Vehicular traffic, crowds, and swarms. From kinetic theory and multiscale methods to applications and research perspectives
Metadatos
Afficher la notice complèteAuteur
Albi, Giacomo; Bellomo, Nicola; Fermo, Luisa; Ha, Seung-Yeal; Kim, Jeongho; Pareschi, Lorenzo; Poyato Sánchez, Jesús David; Soler Vizcaino, Juan SegundoEditorial
World Scientific
Materia
Active particles Kinetic equations Vehicular traffic Human crowds Swarms Multiscale vision
Date
2019-08-08Referencia bibliográfica
G. Albi, N. Bellomo, L. Fermo, S.-Y. Ha, J. Kim, L. Pareschi, D. Poyato, J. Soler, Vehicular traffic, crowds, and swarms. From kinetic theory and multiscale methods to applications and research perspectives. Math. Mod. Meth. Appl. Sci. 29(10) (2019), 1901-2005 [https://doi.org/10.1142/S0218202519500374]
Patrocinador
MINECO-Feder MTM2014-53406-R, RTI2018-098850-B-I00, Junta de Andalucía FQM 954 , Ministerio de Educación Cultura y Deporte FPU2014/06304 (Spain), MIUR Departments of Excellence 2018-2022 project Computer Science for Industry 4.0, GNCS-INdAM 2019 project Numerical approximation of hyperbolic problems and applications, Fondazione di Sardegna project Algorithms for Approximation with Applications (Acube) (Italy), National Research Foundation of Korea project NRF-2017R1A2B2001864 (Republic of Korea).Résumé
This paper presents a review and critical analysis on the modeling of the dynamics of vehicular traffic, human crowds and swarms seen as living and, hence, complex systems. It contains a survey of the kinetic models developed in the last ten years on the afore-mentioned topics so that overlapping with previous reviews can be avoided. Although the main focus of this paper lies on the mesoscopic models for collective dynamics, we provide a brief overview on the corresponding micro and macroscopic models, and discuss intermediate role of mesoscopic model between them. Moreover, we provide a number of selected challenging research perspectives for readers' attention.