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Towards Inertial Human Motion Tracking with Drift-Free Absolute Orientations using only Sparse Sources of Heading Information.

, , , and . FUSION, page 1-8. IEEE, (2022)

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Towards Inertial Sensor Based Mobile Gait Analysis: Event-Detection and Spatio-Temporal Parameters., , , , , and . Sensors, 19 (1): 38 (2019)Towards Inertial Human Motion Tracking with Drift-Free Absolute Orientations using only Sparse Sources of Heading Information., , , and . FUSION, page 1-8. IEEE, (2022)A Face Validation Study for the Investigation of Proteus Effects Targeting Driving Behavior., , , , and . HCI (9), volume 11574 of Lecture Notes in Computer Science, page 335-348. Springer, (2019)Advanced tracking through efficient image processing and visual-inertial sensor fusion., and . Comput. Graph., 33 (1): 59-72 (2009)Representing Feature Location Uncertainties in Spherical Images., , , and . WSCG, page 187-194. Vaclav Skala - Union Agency, (2013)On-line Motion Prediction and Adaptive Control in Human-Robot Handover Tasks., , , , and . ARSO, page 1-6. IEEE, (2019)On Attitude Representations for Optimization-Based Bayesian Smoothing., , , and . FUSION, page 1-8. IEEE, (2019)Interpretability of Input Representations for Gait Classification in Patients after Total Hip Arthroplasty., , , , and . Sensors, 20 (16): 4385 (2020)An adaptive learning and control framework based on dynamic movement primitives with application to human-robot handovers., , , , and . Robotics Auton. Syst., (2022)Gamification of a Stress Management App: Results of a User Study., , , and . HCI (20), volume 11585 of Lecture Notes in Computer Science, page 303-313. Springer, (2019)