Fujiwara et al., 2012 - Google Patents
Development of an optical fiber transducer applied to the measurement of finger movementsFujiwara et al., 2012
View PDF- Document ID
- 7439285470875897011
- Author
- Fujiwara E
- Wu Y
- Santos M
- Suzuki C
- Publication year
- Publication venue
- OFS2012 22nd International Conference on Optical Fiber Sensors
External Links
Snippet
A flexible and low-cost optical fiber transducer based on light attenuation by microbending was designed for the measurement of angular displacements. The transducer was tested for predetermined rotations, presenting a higher sensitivity for angles> 10° by spacing the …
- 238000005259 measurement 0 title abstract description 20
Classifications
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRICAL DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterized by the transducing means
- G06F3/042—Digitisers, e.g. for touch screens or touch pads, characterized by the transducing means by opto-electronic means
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01D—MEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
- G01D5/00—Mechanical means for transferring the output of a sensing member; Means for converting the output of a sensing member to another variable where the form or nature of the sensing member does not constrain the means for converting; Transducers not specially adapted for a specific variable
- G01D5/26—Mechanical means for transferring the output of a sensing member; Means for converting the output of a sensing member to another variable where the form or nature of the sensing member does not constrain the means for converting; Transducers not specially adapted for a specific variable characterised by optical transfer means, i.e. using infra-red, visible, or ultra-violet light
- G01D5/32—Mechanical means for transferring the output of a sensing member; Means for converting the output of a sensing member to another variable where the form or nature of the sensing member does not constrain the means for converting; Transducers not specially adapted for a specific variable characterised by optical transfer means, i.e. using infra-red, visible, or ultra-violet light with attenuation or whole or partial obturation of beams of light
- G01D5/34—Mechanical means for transferring the output of a sensing member; Means for converting the output of a sensing member to another variable where the form or nature of the sensing member does not constrain the means for converting; Transducers not specially adapted for a specific variable characterised by optical transfer means, i.e. using infra-red, visible, or ultra-violet light with attenuation or whole or partial obturation of beams of light the beams of light being detected by photocells
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01B—MEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
- G01B11/00—Measuring arrangements characterised by the use of optical means
- G01B11/16—Measuring arrangements characterised by the use of optical means for measuring the deformation in a solid, e.g. optical strain gauge
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01L—MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
- G01L1/00—Measuring force or stress in general
- G01L1/24—Measuring force or stress in general by measuring variations of optical properties of material when it is stressed, e.g. by photoelastic stress analysis using infra-red, visible light, ultra-violet
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Leal-Junior et al. | Optical fiber specklegram sensors for mechanical measurements: A review | |
Galloway et al. | Fiber optic shape sensing for soft robotics | |
Lun et al. | Real-time surface shape sensing for soft and flexible structures using fiber Bragg gratings | |
Li et al. | Embedded FBG-based sensor for joint movement monitoring | |
Fujiwara et al. | Flexible optical fiber bending transducer for application in glove-based sensors | |
Palli et al. | Development of an optoelectronic 6-axis force/torque sensor for robotic applications | |
US20120240691A1 (en) | Elastomeric optical tactile sensor | |
US4972074A (en) | Optical attenuator movement detection system | |
Jiang et al. | Fiber optical multifunctional human-machine interface for motion capture, temperature, and contact force monitoring | |
Lunni et al. | Shape estimation based on kalman filtering: Towards fully soft proprioception | |
Tripicchio et al. | On the integration of FBG sensing technology into robotic grippers | |
Li et al. | Optical fiber data glove for hand posture capture | |
Jang et al. | Towards finger motion capture system using FBG sensors | |
Fujiwara et al. | Development of a glove-based optical fiber sensor for applications in human-robot interaction | |
Fujiwara et al. | Development of an optical fiber transducer applied to the measurement of finger movements | |
Biazi-Neto et al. | FBG-based sensing system to improve tactile sensitivity of robotic manipulators working in unstructured environments | |
Hu et al. | The fiber bragg grating (FBG) sensing glove: A review | |
Leslie et al. | A Tactile Sensing Concept for 3D Displacement and 3D Force Measurement using Light Angle and Intensity Sensing | |
Leal-Junior et al. | Smartphone integrated polymer optical fiber humidity sensor: Towards a fully portable solution for healthcare | |
Wang et al. | Polyimide sensing layer for bending shape measurement in soft surgical manipulators | |
Jha et al. | A fiber Bragg grating-based sensing glove with a sensitivity of 18.45 pm/degree to accurately assess finger flexure | |
Fujiwara et al. | Optical fiber 3D shape sensor for motion capture | |
Pal et al. | Development of an OTDR-Based Hand Glove Optical Sensor for Sign Language Prediction | |
Tripicchio et al. | Towards robust grasping: An analysis of in-hand object motion with FBG optical fibers as force sensing technology | |
Fujiwara et al. | Evaluation of thumb-operated directional pad functionalities on a glove-based optical fiber sensor |