This paper describes a high force density linear electromagnetic actuator for active vehicle suspension. The actuator integrates an 18-slot, 8-pole permanent magnet (PM) machine and a magnetic screw into a single unit to achieve significantly higher force density compared to the design employing linear electromagnetic actuation technology. The leading design parameters of the motor part and the magnetic screw part of the actuator are optimized against a given set of specification. Furthermore, due to the difficulty in manufacturing the helically magnetized magnet pattern, a more practical magnetic screw assembly employing radially magnetized magnet segments is described and its performance assessed. Finite element method (FEM) and analytica...
This paper encompasses a detailed study of the redesign of a novel Magnetic Lead Screw (MLS) active ...
In applications, such as vibration isolation, gravity compensation, pick-and-place machines, etc., t...
This paper deals with the design, implementation and experimental validation of a complete, electric...
This paper describes a high force density linear electromagnetic actuator for active vehicle suspens...
Active suspension is key to improve ride comfort while maintaining good stability of the vehicle und...
There is a growing interest in employing brushless permanent magnet actuators in direct-drive linear...
Significant improvements in automobile suspension performance are achieved by active systems. Howeve...
There is an ever increasing commercial interest in employing permanent magnet actuators in automotiv...
The paper presents a design procedure for a novel linear electromechanical actuator from a basic con...
In this paper attention is given to the initial design and experimental verification of the novel IU...
1noWe describe an engineering solution to manufacture electromagnetic linear actuators for moving ru...
This paper presents the model of the electromagnetic active suspension consisting of an electromagne...
This paper is the second part of the work described in Part I. In Part I, starting from a conceptual...
This paper encompasses a detailed study of the redesign of a novel Magnetic Lead Screw (MLS) active ...
In applications, such as vibration isolation, gravity compensation, pick-and-place machines, etc., t...
This paper deals with the design, implementation and experimental validation of a complete, electric...
This paper describes a high force density linear electromagnetic actuator for active vehicle suspens...
Active suspension is key to improve ride comfort while maintaining good stability of the vehicle und...
There is a growing interest in employing brushless permanent magnet actuators in direct-drive linear...
Significant improvements in automobile suspension performance are achieved by active systems. Howeve...
There is an ever increasing commercial interest in employing permanent magnet actuators in automotiv...
The paper presents a design procedure for a novel linear electromechanical actuator from a basic con...
In this paper attention is given to the initial design and experimental verification of the novel IU...
1noWe describe an engineering solution to manufacture electromagnetic linear actuators for moving ru...
This paper presents the model of the electromagnetic active suspension consisting of an electromagne...
This paper is the second part of the work described in Part I. In Part I, starting from a conceptual...
This paper encompasses a detailed study of the redesign of a novel Magnetic Lead Screw (MLS) active ...
In applications, such as vibration isolation, gravity compensation, pick-and-place machines, etc., t...
This paper deals with the design, implementation and experimental validation of a complete, electric...