Kuhnen et al., 2007 - Google Patents
Integral feedback control of a self-sensing magnetostrictive actuatorKuhnen et al., 2007
View PDF- Document ID
- 6855114382099841062
- Author
- Kuhnen K
- Schommer M
- Janocha H
- Publication year
- Publication venue
- Smart materials and structures
External Links
Snippet
An essential reason for the increasing interest in magnetostrictive materials is the capability to perform sensing and actuation at the same time and in the same place. With these inherent sensory capabilities, the material can adopt both sensing and actuation functions in …
- 230000004907 flux 0 abstract description 48
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Chen et al. | Feedback linearization of active magnetic bearings: current-mode implementation | |
Chen et al. | Application of voice coil motors in active dynamic vibration absorbers | |
Hiller et al. | Attenuation and transformation of vibration through active control of magnetostrictive Terfenol | |
Pota et al. | Creep, hysteresis, and cross-coupling reduction in the high-precision positioning of the piezoelectric scanner stage of an atomic force microscope | |
Katalenic et al. | High-precision force control of short-stroke reluctance actuators with an air gap observer | |
CN102319664B (en) | Electromagnetic vibration table system with adjustable electric viscoelastic support device | |
JP2010230310A (en) | Servo vibration sensor and vibration controller | |
Kuhnen et al. | Integral feedback control of a self-sensing magnetostrictive actuator | |
Bonfitto et al. | Resonant inductive displacement sensor for active magnetic bearings | |
Ito et al. | High-speed scanner with nanometer resolution using a hybrid reluctance force actuator | |
Fleming et al. | Synthesis and implementation of sensor-less active shunt controllers for electromagnetically actuated systems | |
Zhao et al. | Design and control of a dual-stage actuation active vibration isolation system | |
Ding et al. | The design of a sub-Hz magnetic-suspended geophone | |
US6465933B1 (en) | Method for electronic damping of piezoelectric positioners | |
Zhang et al. | Dynamic magnetostrain properties of giant magnetostrictive alloy actuators fordamping | |
Li et al. | Asymptotically exact linearizations for active magnetic bearing actuators in voltage control configuration | |
Park et al. | A voice coil actuator driven active vibration isolation system with the consideration of flexible modes | |
Choi et al. | An active geophone sensor with optimized state variable filter for measuring low-band frequencies | |
Mukhopadhyay | Do we really need sensors? A sensorless magnetic bearing perspective | |
JPH0915868A (en) | Passive vibration eliminating device | |
Jung et al. | Development of a novel maglev positioner with self-stabilizing property | |
Chuang et al. | Robust H∞ control of hysteresis in a piezoelectric stack actuator | |
Paulitsch et al. | Internal velocity feedback for stabilisation of inertial actuators for active vibration control | |
Dozor et al. | Nonlinear modeling for control of Terfenol-D-based actuators | |
Rakotondrabe et al. | Nonlinear and Robust Internal Model Control of a Piezoelectric Actuator Devoted to Characterization at the Micro/Nanoscale |