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Dynamic proxemia modeling approach (DPMA) for navigation and interaction with a group of persons.

, , , and . SAC, page 826-828. ACM, (2020)

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Dynamic proxemia modeling approach (DPMA) for navigation and interaction with a group of persons., , , and . SAC, page 826-828. ACM, (2020)HOG based multi-object detection for urban navigation., , , , and . ITSC, page 2962-2967. IEEE, (2014)A new approach for social navigation and interaction using a dynamic proxemia modeling., , , and . Evol. Intell., 15 (3): 2207-2233 (2022)Dynamic Proxemia Modeling Formal Framework for Social Navigation and Interaction., , , and . IntelliSys (1), volume 1250 of Advances in Intelligent Systems and Computing, page 303-321. Springer, (2020)Implementation of a neural-based navigation approach on indoor and outdoor mobile robots., , and . CSTST, page 71-77. ACM, (2008)Neural Networks and Fuzzy Logic navigation approach for a bi-steerable mobile robot., , , and . URAI, page 44-49. IEEE, (2011)Moving obstacles detection and tracking with laser range finder., , , and . ICAR, page 1-6. IEEE, (2009)Image Based Robust Visual Servoing on Human Face to Improve Human/Robot Interaction., , , and . ECMR, page 155-160. KoREMA, (2009)Vision and RFID-based person tracking in crowds from a mobile robot., , , , and . IROS, page 5591-5596. IEEE, (2009)A Complete Sensor-based System to Navigate Through a Cluttered Environment., , and . ICINCO (2), page 166-173. SciTePress, (2015)