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Last Mile Delivery with Autonomous Shuttles: ROS-based Integration of Smart Cargo Cages | IEEE Conference Publication | IEEE Xplore

Last Mile Delivery with Autonomous Shuttles: ROS-based Integration of Smart Cargo Cages


Abstract:

With consistently increasing amounts of transported goods, autonomous cargo transport has gained increasing interest as a potential solution. In addition to reliable auto...Show More

Abstract:

With consistently increasing amounts of transported goods, autonomous cargo transport has gained increasing interest as a potential solution. In addition to reliable autonomous driving functions, Autonomous cargo transport requires a wide range of additional software and hardware components to ensure a safe and efficient transport of cargo as well as a pleasant user experience for the customers. This work presents a general concept for an autonomous and flexible cargo transport system, targeting point-to-point transports in the range of the typical last mile. The proposed concept provides flexibility for demand-responsive passenger transport as a mixed cargo-passenger transport solution. Furthermore, the proposed concept is realized through designing a removable cargo hold with electronic locks, and software modules such as a Booking App, a Scanner App, and a central backend. The implementation was developed, deployed in an autonomous shuttle, and extensively tested in a peri-urban quarter of the Test Area Autonomous Driving Baden-Württemberg.
Date of Conference: 02-05 June 2024
Date Added to IEEE Xplore: 15 July 2024
ISBN Information:

ISSN Information:

Conference Location: Jeju Island, Korea, Republic of
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I. INTRODUCTION

As a result of the increase in population and changes in shopping habits, cargo and goods transport not only from online warehouses but from local shops as well, have become increasingly popular and are expected to continue growing in the future. This development and increasing demand make cargo transport an important topic that will become even more relevant in the future [1]. In tandem, autonomous driving has made remarkable progress in recent years, such that autonomous vehicles are being tested in real applications by numerous public projects and companies in a broad range of environmental conditions [2].

Select All
1.
J. Visser, T. Nemoto and M. Browne, "Home delivery and the impacts on urban freight transport: A review", Procedia-social and behavioral sciences, vol. 125, pp. 15-27, 2014.
2.
N. Lambing et al., "Closing the gap between automated mobility in smart cities: Automated vehicle and shuttle transportation in the test area autonomous driving baden-württemberg", 2021 International Congress on Transportation Research, 2021.
3.
F. Arnold et al., "Simulation of b2c e-commerce distribution in antwerp using cargo bikes and delivery points", European transport research review, vol. 10, no. 1, pp. 1-13, 2018.
4.
A. Anderluh, V. C. Hemmelmayr and P. C. Nolz, "Synchronizing vans and cargo bikes in a city distribution network", Central European Journal of Operations Research, vol. 25, pp. 345-376, 2017.
5.
M. Sheth et al., "Measuring delivery route cost trade-offs between electric-assist cargo bicycles and delivery trucks in dense urban areas", European transport research review, vol. 11, pp. 1-12, 2019.
6.
N. R. Kuntz and P. Y. Oh, "Development of autonomous cargo transport for an unmanned aerial vehicle using visual servoing", Dynamic Systems and Control Conference, vol. 43352, pp. 731-738, 2008.
7.
A. Otto et al., "Optimization approaches for civil applications of unmanned aerial vehicles (uavs) or aerial drones: A survey", Networks, vol. 72, no. 4, pp. 411-458, 2018.
8.
I. Khoufi, A. Laouiti and C. Adjih, "A survey of recent extended variants of the traveling salesman and vehicle routing problems for unmanned aerial vehicles", Drones, vol. 3, no. 3, pp. 66, 2019.
9.
D. Rojas Viloria et al., "Unmanned aerial vehicles/drones in vehicle routing problems: A literature review", International Transactions in Operational Research, vol. 28, no. 4, pp. 1626-1657, 2021.
10.
K. Glock et al., "Autonome letzte Meile im Real-labor: Konzepte Bewertung Erprobung" in Transforming Mobility–What Next? Technische und betrieb-swirtschaftliche Aspekte, Springer, pp. 541-562, 2022.
11.
D. Jennings and M. Figliozzi, "Study of sidewalk autonomous delivery robots and their potential impacts on freight efficiency and travel", Transportation Research Record, vol. 2673, no. 6, pp. 317-326, 2019.
12.
M. Kocsis, R. Zöllner and G. Mogan, "Interactive system for package delivery in pedestrian areas using a self-developed fleet of autonomous vehicles", Electronics, vol. 11, no. 5, pp. 748, 2022.
13.
C. Chen et al., "Crowddeliver: Planning city-wide package delivery paths leveraging the crowd of taxis", IEEE Transactions on Intelligent Transportation Systems, vol. 18, no. 6, pp. 1478-1496, 2016.
14.
B. Li et al., "The share-a-ride problem: People and parcels sharing taxis", European Journal of Operational Research, vol. 238, no. 1, pp. 31-40, 2014.
15.
C. Chen and S. Pan, "Using the crowd of taxis to last mile delivery in e-commerce: A methodological research", Service orientation in holonic and multi-agent manufacturing, pp. 61-70, 2016.
16.
B. A. Beirigo, F. Schulte and R. R. Negenborn, "Integrating people and freight transportation using shared autonomous vehicles with compartments", IFAC-PapersOnLine, vol. 51, no. 9, pp. 392-397, 2018.
17.
R. Masson et al., "Optimization of a city logistics transportation system with mixed passengers and goods", EURO Journal on Transportation and Logistics, vol. 6, no. 1, pp. 81-109, 2017.
18.
V. Ghilas et al., "Branch-and-price for the pickup and delivery problem with time windows and scheduled lines", Transportation Science, vol. 52, no. 5, pp. 1191-1210, 2018.
19.
Planet dump retrieved, 2017, [online] Available: https://planet.osm.org.

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References

References is not available for this document.