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      Optimization-based Feedback Manipulation Through an Array of Ultrasonic Transducers

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          Abstract

          In this paper we document a novel laboratory experimental platform for non-contact planar manipulation (positioning) of millimeter-scale objects using acoustic pressure. The manipulated objects are either floating on a water surface or rolling on a solid surface. The pressure field is shaped in real time through an 8-by-8 array (matrix) of ultrasonic transducers. The transducers are driven with square voltages whose phase-shifts are updated periodically every few milliseconds based on the difference between the desired and true (estimated from video) position. Numerical optimization is used within every period of a discrete-time feedback loop to determine the phase shifts for the voltages. The platform can be used as an affordable testbed for algorithms for non-contact manipulation through arrays of actuators as all the design and implementation details for the presented platform are shared with the public through a dedicated git repository. The platform can certainly be extended towards higher numbers of simultaneously yet independently manipulated objects and larger manipulation areas by the expanding the transducer array.

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          Rendering volumetric haptic shapes in mid-air using ultrasound

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            Author and article information

            Journal
            04 February 2019
            Article
            1902.01328
            46f7be36-4012-4845-8c58-631128e0efcb

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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            6 pages, 8th IFAC Symposium on Mechatronic Systems
            cs.SY

            Performance, Systems & Control
            Performance, Systems & Control

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