Abstract
Ultrasound transducer arrays are capable of producing
tactile sensations on the hand, promising hands-free haptic interaction for
virtual environments. However, controlling such an array with respect
to reproducing a desired perceived interaction remains a challenging
problem. In this work we approach this problem as a dynamic mapping
of virtual interactions to existing control metaphors of ultrasound devices,
namely, the modulation of focal point positions and intensities over time,
a method known as Spatiotemporal Modulation (STM). In particular,
we propose an optimization approach that takes into account known
perceptual parameters and limitations of the STM method. This results
in a set of focal point paths optimized to best reconstruct an arbitrary
target pressure field.
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Institute of Electrical and Electronics Engineers
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H. Barreiro, S. Sinclair and M. A. Otaduy, "Path Routing Optimization for STM Ultrasound Rendering," in IEEE Transactions on Haptics, vol. 13, no. 1, pp. 45-51, 1 Jan.-March 2020
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