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Mapping likelihood of encountering humans: Application to path planning in crowded environment., , and . ECMR, page 1-7. IEEE, (2017)Socially Compliant Navigation in dense crowds., , , and . IV, page 64-69. IEEE, (2019)Human Presence Probability Map (HPP): A Probability Propagation Based on Human Flow Grid., , and . RoboCup, volume 14140 of Lecture Notes in Computer Science, page 54-65. Springer, (2023)Behavioral Intrusion Detection Indicators., , , and . SEC, volume 278 of IFIP, page 317-331. Springer, (2008)Modeling a Social Placement Cost to Extend Navigation Among Movable Obstacles (NAMO) Algorithms., , and . IROS, page 11345-11351. IEEE, (2020)People Management Framework Using a 2D Camera for Human-Robot Social Interactions., , and . RoboCup, volume 11531 of Lecture Notes in Computer Science, page 268-280. Springer, (2019)Comprehensive Security Framework for Global Threads Analysis, , and . CoRR, (2009)Towards S-NAMO: Socially-Aware Navigation Among Movable Obstacles., , and . RoboCup, volume 11531 of Lecture Notes in Computer Science, page 241-254. Springer, (2019)Robots delivering services to moving people: Individual vs. group patrolling strategies., , and . ARSO, page 1-8. IEEE, (2015)Patrouille Multi-Agent Dynamique, application en Robotique au Service de Personnes Mobiles., , and . JFSMA, page 33-42. Cépaduès Éditions, (2016)