A novel 3-DOF optical force sensor for wearable robotic arm

This paper presents a novel 3-DOF optical force sensor for the wearable robotic arm. Precise sensing of human motion is still a challenge. As human motion detection sensors are expected to generate the real time data, with simultaneous measurement of multiple degrees of freedom. The optical sensing...

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Published inInternational journal of precision engineering and manufacturing Vol. 12; no. 4; pp. 623 - 628
Main Authors Shams, Sarmad, Kim, Dong Su, Choi, Youn Sung, Han, Chang Soo
Format Journal Article
LanguageEnglish
Published Seoul The Korean Society for Applied Biological Chemistry 01.08.2011
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Abstract This paper presents a novel 3-DOF optical force sensor for the wearable robotic arm. Precise sensing of human motion is still a challenge. As human motion detection sensors are expected to generate the real time data, with simultaneous measurement of multiple degrees of freedom. The optical sensing is considered to be standard for monitoring the human motion. The optical sensor is consists of high speed camera with integrated DSP (Digital Signal Processor). The DSP use to detect the changes in the sequence of frames to calculate the direction and displacement of its motion in a plane. On the other hand optical sensor eliminates the requirement of being in contact with the subject. Hand is the end-effecter of the arm and can be controlled by a 3-DOF (degree of freedom) shoulder, 2-DOF elbow and 2-DOF wrist joint. In this paper we present a new technique to measure the human’s hand movement in 3 dimensions translation frame. An intelligent computational method for this sensory system to measure the applied force is also developed. The optical force sensor was calibrated and then several experiments were conducted to check the feasibility of sensory system with the wearable robotic arm.
AbstractList This paper presents a novel 3-DOF optical force sensor for the wearable robotic arm. Precise sensing of human motion is still a challenge. As human motion detection sensors are expected to generate the real time data, with simultaneous measurement of multiple degrees of freedom. The optical sensing is considered to be standard for monitoring the human motion. The optical sensor is consists of high speed camera with integrated DSP (Digital Signal Processor). The DSP use to detect the changes in the sequence of frames to calculate the direction and displacement of its motion in a plane. On the other hand optical sensor eliminates the requirement of being in contact with the subject. Hand is the end-effecter of the arm and can be controlled by a 3-DOF (degree of freedom) shoulder, 2-DOF elbow and 2-DOF wrist joint. In this paper we present a new technique to measure the human’s hand movement in 3 dimensions translation frame. An intelligent computational method for this sensory system to measure the applied force is also developed. The optical force sensor was calibrated and then several experiments were conducted to check the feasibility of sensory system with the wearable robotic arm.
Author Shams, Sarmad
Choi, Youn Sung
Kim, Dong Su
Han, Chang Soo
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Cites_doi 10.1088/0022-3735/16/10/007
10.20965/jrm.2005.p0575
10.1109/TMECH.2006.871087
10.1109/TBME.2004.827086
10.1016/j.sna.2006.03.038
10.1007/s12541-010-0102-4
10.1109/JSEN.2009.2026509
10.1007/s12541-010-0080-6
10.1007/3-540-45491-8_6
10.1109/ROBOT.2009.5152758
10.1002/9780470987667
10.1109/ICORR.2009.5209630
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Wearable robotic arm
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References Culshaw (CR9) 1983; 16
CR4
Murakami, Kawagoishi, Kondo, Kodama (CR10) 2010; 11
CR8
Millan, Renkens, Mouriño, Gerstner (CR7) 2004; 51
CR16
CR15
CR14
Kim (CR6) 2007; 133
CR13
CR12
Kajima, Minoshima (CR11) 2010; 11
Kawamoto, Sankai (CR2) 2002; 2398
Ishii, Yamamoto, Hyodo (CR3) 2005; 17
Liu, Inoue, Shibata (CR5) 2009; 9
Zoss, Kazerooni, Chu (CR1) 2006; 11
H. Murakami (80_CR10) 2010; 11
80_CR4
H. Kawamoto (80_CR2) 2002; 2398
80_CR16
80_CR15
80_CR14
80_CR13
B. Culshaw (80_CR9) 1983; 16
80_CR12
M. Ishii (80_CR3) 2005; 17
T. Liu (80_CR5) 2009; 9
M. Kajima (80_CR11) 2010; 11
J. Millan (80_CR7) 2004; 51
A. Zoss (80_CR1) 2006; 11
G. Kim (80_CR6) 2007; 133
80_CR8
References_xml – volume: 16
  start-page: 978
  issue: 10
  year: 1983
  end-page: 986
  ident: CR9
  article-title: Optical Systems and Sensors for Measurement and Control
  publication-title: J. of Physics E: Scientific Instruments
  doi: 10.1088/0022-3735/16/10/007
– volume: 17
  start-page: 575
  issue: 5
  year: 2005
  end-page: 583
  ident: CR3
  article-title: Stand-Alone Wearable Power Assist Suit-Development and Availability
  publication-title: Journal of Robotics and Mechatronics
  doi: 10.20965/jrm.2005.p0575
– volume: 11
  start-page: 128
  issue: 2
  year: 2006
  end-page: 138
  ident: CR1
  article-title: Biomechanical design of the Berkeley lower extremity exoskeleton (BLEEX)
  publication-title: Mechatronics, IEEE/ASME Transactions
  doi: 10.1109/TMECH.2006.871087
– ident: CR4
– ident: CR14
– ident: CR15
– ident: CR16
– ident: CR12
– ident: CR13
– volume: 51
  start-page: 1026
  issue: 6
  year: 2004
  end-page: 1033
  ident: CR7
  article-title: Noninvasive brain-actuated control of a mobile robot by human EEG
  publication-title: IEEE Transactions on Biomedical Engineering
  doi: 10.1109/TBME.2004.827086
– volume: 133
  start-page: 27
  issue: 1
  year: 2007
  end-page: 34
  ident: CR6
  article-title: Design of a six-axis wrist force/moment sensor using FEM and its fabrication for an intelligent robot
  publication-title: Sensors and Actuators A: Physical
  doi: 10.1016/j.sna.2006.03.038
– volume: 2398
  start-page: 19
  year: 2002
  end-page: 29
  ident: CR2
  article-title: Power Assist System HAL-3 for Gait Disorder Person
  publication-title: Computers Helping People with Special Needs
– ident: CR8
– volume: 11
  start-page: 845
  issue: 6
  year: 2010
  end-page: 850
  ident: CR10
  article-title: Optical technique to measure five-degree-of-freedom error motions for a high-speed microspindle
  publication-title: Int. J. Precis. Eng. Manuf.
  doi: 10.1007/s12541-010-0102-4
– volume: 9
  start-page: 1103
  issue: 9
  year: 2009
  end-page: 1110
  ident: CR5
  article-title: A Small and Low-Cost 3-D Tactile Sensor for a Wearable Force Plate
  publication-title: Sensors Journal, IEEE
  doi: 10.1109/JSEN.2009.2026509
– volume: 11
  start-page: 681
  issue: 5
  year: 2010
  end-page: 687
  ident: CR11
  article-title: High-precision positioning stage using optical zooming laser interferometer for linear encoder calibration
  publication-title: Int. J. Precis. Eng. Manuf.
  doi: 10.1007/s12541-010-0080-6
– ident: 80_CR8
– volume: 16
  start-page: 978
  issue: 10
  year: 1983
  ident: 80_CR9
  publication-title: J. of Physics E: Scientific Instruments
  doi: 10.1088/0022-3735/16/10/007
– volume: 17
  start-page: 575
  issue: 5
  year: 2005
  ident: 80_CR3
  publication-title: Journal of Robotics and Mechatronics
  doi: 10.20965/jrm.2005.p0575
– volume: 2398
  start-page: 19
  year: 2002
  ident: 80_CR2
  publication-title: Computers Helping People with Special Needs
  doi: 10.1007/3-540-45491-8_6
– volume: 11
  start-page: 681
  issue: 5
  year: 2010
  ident: 80_CR11
  publication-title: Int. J. Precis. Eng. Manuf.
  doi: 10.1007/s12541-010-0080-6
– ident: 80_CR14
– volume: 9
  start-page: 1103
  issue: 9
  year: 2009
  ident: 80_CR5
  publication-title: Sensors Journal, IEEE
  doi: 10.1109/JSEN.2009.2026509
– ident: 80_CR15
– ident: 80_CR16
– volume: 11
  start-page: 845
  issue: 6
  year: 2010
  ident: 80_CR10
  publication-title: Int. J. Precis. Eng. Manuf.
  doi: 10.1007/s12541-010-0102-4
– ident: 80_CR4
  doi: 10.1109/ROBOT.2009.5152758
– volume: 11
  start-page: 128
  issue: 2
  year: 2006
  ident: 80_CR1
  publication-title: Mechatronics, IEEE/ASME Transactions
  doi: 10.1109/TMECH.2006.871087
– ident: 80_CR13
  doi: 10.1002/9780470987667
– volume: 133
  start-page: 27
  issue: 1
  year: 2007
  ident: 80_CR6
  publication-title: Sensors and Actuators A: Physical
  doi: 10.1016/j.sna.2006.03.038
– volume: 51
  start-page: 1026
  issue: 6
  year: 2004
  ident: 80_CR7
  publication-title: IEEE Transactions on Biomedical Engineering
  doi: 10.1109/TBME.2004.827086
– ident: 80_CR12
  doi: 10.1109/ICORR.2009.5209630
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Snippet This paper presents a novel 3-DOF optical force sensor for the wearable robotic arm. Precise sensing of human motion is still a challenge. As human motion...
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Title A novel 3-DOF optical force sensor for wearable robotic arm
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