A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permanent magnet mover is proposed. A state of levitation and actuation is obtained by mechanically altering the orientation of the stator magnets to control the forces and torques on the mover. In this study, a stator design method is proposed, allowing decoupled sinusoidal traveling magnetic fields to be created. The decoupled magnetic fields are important for independent linear translations in the plane and allow for a conventional permanent magnet mover to be used in the actuator. This study obtained an airgap-dependent mean total harmonic distortion of 1.64%.</p
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper presents three types of magnetostatic models of ironless planar actuators with moving mag...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
Abstract—This paper concerns the design, optimization, and commutation of a six-degree-of-freedom pl...
This paper concerns the design, optimization, and commutation of a six-degree-of-freedom planar actu...
This paper concerns the design, optimization, and commutation of a six-degree-of-freedom planar actu...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
Mechanical systems with multiple degrees of freedom typically consist of several one degree-of-freed...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper presents three types of magnetostatic models of ironless planar actuators with moving mag...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
A novel planar actuator that utilizes mechanically driven stator magnet arrays to levitate a permane...
Abstract—This paper concerns the design, optimization, and commutation of a six-degree-of-freedom pl...
This paper concerns the design, optimization, and commutation of a six-degree-of-freedom planar actu...
This paper concerns the design, optimization, and commutation of a six-degree-of-freedom planar actu...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
Mechanical systems with multiple degrees of freedom typically consist of several one degree-of-freed...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper concerns the design, optimization and commutation of a six degree-of-freedom planar actua...
This paper presents three types of magnetostatic models of ironless planar actuators with moving mag...