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Signal Tuning of Observables at the Support of a Vibrissa-like Tactile Sensor in Different Scanning Scenarios.

, , , and . BioRob, page 1138-1143. IEEE, (2018)

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Modeling the Behavior of Hair Follicle Receptors as Technical Sensors using Adaptive Control.. ICINCO (1), page 336-345. SciTePress, (2013)Bio-inspired Technical Vibrissae for Quasi-static Profile Scanning., , and . ICINCO (Selected Papers), volume 370 of Lecture Notes in Electrical Engineering, page 277-295. Springer, (2014)Animal Vibrissae: Modeling and Adaptive Control of Bio-inspired Sensors., , , and . IWANN (2), volume 7903 of Lecture Notes in Computer Science, page 159-170. Springer, (2013)Worm-like robotic systems: Generation, analysis and shift of gaits using adaptive control., and . Artif. Intell. Res., 2 (1): 12-35 (2013)Effects of Multi-Point Contacts during Object Contour Scanning Using a Biologically-Inspired Tactile Sensor., , , , and . Sensors, 20 (7): 2077 (2020)Approach to the Dynamical Scanning of Object Contours Using Tactile Sensors., , and . ICM, page 364-369. IEEE, (2019)Gait Transition in Artificial Locomotion Systems using Adaptive Control., and . ICINCO (2), page 119-129. SciTePress, (2016)Signal Tuning of Observables at the Support of a Vibrissa-like Tactile Sensor in Different Scanning Scenarios., , , and . BioRob, page 1138-1143. IEEE, (2018)Object Contour Reconstruction using Bio-inspired Sensors., , and . ICINCO (1), page 459-467. SciTePress, (2014)Finite degree-of-freedom models for animal vibrissae., , and . ECC, page 2500-2505. IEEE, (2009)