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Feedforward neural network for force coding of an MRI-compatible tactile sensor array based on fiber bragg grating
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نویسنده
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saccomandi p. ,oddo c.m. ,zollo l. ,formica d. ,romeo r.a. ,massaroni c. ,caponero m.a. ,vitiello n. ,guglielmelli e. ,silvestri s. ,schena e.
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منبع
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journal of sensors - 2015 - دوره : 2015 - شماره : 0
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چکیده
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This work shows the development and characterization of a fiber optic tactile sensor based on fiber bragg grating (fbg) technology. the sensor is a 3 × 3 array of fbgs encapsulated in a pdms compliant polymer. the strain experienced by each fbg is transduced into a bragg wavelength shift and the inverse characteristics of the sensor were computed by means of a feedforward neural network. a 21 mn rmse error was achieved in estimating the force over the 8 n experimented load range while including all probing sites in the neural network training procedure,whereas the median force rmse was 199 mn across the 200 instances of a monte carlo randomized selection of experimental sessions to evaluate the calibration under generalized probing conditions. the static metrological properties and the possibility to fabricate sensors with relatively high spatial resolution make the proposed design attractive for the sensorization of robotic hands. furthermore,the proved mri-compatibility of the sensor opens other application scenarios,such as the possibility to employ the array for force measurement during functional mri-measured brain activation. © 2015 paola saccomandi et al.
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آدرس
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research unit of measurements and biomedical instrumentation,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy, biorobotics institute,scuola superiore sant'anna,polo sant'anna valdera,viale rinaldo piaggio 34, Italy, research unit of biomedical robotics and biomicrosystems,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy, research unit of biomedical robotics and biomicrosystems,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy, research unit of biomedical robotics and biomicrosystems,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy, research unit of measurements and biomedical instrumentation,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy, photonics micro- and nanostructures laboratory,research centre of frascati,enea,via enrico fermi 45, Italy, biorobotics institute,scuola superiore sant'anna,polo sant'anna valdera,viale rinaldo piaggio 34, Italy, research unit of biomedical robotics and biomicrosystems,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy, research unit of measurements and biomedical instrumentation,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy, research unit of measurements and biomedical instrumentation,center for integrated research,università campus bio-medico di roma,via álvaro del portillo 21, Italy
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Authors
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