Ir Indoor Localization And Wireless Transmission For Motion Control In
Smart Building Applications Based On Wiimote Technology
- doi:
-
title: IR indoor localization and wireless transmission
for motion control in smart building applications based on Wiimote
technology
- publisher: IEEE
- isbn: 978-4-907764-35-7
- issn:
- partnum: 10TH9151
- rank: 2681
- access_type: LOCKED
- content_type: Conferences
-
abstract: With the implementation of sensors and
actuators into buildings, spaces therefore have sensing ability,
flexibility, and interactivity. Moreover, there is also the ability of
auto-transformation in space depending on weathers and habitants' needs
and behaviors, which overthrows the traditional motionless building
space concept. A space is considered as a huge robot, and every space
cube is constituted by hundreds of small modulized robots. To be more
specific, in order to fulfill the experiment of robotic buildings, this
paper focuses on space walls motion unit experiments, and develops a
sensing system that can achieve extremely accurate positioning. Accuracy
of general indoor localization technique is about a few meters to a few
centimeters. In this paper, we developed the high expandability and
extremely accurate localization technique by utilizing IR LED array
combined with CMOS image sensor built in Wiimote controller, and
accomplishing the algorithm by LabVIEW program. We design various types
of dynamic experiment on linear motor to verify the positioning
performance and expandability of Wiimote system. In this paper, we will
interpret and discuss thoroughly about the principle of geometry,
algorithm of positioning, and the relation of CMOS image sensor
resolution between IR LEDs and Wiimote camera in the actual positioning.
Then will use the Wiimote controller built-in components and I/O ports
for varied environmental sensing and motion control demostration, and
integrated into the applications of robotic building and interactive
E-Life. Not only does the IR localization system based on Wiimote can
apply to position control and service of household robots, but also it
can achieve the modulized vehicles of smart building surface with the
idea of aggregate space robots. The modulized space robots can vary its
patterns, and adjust the light, wind. It also illuminates indoor by LED
modules charged from solar cells.
- article_number: 5602939
-
pdf_url:
https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=5602939
-
html_url:
https://ieeexplore.ieee.org/document/5602939/
-
abstract_url:
https://ieeexplore.ieee.org/document/5602939/
-
publication_title: Proceedings of SICE Annual
Conference 2010
- conference_location: Taipei, Taiwan
- conference_dates: 18-21 Aug. 2010
- publication_number: 5593294
- is_number: 5601973
- publication_year: 2010
- publication_date: 18-21 Aug. 2010
- start_page: 1781
- end_page: 1785
- citing_paper_count: 5
- citing_patent_count: 0
- download_count: 1031
- insert_date: 20101014
-
index_terms:
-
ieee_terms:
- Robot sensing systems
- Light emitting diodes
- Aerospace electronics
- Wireless communication
- Wireless sensor networks
-
author_terms:
- Wiimote
- IR LED
- Indoor localization
- Motion control CMOS image sensor
- SMD LED
- Smart building
-
dynamic_index_terms:
- Motor Control
- Wireless Transmission
- Radio Transmitters
- Indoor Localization
- Indoor Positioning
- Smart Buildings
- Solar Cells
- LabVIEW
- Image Sensor
- Camera Sensor
- Translational Motion
- Linear Motion
- Robot Control
- Localization Techniques
- LabVIEW Program
- Space Robot
- Robot Exploration
- Building Surface
- Implementation Of Sensors
- Indoor Environments
- Circuit Board
- Piezoelectric Actuator
- Bimorph
- IR Light
-
isbn_formats:
-
format: CD,
value: 978-4-907764-35-7,
isbnType: New-2005
-
format: Print ISBN,
value: 978-1-4244-7642-8,
isbnType: New-2005
-
format: Electronic ISBN,
value: 978-4-907764-36-4,
isbnType: New-2005
-
authors:
-
Author Name: Po-Wei Chen
Affiliation: Institute of Nanotechnology and
Microsystem Engineering, National Cheng Kung University, Tainan,
Taiwan
Author URL:
https://ieeexplore.ieee.org/author/37600339600
ID: 37600339600
Order: 1
Author Affiliations:
-
Institute of Nanotechnology and Microsystem Engineering,
National Cheng Kung University, Tainan, Taiwan
-
Author Name: Kuang-Shun Ou
Affiliation: Department of Mechanical Engineering,
National Cheng Kung University, Tainan, Taiwan
Author URL:
https://ieeexplore.ieee.org/author/37585638400
ID: 37585638400
Order: 2
Author Affiliations:
-
Department of Mechanical Engineering, National Cheng Kung
University, Tainan, Taiwan
-
Author Name: Kuo-Shen Chen
Affiliation: National Cheng Kung University,
Tainan, TW
Author URL:
https://ieeexplore.ieee.org/author/37278251800
ID: 37278251800
Order: 3
Author Affiliations:
- National Cheng Kung University, Tainan, TW
Image Sensor
- sensor_type: CMOS
- resolution: 1024×768 pixels
- dynamic_range: Not specified
- pixel_size: Not specified
- dark_current: Not specified
Optical Data
- focal_length: Not specified
- aperture: Not specified
- field_of_view: 45°
- distortion: Not specified
Performance Metrics
Applications & Benefits
- cell_imaging: Not specified
-
benefits: Provides motion control and localization in
smart building applications.
Supporting Organizations
-
supported_by: National Science Council (NSC Project
No.: NSC97-2221-E-006-152-MY3)
Manuscript Details
- publication_date: 18-21 Aug. 2010
Relevancy Score
- score: 9
-
missing_fields:
- dynamic_range
- power_consumption
- dark_current
- sensitivity
- shutter_speed
- frame_rate
- signal_to_noise_ratio
- noise
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