Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-static devices, if significant compliance and/or stringent requirements on measurements bandwidth are in order, a dynamic analysis of such sensors is necessary. In this paper we consider the optimal (in a worst-case sense) design of F/T sensors, based on distributed-parameter models of its compliance, and algorithms that can be used to obtain F/T measurements in real time with high bandwidth. Theoretical expectations are confirmed by experimental results
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...
Piezoresistive or piezoelectric force sensors are widely available today. These sensors are preferre...
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
In several fields and applications, the measurement of the forces acting during the working phases i...
[出版社版](c)2005 IEEE. Personal use of this material is permitted. However, permission to reprint/repub...
Piezoresistive or piezoelectric force sensors are widely available today. These sensors are preferre...
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...
Piezoresistive or piezoelectric force sensors are widely available today. These sensors are preferre...
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
Although present-day force/torque (F/T) sensors are mostly designed and used as if they were quasi-s...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
The measurement of time-varying forces and torques applied to flexible mechanical structures cannot ...
In several fields and applications, the measurement of the forces acting during the working phases i...
[出版社版](c)2005 IEEE. Personal use of this material is permitted. However, permission to reprint/repub...
Piezoresistive or piezoelectric force sensors are widely available today. These sensors are preferre...
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...
Piezoresistive or piezoelectric force sensors are widely available today. These sensors are preferre...
This study describes a novel calibration method for six-degrees-of-freedom force/torque sensors (FTs...