Implementation of autonomous transportationtechnologies: Diagnosis in home logistics for urbanenvironments
Keywords:
Technological management, Urban messaging, Home logistics, Autonomous transportationAbstract
The aim was to diagnose the status of the implementation of autonomous transportation technologies
in home logistics. Positivist paradigm research, with quantitative method and descriptivecorrelational approach, field research and non-experimental-transversal design. The sample was 28
courier companies, with at least one year of experience and a plant with at least five (5) workers in
charge. The survey technique is used, using a collection instrument with a Likert-type scale. There is
a global trend towards the automation of package distribution systems and this is known by a good
part of the target audience in this study. To achieve a high rate of implementability of these
technologies in the local urban environment, it is necessary to adapt changes in aspects such as road
infrastructure, legal regulations and sociocultural adoption of the technology, in addition to a
reduction in costs to an affordable range. such that the adoption of these new autonomous
technologies is encouraged in the Latin American environment and particularly in small and mediumsized cities.
Downloads
References
[1] P. A. Hancock, I. Nourbakhsh, and J. Stewart, "On the future of transportation in an era of automated and autonomous vehicles," Proc. Nat. Acad. Sci., vol. 116, no. 16, pp. 7684-7691, 2019.
[2] A. Severino, S. Curto, S. Barberi, F. Arena, and G. Pau, "Autonomous vehicles: an analysis both on their distinctiveness and the potential impact on urban transport systems," Appl. Sci., vol. 11, no. 8, p. 3604, 2021.
[3] R. Benotsmane, G. Kovács, and L. Dudás, "Economic, social impacts and operation of smart factories in Industry 4.0 focusing on simulation and artificial intelligence of collaborating robots," Soc. Sci., vol. 8, no. 5, p. 143, 2019.
[4] P. A. Hancock, I. Nourbakhsh, and J. Stewart, "On the future of transportation in an era of automated and autonomous vehicles," Proc. Nat. Acad. Sci., vol. 116, no. 16, pp. 7684-7691, 2019.
[5] T. Campisi, A. Severino, M. A. Al-Rashid, and G. Pau, "The development of the smart cities in the connected and autonomous vehicles (CAVs) era: From mobility patterns to scaling in cities," Infrastructures, vol. 6, no. 7, p. 100, 2021.
[6] G. Bathla, K. Bhadane, R. K. Singh, R. Kumar, R. Aluvalu, R. Krishnamurthi, et al., "Autonomous vehicles and intelligent automation: Applications, challenges, and opportunities," Mobile Inf. Syst., vol. 2022, p. 7632892, 2022.
[7] E. Guerra, "Planning for cars that drive themselves: Metropolitan planning organizations, regional transportation plans, and autonomous vehicles," J. Plann. Educ. Res., vol. 36, no. 2, pp. 210-224, 2016.
[8] A. G. Capodaglio, A. Callegari, and M. V. Lopez, "European framework for the diffusion of biogas uses: emerging technologies, acceptance, incentive strategies, and institutional-regulatory support," Sustainability, vol. 8, no. 4, p. 298, 2016.
[9] F. Feil and C. Feijó, "Development banks as an arm of economic policy–promoting sustainable structural change," Int. J. Polit. Econ., vol. 50, no. 1, pp. 44-59, 2021.
[10] L. M. Londoño García, "Vehículos autónomos retos de su implementación," 2023.
[11] E. Bañobre Nebot, "Identificación de los KPI clave para la eficiencia de empresas de transporte urbano mediante el análisis de la estructura de la matriz relacional," 2017.
[12] I. Harris, Y. Wang, and H. Wang, "ICT in multimodal transport and technological trends: Unleashing potential for the future," Int. J. Prod. Econ., vol. 159, pp. 88-103, 2015.
[13] V. M. Cely-Cely, M. D. Carrillo-Estrada, and B. M. Rolón-Rodríguez, "La evolución logística en las empresas," Reflex. Contab., vol. 7, no. 2, pp. 08-14, 2024.
[14] J. Guisasola, "La investigación basada en el diseño: algunos desafíos y perspectivas," Rev. Eureka Sobre Enseñanza Divulg. Cienc., vol. 21, no. 2, 2024.
[15] E. Bonelo Martínez, Proyectando. Reflexiones y ejercicios para la construcción de proyectos de investigación, Uniagustiniana, 2018.
[16] M. A. Cenedesi Junior and S. E. Vouillat, "Metodología de la Investigación: del tema a la publicación de los datos," Rev. Cienc. Humanas, vol. 17, no. 1, pp. 1-19, Apr. 2024.
[17] A. Finn and S. Scheding, "Developments and challenges for autonomous unmanned vehicles," Intell. Syst. Ref. Libr., vol. 3, pp. 128-154, 2010.
[18] S. Garg, G. S. Aujla, K. Kaur, and S. H. A. Shah, Eds., Intelligent Cyber-Physical Systems for Autonomous Transportation. Springer, 2022.
[19] A. Z. Somolinos, "Vehículos automatizados y derecho. La influencia de la conducción automatizada en la responsabilidad civil automovilística y en el seguro obligatorio de automóviles," Ph.D. dissertation, Universidad Carlos III de Madrid, 2020.
[20] M. W. Akhtar, S. A. Hassan, R. Ghaffar, et al., "The shift to 6G communications: Vision and requirements," Human-Centric Comput. Inf. Sci., vol. 10, p. 53, 2020.
[21] M. A. Cheema, M. K. Shehzad, H. K. Qureshi, et al., "A drone-aided Blockchain-based smart vehicular network," IEEE Trans. Intell. Transp. Syst., vol. 10, no. 1, pp. 1-12, 2020.