© Cambridge University Press 2019. Summary This paper deals with the robust force and position control problems of series elastic actuators (SEAs). It is shown that an SEA\u27s force control problem can be described by a second-order dynamic model which suffers from only matched disturbances. However, the position control dynamics of an SEA is of fourth order and includes matched and mismatched disturbances. In other words, an SEA\u27s position control is more complicated than its force control, particularly when disturbances are considered. A novel robust motion controller is proposed for SEAs by using disturbance observer (DOb) and sliding mode control. When the proposed robust motion controller is implemented, an SEA can precisely track ...
Series elastic actuators (SEAs) have become fundamental components in robots that physically interac...
Force-controlled series elastic actuators (SEA) are widely used in novel human-robot interaction (HR...
Series elastic actuators (SEAs) have become fundamental components in robots that physically interac...
In this paper, a new robust force controller is proposed for Series Elastic Actuators (SEAs) by usin...
In this paper, a new robust position controller is proposed for Series Elastic Actuators (SEAs) by u...
A Series Elastic Actuator (SEA) is designed by placing a passive compliant element between a convent...
This paper proposes an acceleration-based robust controller for the motion control problem, i.e., po...
Force-controlled series elastic actuators (SEA) are widely used in novel human-robot interaction (HR...
This paper deals with the decentralized force control problem of compliant robots driven by Series E...
Series Elastic Actuators (SEAs) have several mechanical superiorities over conventional stiff and no...
This paper proposes a new robust position control method for a novel series elastic actuator (SEA). ...
Force-controlled series elastic actuators (SEA) are widely used in novel human-robot interaction (HR...
This paper presents a comparison study for the robust force control of series elastic actuators (SEA...
Series Elastic Actuators (SEAs) have several mechanical superiorities over conventional stiff and no...
Series Elastic Actuators (SEAs) have several superiorities over conventional stiff and non-back-driv...
Series elastic actuators (SEAs) have become fundamental components in robots that physically interac...
Force-controlled series elastic actuators (SEA) are widely used in novel human-robot interaction (HR...
Series elastic actuators (SEAs) have become fundamental components in robots that physically interac...
In this paper, a new robust force controller is proposed for Series Elastic Actuators (SEAs) by usin...
In this paper, a new robust position controller is proposed for Series Elastic Actuators (SEAs) by u...
A Series Elastic Actuator (SEA) is designed by placing a passive compliant element between a convent...
This paper proposes an acceleration-based robust controller for the motion control problem, i.e., po...
Force-controlled series elastic actuators (SEA) are widely used in novel human-robot interaction (HR...
This paper deals with the decentralized force control problem of compliant robots driven by Series E...
Series Elastic Actuators (SEAs) have several mechanical superiorities over conventional stiff and no...
This paper proposes a new robust position control method for a novel series elastic actuator (SEA). ...
Force-controlled series elastic actuators (SEA) are widely used in novel human-robot interaction (HR...
This paper presents a comparison study for the robust force control of series elastic actuators (SEA...
Series Elastic Actuators (SEAs) have several mechanical superiorities over conventional stiff and no...
Series Elastic Actuators (SEAs) have several superiorities over conventional stiff and non-back-driv...
Series elastic actuators (SEAs) have become fundamental components in robots that physically interac...
Force-controlled series elastic actuators (SEA) are widely used in novel human-robot interaction (HR...
Series elastic actuators (SEAs) have become fundamental components in robots that physically interac...