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In this work, a strain-based positioning problem is analyzed for indoor localization applications. This inverse mapping problem for estimating force-applied location by a few known strain data is formulated and analyzed for a square plate structure. Finite element (FE) simulations are performed to obtain the correlation between the force-applied location and the output index, which is a combination...
A 1-D touch panel based on strain sensing has been designed and realized as a preliminary test protocol for evaluating smart floor tile design used for indoor localization. By using elementary beam theory, it is possible to inversely compute the location of the force applied based on the outputs of strain gauges attached to each end of the touch panel. Detailed 3D finite element analyses are performed...
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