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Comparison of 3D scan matching techniques for autonomous robot navigation in urban and agricultural environments
Indexado
WoS WOS:000658967700001
Scopus SCOPUS_ID:85108993545
DOI 10.1117/1.JRS.15.024508
Año 2021
Tipo artículo de investigación

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



Global navigation satellite system (GNSS) is the standard solution for solving the localization problem in outdoor environments, but its signal might be lost when driving in dense urban areas or in the presence of heavy vegetation or overhanging canopies. Hence, there is a need for alternative or complementary localization methods for autonomous driving. In recent years, exteroceptive sensors have gained much attention due to significant improvements in accuracy and cost-effectiveness, especially for 3D range sensors. By registering two successive 3D scans, known as scan matching, it is possible to estimate the pose of a vehicle. This work aims to provide in-depth analysis and comparison of the state-of-the-art 3D scan matching approaches as a solution to the localization problem of autonomous vehicles. Eight techniques (deterministic and probabilistic) are investigated: iterative closest point (with three different embodiments), normal distribution transform, coherent point drift, Gaussian mixture model, support vector-parametrized Gaussian mixture and the particle filter implementation. They are demonstrated in long path trials in both urban and agricultural environments and compared in terms of accuracy and consistency. On the one hand, most of the techniques can be successfully used in urban scenarios with the probabilistic approaches that show the best accuracy. On the other hand, agricultural settings have proved to be more challenging with significant errors even in short distance trials due to the presence of featureless natural objects. The results and discussion of this work will provide a guide for selecting the most suitable method and will encourage building of improvements on the identified limitations. (C) 2021 Society of PhotoOptical Instrumentation Engineers (SPIE)

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Disciplinas de Investigación



WOS
Environmental Sciences
Remote Sensing
Imaging Science & Photographic Technology
Scopus
Sin Disciplinas
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Guevara, Javier Hombre Universidad Técnica Federico Santa María - Chile
2 Gene-Mola, Jordi Hombre Univ Lleida - España
Universitat de Lleida - España
3 Gregorio, Eduard Hombre Univ Lleida - España
Universitat de Lleida - España
4 TORRES-LEPEZ, MIGUEL ANDRES Hombre Pontificia Universidad Católica de Chile - Chile
5 Reina, G. Hombre Politecn Bari - Italia
Politecnico di Bari - Italia
6 AUAT-CHEEIN, FERNANDO ALFREDO Hombre Universidad Técnica Federico Santa María - Chile

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Financiamiento



Fuente
Fondo Nacional de Desarrollo Científico y Tecnológico
Generalitat de Catalunya
Spanish Ministry of Education
Spanish Ministry of Science, Innovation and Universities
Ministerio de Ciencia, Innovacion y Universidades
DGIIP-UTFSM Chile
Secretaria d'Universitats i Recerca del Departament d'Empresa i Coneixement de la Generalitat de Catalunya
ANID
Agencia Nacional de Investigación y Desarrollo
National Agency for Research and Development
Ex-CONICYT
National Agency of Research and Development
National Agency of Research and Development (ANID, ex-Conicyt) under Fondecyt grant
National Agency of Research and Development (ANID, ex-Conicyt) under Basal grant
National Agency for Research and Development (ANID)/PCHA/Doctorado Nacional
Agenția Națională pentru Cercetare și Dezvoltare

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Agradecimientos



Agradecimiento
NThis project was supported by the National Agency of Research and Development (ANID, ex-Conicyt) under Fondecyt grant 1201319, Basal grant FB0008, DGIIP-UTFSM Chile, National Agency for Research and Development (ANID)/PCHA/Doctorado Nacional/202021200700, Secretaria d'Universitats i Recerca del Departament d'Empresa i Coneixement de la Generalitat de Catalunya (grant 2017 SGR 646), the Spanish Ministry of Science, Innovation and Universities (project RTI2018-094222-B-I00). The Spanish Ministry of Education is thanked for Mr. J. Genes' pre-doctoral fellowships (FPU15/03355). We would also like to thank Nufri (especially Santiago Salamero and Oriol Morreres) for their support during data acquisition.
This project was supported by the National Agency of Research and Development (ANID, ex-Conicyt) under Fondecyt grant 1201319, Basal grant FB0008, DGIIP-UTFSM Chile, National Agency for Research and Development (ANID)/PCHA/Doctorado Nacional/2020-21200700, Secretaria d’Universitats i Recerca del Departament d’Empresa i Coneixement de la Generalitat de Catalunya (grant 2017 SGR 646), the Spanish Ministry of Science, Innovation and Universities (project RTI2018-094222-B-I00). The Spanish Ministry of Education is thanked for Mr. J. Genés’ pre-doctoral fellowships (FPU15/03355). We would also like to thank Nufri (especially Santiago Salamero and Oriol Morreres) for their support during data acquisition.

Muestra la fuente de financiamiento declarada en la publicación.