Haptic feedback of rotary switches for HMI: variable torque and energy profiles and MEC model aiming to solve the inverse problem
Shinara Utegenova, Javier Rios Quesada
Abstract
Shinara Utegenova, Javier Rios Quesada
Abstract
Haptic tactile feedback for Human-Machine Interface (HMI) gains in importance in many applications. One of the most common haptic interfaces is a rotary knob [1]–[5]. The haptic feedback of such knobs depends on its torque and energy characteristics (amplitude and variation profile). This paper presents an analytical tool permitting to solve the inverse problem and to design knobs with different torque and energy profiles in order to compare their haptic rending.
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Haptic tactile feedback for Human-Machine Interface (HMI) gains in importance in many applications. One of the most common haptic interfaces is a rotary knob [1]–[5]. The haptic feedback of such knobs depends on its torque and energy characteristics (amplitude and variation profile). This paper presents an analytical tool permitting to solve the inverse problem and to design knobs with different torque and energy profiles in order to compare their haptic rending.
Key concepts: Haptic technology, Torque, Energy (signal processing), Computer science, Inverse, Variable (mathematics), Control theory (sociology), Simulation