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Title:
SISTEM ZA ZAJEMANJE IN VIZUALIZACIJO GIBANJA Z UPORABO PLASTIČNIH OPTIČNIH VLAKEN
Authors:
ID
Macuh, Boris
(Author)
ID
Đonlagić, Denis
(Mentor)
More about this mentor...
Files:
VS_Macuh_Boris_2010.pdf
(11,09 MB)
MD5: B29C625CE07AA8A0CACA22A1D409497A
PID:
20.500.12556/dkum/4d107100-bfd6-462e-a5ea-f7d3f0315a7d
Language:
Slovenian
Work type:
Undergraduate thesis
Organization:
FERI - Faculty of Electrical Engineering and Computer Science
Abstract:
V diplomski nalogi se bomo posvetili plastičnim optičnim vlaknom s katerimi bomo merili vzdolžne raztezke ter tako posredno zaznavali ter merili gibanje človeških delov telesa. Opisana bo izdelava in delovanje elektronskega vezja, ki temelji na mikrokrmilniku PIC18F4550. Za elektronski del smo poiskali najboljšo rešitev glede občutljivosti, izdelali smo senzorski merilni del sistema ter podrobno opisali delovanje vseh sklopov. Kot zaključek smo v virtualnem okolju izdelali 3D model človeka, katerega roke lahko v realnem času premikamo z raztezanjem vlaken nameščenih na naši obleki. Prav tako smo predstavili postopke in rezultate meritev ločljivosti ter drugih lastnosti plastičnih optičnih vlaken.
Keywords:
Optično vlakno
,
merjenje faznega kota
,
zaznavanje gibanja
,
senzor raztezkov
,
POF
Place of publishing:
Maribor
Publisher:
[B. Macuh]
Year of publishing:
2010
PID:
20.500.12556/DKUM-15060
UDC:
681.586.5(043.2)
COBISS.SI-ID:
14588438
NUK URN:
URN:SI:UM:DK:ADMOVH7S
Publication date in DKUM:
07.09.2010
Views:
2117
Downloads:
203
Metadata:
Categories:
KTFMB - FERI
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:
MACUH, Boris, 2010,
SISTEM ZA ZAJEMANJE IN VIZUALIZACIJO GIBANJA Z UPORABO PLASTIČNIH OPTIČNIH VLAKEN
[online]. Bachelor’s thesis. Maribor : B. Macuh. [Accessed 22 January 2025]. Retrieved from: https://dk.um.si/IzpisGradiva.php?lang=eng&id=15060
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Secondary language
Language:
English
Title:
ACQUISITION AND VISUALIZATION SYSTEM FOR DETECTION OF MOVEMENTS USING PLASTIC OPTIC FIBERS
Abstract:
In this diploma paper we will emphasize on plastic optical fibers with which we will measure longitudinal elongation. By doing so, we will indirectly perceive and measure the motion of human body limbs. The construction and use of the electronic circuit, based on the microcontroller PIC18F4550, will be described. We chose the best possible sensitivity solution for the electronic part and constructed the sensor measuring part of the system. We then accurately described the operation of all parts. In the concluding part, we created a 3D human model in a virtual environment, whose arms we can interact with in real-time by stretching the fibers on our suit. We also presented the procedures and measuring results concerning resolution and other optic fiber characteristics.
Keywords:
Optical fiber
,
measuring the phase angle
,
motion detection
,
strain sensor
,
POF
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