analysis and visualization at HiST AITeL



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R&D-activities iti related to 3D motion analysis and visualization at HiST AITeL Tomas Holt, Mildrid Ljosland, Atle Nes, Jan H. Nilsen, Grethe Sandtstrak, Bjørn Sæther og Rune H. Bakken NOBIM 2008, Trondheim R&D-activities related to 3D motion analysis and visualization at HiST, AITeL PhD-studies: Motion capturing, 3D-visualization and analyses of ski jumping (Atle Nes) Real time Markerless motion capture and visualization of human movement (Rune H. Bakken) The TrondheimSim Simulation and 3D-visualisering of virtual Trondheim R&D- projects Real time 3D Data Capturing and Visualization of Human Motion in Complex Environments LocMoc-project Cooperation with: NTNU- IDI, -Programme for Movement Science, -Geomatics, HiST AHS, Olympiatoppen dep. Trh., Bonn Univ. College, IT-University København, StatoilHydro, Kongsberg SIM, Metronor 1

Prior R&D-project HYDRIV: Development and implementation of novel Imaging Velocimetry techniques suited to large scale hydraulic facilities. 2000-2003 Coriolis lab in Grenoble: Rotating tank, diam = 13 m Video-recordings in Granåsen PhD-scholarship holder Atle Nes Ski Jumping Hill: Calibration points (Metal bolts white balls + well defined features points) Ski jumper: Signalised points (Strategically placed on the jumping suit) 2

Software and accuracy Camera system calibration (Distance 40-60m 5 cm xyz accuracy) Geomatikk, NTNU (Straal) Synchronised video recordings Own developed software 3D-Motion capturing Own developed software Visualization Own developed software 3D Visualization Granåsen ski jumping arena 3

3D-Visualization A 3D digital model of a ski jumper 3D-Visualization Video 1 Video 2 (from helmet) 4

Simulation and 3D-visualization of virtual Trondheim (demo) demo R&D project Real time 3D Data Capturing and Visualization of Human Motion in Complex Environments Main objective: Develop a high precisison, low-cost portable system which integrates real-time 3D motion capturing and visualization of human and industrial movements, in complex environments. Ongoing activities: Establishing of a Motion capture and visualization laboratory Motion capturing Real time visualization of 3D-models Software/hardware integration Algorithms development 5

Motion Capture and visualization laboratory Motion Capturing System for laboratory 1 Kamera: Oqus 3 Serie (Qualisys) Infrared and high speed video CMOS image sensor: 1280 *1024 pixels Max recording frequency with full resolution and FOV: 500 Hz (image/sec) With reduced FOV: 10000 Hz Software: QTM (Qualisys) System Calibration and motion analysis 2D and 3D data can be exported to e.g. C3D, TSV and directly to Matlab file formats 6

Motion Capturing System for laboratory 2 3AVT Marlin F080B (b/w) Digital Video Cameras: Digital interface: 1394a FireWire IIDC. Picture size: 640x480 (VGA) x 30 fps Resolution depth: 8-bit greyscale. http://www.alliedvisiontec.com Synch pulse Video data + Control signals Motion Capturing System for laboratory 3 Two Projectors: 2 F1+ SXGA+ 1 (Projection Design) Resolution: 1400 * 1050 pixels Light: Up to 4200 lumens Lenses: Ultra Wide 1:1 Two projectors mounted in a special constructed frame for passive stereo 3D-visualization Two front projection screens 3.00m * 2.25m and 2.13m * 1.53m (Da-Lite Cinema Contour) One back projection screen: 2.20m * 1.65m (Stewart Film Screen) Surround sound: Logitech Z-5450 Workstation: Dual core processors Intel Core Duo E6600 2.4 GHz, 4 MB cache, four PCI-e busses Hard disk: 2 * 10 000 rpm i RAID-5 Graphic card: ASUS GeForce 7600 GS (nvidia) 2GB RAM (PC2-6400) 7

The LoCMoC project(2008) LoCMoC is a Bachelor project at HiST, AITeL Computer Engineering Programme Main objektives to develop a lowcost visualization system for motion capture data Video, Application The students: t Are Akselsen,Tommy Fredriksen,Håvard C. Skåle http://stud.aitel.hist.no/locmoc/ R&D - Motion capture and 3Dvisualization staff at HiST AITeL Associate Prof. Mildrid Ljosland PhD-scolarship holders Atle Nes og Rune Bakken Assistant Prof. Grethe Sandstrak Associate Prof. Jan H. Nilsen Assistant Prof. Tomas Holt Associate Prof. II Bjørn Sæther, (Ikke tilstede) 8

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