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Adaptive sliding mode controller design of a maglev guiding system for application in precision positioning.

, , and . ACC, page 1612-1616. IEEE, (2000)

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Improved visual odometry system based on kinect RGB-D sensor., , , , and . ICCE-Berlin, page 29-30. IEEE, (2017)Modeling and controller design of a Maglev guiding system for application in precision positioning., , and . IEEE Trans. Ind. Electron., 50 (3): 493-506 (2003)A New Design of a Submicropositioner Utilizing Electromagnetic Actuators and Flexure Mechanism., , and . IEEE Trans. Ind. Electron., 57 (1): 96-106 (2010)Applying image enhancement technology to polymer-dispersed liquid crystals in transparent displays., , and . Displays, (2022)Adaptive sliding mode controller design of a maglev guiding system for application in precision positioning., , and . ACC, page 1612-1616. IEEE, (2000)Implementation and Self-Tuning Adaptive Control Design of an Electromagnetic Submicro-positioner., , and . ICICIC (3), page 296-299. IEEE Computer Society, (2006)High-Precision Motion Control for a Linear Permanent Magnet Iron Core Synchronous Motor Drive in Position Platform., and . IEEE Trans. Ind. Informatics, 10 (1): 99-108 (2014)Pneumatic Artificial Muscle-Driven Control Loading System (iFUZZY2017)., , , and . Int. J. Fuzzy Syst., 20 (6): 1779-1789 (2018)Design, analysis and control of an electro-magnetic actuator., , , and . ACC, page 3095-3100. IEEE, (2003)Design and implementation of an atomic force microscope with adaptive sliding mode controller for large image scanning., , , , , and . CDC/ECC, page 5577-5582. IEEE, (2011)