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Smart textiles for wearable motion capture systems

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The implementation of truly wearable instrumented garments capable of recording biomechanical variables is crucial to several fields of application, from multi-media to physical rehabilitation, from sporting to artistic fields. Here we report on wearable devices which are able to read and record the posture and movements of a subject wearing the system. The sensory function of the garments is achieved by fabric strain sensors, based on threads coated with polypyrrole or carbon-loaded rubbers. The presence of conductive elements gives these materials piezoresistive properties, enabling the detection of local strain on the fabric. Strips of strain fabrics are applied together with conductive tracks at strategic points in a shirt and a glove in order to detect the movements of the principal joints. The 'smart shirt'-sensing architecture can be divided into two parts: a textile platform, where a wearable device acquires biomechanical signals, and a hardware/software platform, to which a wireless communication system sends the acquired data after electrical conditioning.
Rocznik
Strony
199--203
Opis fizyczny
Bibliogr. 7 poz.
Twórcy
autor
  • entro 'E. Piaggio', Faculty of Engineering, University of Pisa, via Diotisalvi 2, 56126 Pisa, Italy, tel ++39-050-553639, fax 550650
autor
  • entro 'E. Piaggio', Faculty of Engineering, University of Pisa, via Diotisalvi 2, 56126 Pisa, Italy, tel ++39-050-553639, fax 550650
autor
  • entro 'E. Piaggio', Faculty of Engineering, University of Pisa, via Diotisalvi 2, 56126 Pisa, Italy, tel ++39-050-553639, fax 550650
  • entro 'E. Piaggio', Faculty of Engineering, University of Pisa, via Diotisalvi 2, 56126 Pisa, Italy, tel ++39-050-553639, fax 550650
autor
  • Smartex, via dei Fossi 14, Prato (I), Tel: +39-0574-666251, fax 623656
Bibliografia
  • [1] De Rossi D., Della Santa A., Mazzoldi A. 1999. “Dressware: Wearable hardware’, Material Science & Eng. C, 7:31-35.
  • [2] Scilingo E. P., Lorussi F, Mazzoldi A., De Rossi D. 2002. ‘Strain sensing fabrics for wearable kinaesthetic systems’, IEEE Sensors Journal, in press.
  • [3] De Rossi D., Ghelarducci B., Paradiso R., et al. (2001), ‘Sensing Threads and Fabrics for Monitoring Body Kinematic and Vital Signs’, Proceedings of Fibres and textiles for the future, Tampere, Finland.
  • [4] De Rossi D., Lorussi F., Mazzoldi A., Scilingo E. P, Rocchia W (2001), Strain amplified electroactive conducting polymer actuator, Proceedings of SPIE [4329-07]
  • [5] Caiti A., Canepa G., De Rossi D., Germagnoli F., Magenes G., Parisini T. (1999), IEEE Trans. Syst, Man, Cybern., vol. 25, p. 533-546.
  • [6] Canepa G., Petrigliano R., Campanella M, De Rossi D. (1998), Detection of incipient object slippage by skin-like sensing and neural network processing, IEEE Trans. Syst., Man, Cybern., Part B, vol. 20, n.3, p. 348-356.
  • [7] Bicchi A., Scilingo E.P., De Rossi D. (2000), Haptic discrimination of softness in teleoperation: the role of the contact area spread rate, IEEE Trans. Robotics & Automation, Vol. 16, n.5, p. 496-504.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8b1e87a2-51d1-4975-adf3-2e7edebaa96b
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