Behavior Monitoring Based On Intensity Matrix Distribution In Output Plane
Of Singlemode Fiber Bundle
- doi: 10.1109/TIM.2017.2786676
-
title: Behavior Monitoring Based on Intensity Matrix
Distribution in Output Plane of Single-Mode Fiber Bundle
- publisher: IEEE
- isbn:
- issn: 1557-9662
- rank: 1711
- access_type: LOCKED
- content_type: Journals
-
abstract: A smart structure using intensity-based
optical fiber sensors has the potential to be a simple and low-cost
system. In this paper, a novel fiber-optic smart structure system using
a complementary metal-oxide-semiconductor (CMOS) is demonstrated that
simultaneously monitors a number of hetero-core optical fiber bending
sensors. The proposed system can integrate a number of optical fiber
transmission lines. Therefore, the system does not require a number of
photodetectors, which is different from conventional techniques. To
simultaneously measure optical intensity, we coupled a number of
hetero-core optical fiber sensors to a CMOS camera. The optical fiber
sensor can detect macrobending to the optical light intensity. The
output images comprise luminance spots distribution directly
representing the sensor arrangements in the smart structure. A template
matching technique based on the sum of absolute differences was
introduced to distinguish between the overall behaviors of structures. A
recognition experiment for object shapes was performed with a smart
pressure sheet in which hetero-core optical fiber sensors are embedded
as a simple case. In addition, a real-time human body posture
recognition application was implemented using a fiber-optic smart
clothing to apply the proposed system. Recognition results show that all
images comprising luminance spots distribution were matched with the
correct template images, with an error rate of 0% for 15 trials.
- article_number: 8255680
-
pdf_url:
https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=8255680
-
html_url:
https://ieeexplore.ieee.org/document/8255680/
-
abstract_url:
https://ieeexplore.ieee.org/document/8255680/
-
publication_title: IEEE Transactions on Instrumentation
and Measurement
- conference_location:
- conference_dates:
- publication_number: 19
- is_number: 8309486
- publication_year: 2018
- publication_date: April 2018
- start_page: 930
- end_page: 937
- citing_paper_count: 2
- citing_patent_count: 0
- download_count: 254
- insert_date: 20180112
-
index_terms:
-
ieee_terms:
- Optical imaging
- Optical fiber sensors
- Optical fibers
- Intelligent sensors
-
author_terms:
- Complementary metal–oxide–semiconductor (CMOS) camera
- fiber-optic smart structure
- hetero-core fiber optics
- image processing
- intensity-based fiber-optic sensor
-
dynamic_index_terms:
- Light Intensity
- Optical Fiber
- Fiber-optic
- Optical Fibre
- Body Position
- Body Posture
- Body Locations
- Transmission Line
- Optical Spectra
- Optical Light
- Structural Behavior
- Structural Behaviour
- Optical Sensors
- Simultaneous Measurement
- Object Shape
- Template Matching
- Template-matching
- Template Image
- Fiber Sensor
- Sum Of Absolute Differences
- Complementary Metal-oxide Semiconductor Camera
- Complementary Metal-oxide-semiconductor Camera
- Smart Structures
- Image Resolution
- Input Image
- Similarity Score
- Camera System
- Range Of Pixels
- Shoulder Abduction
- Image Luminance
- Circle Shape
- Elbow Flexion
- Normalized Cross-correlation
- Normalized Cross-correlation Coefficient
- Luminance Values
- Donut-shaped
- Doughnut-shaped
- Fusion Splicer
-
authors:
-
Author Name: Yuya Koyama
Affiliation: Department of Information Systems
Science, SOKA University, Hachioji, Japan
Author URL:
https://ieeexplore.ieee.org/author/38567393400
ID: 38567393400
Order: 1
Author Affiliations:
-
Department of Information Systems Science, SOKA University,
Hachioji, Japan
-
Author Name: Michiko Nishiyama
Affiliation: Department of Science and Engineering
for Sustainable Innovation, SOKA University, Hachioji, Japan
Author URL:
https://ieeexplore.ieee.org/author/37296095700
ID: 37296095700
Order: 2
Author Affiliations:
-
Department of Science and Engineering for Sustainable
Innovation, SOKA University, Hachioji, Japan
-
Author Name: Kazuhiro Watanabe
Affiliation: Department of Science and Engineering
for Sustainable Innovation, SOKA University, Hachioji, Japan
Author URL:
https://ieeexplore.ieee.org/author/37292799900
ID: 37292799900
Order: 3
Author Affiliations:
-
Department of Science and Engineering for Sustainable
Innovation, SOKA University, Hachioji, Japan
Image Sensor
- sensor_type: CMOS
- resolution: 3 megapixels
- dynamic_range: Not specified
- pixel_size: Not specified
- dark_current: Not specified
Optical Data
- focal_length: Not specified
- aperture: Not specified
- field_of_view: Not specified
- distortion: Not specified
Performance Metrics
Applications & Benefits
- cell_imaging: Not specified
-
benefits: The system can monitor multiple sensor
signals simultaneously.
Supporting Organizations
- supported_by: Not specified
Manuscript Details
- publication_date: April 2018
Relevancy Score
- score: 9
-
missing_fields:
- dynamic_range
- fill factor
- quantum efficiency
- dark current
- signal-to-noise ratio
- power consumption
- pixel size
- focal length
- aperture
- field of view
- distortion
- sensitivity
- shutter speed
- noise
Processed JSON Filename
request_01fd854f-25a2-4a8b-a634-a1f3e627e0be-behavior_monitoring_based_on_intensity_matrix_distribution_in_output_plane_of_singlemode_fiber_bundle.json