662https://doaj.org/toc/2331-1916A home delivery logistics network is able to deliver goods to the home in reusable smart-boxes transported by Driverless Delivery Vehicles (DDV). Since the delivery vehicle does not have a human driver, in this case, how to deliver, pick up and rearrange smart-boxes into the Driverless Delivery Vehicles efficiently during routing? In this paper, we combine the results of works on the high density storage system and the results of works which solve sub-optimally the (n2-1)-puzzle, for to propose a new “Rearrangement While Routing” strategy for a Driverless Delivery Vehicle based on “snake-line arrangement” and “Pull–Push Rearrangement”. Furthermore, we compare our strategy with three other strategies arrangement based on Manhattan Distance, Number of moves and a Hybrid arrangement combined both Manhattan Distance and Number of moves. The results show that the proposed “Pull–Push Rearrangement” is most efficient in terms number of moves and displacements.Samir TetouaniAbdelssamad ChouarJamal LmariouhAziz SoulhiJamila ElalamiTaylor & Francis Grouparticlerearrangement while routingpuzzle-based storagehigh-density storagephysical internetdriverless-delivery vehicleEngineering (General). Civil engineering (General)TA1-2040ENCogent Engineering, Vol 6, Iss 1 (2019)
institution DOAJ
collection DOAJ
language EN
topic rearrangement while routing
puzzle-based storage
high-density storage
physical internet
driverless-delivery vehicle
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle rearrangement while routing
puzzle-based storage
high-density storage
physical internet
driverless-delivery vehicle
Engineering (General). Civil engineering (General)
TA1-2040
Samir Tetouani
Abdelssamad Chouar
Jamal Lmariouh
Aziz Soulhi
Jamila Elalami
A “Push-Pull” rearrangement while routing for a driverless delivery vehicle
description A home delivery logistics network is able to deliver goods to the home in reusable smart-boxes transported by Driverless Delivery Vehicles (DDV). Since the delivery vehicle does not have a human driver, in this case, how to deliver, pick up and rearrange smart-boxes into the Driverless Delivery Vehicles efficiently during routing? In this paper, we combine the results of works on the high density storage system and the results of works which solve sub-optimally the (n2-1)-puzzle, for to propose a new “Rearrangement While Routing” strategy for a Driverless Delivery Vehicle based on “snake-line arrangement” and “Pull–Push Rearrangement”. Furthermore, we compare our strategy with three other strategies arrangement based on Manhattan Distance, Number of moves and a Hybrid arrangement combined both Manhattan Distance and Number of moves. The results show that the proposed “Pull–Push Rearrangement” is most efficient in terms number of moves and displacements.
format article
author Samir Tetouani
Abdelssamad Chouar
Jamal Lmariouh
Aziz Soulhi
Jamila Elalami
author_facet Samir Tetouani
Abdelssamad Chouar
Jamal Lmariouh
Aziz Soulhi
Jamila Elalami
author_sort Samir Tetouani
title A “Push-Pull” rearrangement while routing for a driverless delivery vehicle
title_short A “Push-Pull” rearrangement while routing for a driverless delivery vehicle
title_full A “Push-Pull” rearrangement while routing for a driverless delivery vehicle
title_fullStr A “Push-Pull” rearrangement while routing for a driverless delivery vehicle
title_full_unstemmed A “Push-Pull” rearrangement while routing for a driverless delivery vehicle
title_sort “push-pull” rearrangement while routing for a driverless delivery vehicle
publisher Taylor & Francis Group
publishDate 2019
url https://doaj.org/article/78d3eb5fa5584005a141ce1c24c3b1e6
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