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Speed-invariant terrain roughness classification and control based on inertial sensors.

, , , , and . LARS/SBR, page 1-6. IEEE, (2017)

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Localization Using Ultra Wideband and IEEE 802.15.4 Radios with Nonlinear Bayesian Filters: a Comparative Study., , , , , , and . J. Intell. Robotic Syst., 99 (3): 571-587 (2020)Routing IPv6 over wireless networks with low-memory devices., , and . PIMRC, page 2398-2402. IEEE, (2013)Speed-invariant terrain roughness classification and control based on inertial sensors., , , , and . LARS/SBR, page 1-6. IEEE, (2017)Fast Packet Processing with eBPF and XDP: Concepts, Code, Challenges, and Applications., , , , , and . ACM Comput. Surv., 53 (1): 16:1-16:36 (2021)Indoor wireless sensor localization using mobile robot and RSSI., , , , and . MASS Workshops, page 1-6. IEEE Computer Society, (2012)978-1-4673-2433-5.An integrated solution for an autonomous drone racing in indoor environments., , , , , , , and . Intell. Serv. Robotics, 14 (5): 641-661 (2021)Autonomous wireless backbone deployment with bounded number of networked robots., and . IROS, page 3740-3746. IEEE, (2014)Global Localization of Mobile Robots Using Local Position Estimation in a Geo Tagged Wireless Node Sensor Network., , , , , and . LARS/SBR/WRE, page 39-44. IEEE, (2018)Fast and Parallel Wireless Communication Backbone Deployment with Networked Robots., and . ICAR, page 272-277. IEEE, (2019)Aplicações de monitoramento de tráfego utilizando redes programáveis eBPF., , , and . SBRC, page 417-430. (2019)