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Vibration Suppression in the Passively-Supported Direction by Varying Bias Currents in Magnetic Suspension System.

, , , , and . ECC, page 971-976. IEEE, (2018)

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Proposal of Tele-touch Using Active Type SAW Tactile Display., , , , and . IROS, page 1032-1037. IEEE, (2006)Excitation of Surface Acoustic Wave on a Glass Substrate Using a LiNbO3 Piece., , and . IJAT, 10 (4): 574-583 (2016)Improvement of vibration isolation characteristics by Kalman-filter estimated acceleration feedback., , , and . ECC, page 1106-1111. IEEE, (2015)Development of non-contact carrier system using solar magnetic suspension (3ed report: Continuous 5-day and installation of sloping propulsion mechanism)., , , , and . ASCC, page 1-5. IEEE, (2015)Force Compensation Based on Observer for Assembly of Magnetized Components., , , , and . ASCC, page 538-542. IEEE, (2019)Vibration Isolation System with Kalman Filter Estimated Acceleration Feedback: An Approach of Negative Stiffness Control., , , , and . J. Sensors, (2021)Vibration Suppression in the Passively-Supported Direction by Varying Bias Currents in Magnetic Suspension System., , , , and . ECC, page 971-976. IEEE, (2018)Study on self-sensing electrostatic suspension using a variable capacitor., , , and . AMC, page 426-429. IEEE, (2010)Pneumatic Three-axis Vibration Isolation System Using Negative Stiffness., , , and . CDC/ECC, page 8254-8259. IEEE, (2005)Force compensation for anti-collision in placing a magnetized component on ferromagnetic plate., , and . ECC, page 1556-1561. IEEE, (2016)