Martin Seyr
Papers
6
Total Citations
82
H-Index
4
About
Martin Seyr is a robotics researcher whose work centers on autonomous mobile robot navigation, motion control, and trajectory tracking — particularly for two-wheeled differentially driven (2WDD) systems. His most influential contribution, "Proprioceptive Navigation, Slip Estimation and Slip Control for Autonomous Wheeled Mobile Robots" (2006, 29 citations), introduced a sophisticated navigation framework combining extended Kalman filtering with inertial sensor data to achieve reliable, purely proprioceptive state estimation — a significant advance for robots operating without external positioning systems. Complementing this, his paired 2005 studies on predictive trajectory tracking (18 citations each) demonstrated both classical and neural network-based control strategies for navigating nonholonomic systems through complex configuration spaces. His earlier path planning work for soccer robots (2004, 11 citations) reflects a practical, kinematics-grounded approach to real-world robot deployment. Seyr's 2008 synthesis paper unified his trajectory tracking and proprioceptive navigation research into a cohesive predictive control framework applicable to both trajectory following and point stabilization tasks. Across his career, Seyr has made meaningful contributions to the fields of robot motion planning, sensor fusion, and autonomous control, offering tools and algorithms that remain relevant to researchers designing compact, resource-constrained mobile platforms.
Research Focus
Key Achievements
Top Papers
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- 2MOBILE ROBOT PREDICTIVE TRAJECTORY TRACKING18 citations · 2005
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- 6The Tinyphoon's Control Concept2 citations · 2006