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Vision Based Tracking of Multiple Dynamic Obstacles for Autonomous Robot Navigation.

, , , , , and . CICSyN, page 65-71. IEEE Computer Society, (2011)

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Monocular vision based real-time exploration in autonomous rovers., , , , and . ICACCI, page 42-46. IEEE, (2013)FPGA Implementation of 2-D DCT Engine for Vision Based Tracking of Dynamic Obstacles., , , , , and . Asia International Conference on Modelling and Simulation, page 23-28. IEEE Computer Society, (2012)Architectures for FPGA-Based Implementation of Motion Estimation of Dynamic Obstacles for Autonomous Robot Navigation., , , and . CICSyN, page 292-297. IEEE Computer Society, (2011)Computationally inexpensive labeling of appearance based navigable terrain for autonomous rovers., and . CIVTS, page 87-92. IEEE, (2013)Multi-sensor Autonomous Robot Based Manipulation of Valves for Process Control., , , , , , , and . Asia International Conference on Modelling and Simulation, page 442-447. IEEE Computer Society, (2009)A note on the estimators for coefficient of dispersion using auxiliary information., , and . Commun. Stat. Simul. Comput., 49 (9): 2347-2356 (2020)Computational architectures for sonar array processing in autonomous rovers., , , , , and . Microprocess. Microsystems, (2016)Vision Based Tracking of Multiple Dynamic Obstacles for Autonomous Robot Navigation., , , , , and . CICSyN, page 65-71. IEEE Computer Society, (2011)A time-power efficient fixed point single purpose processor for mapping using ultrasound sensors., , , , and . ICUMT, page 1-7. IEEE, (2009)Indian RTI Act-2005 Analysis by Machine Learning: A Bastar Zone Perspective., , , , , and . ICCCNT, page 1-6. IEEE, (2022)