DocumentCode :
131079
Title :
Baseline SPAAM calibration accuracy and precision in the absence of human postural sway error
Author :
Moser, Kenneth R. ; Axholt, Magnus ; Swan, J. Edward
fYear :
2014
fDate :
March 29 2014-April 2 2014
Firstpage :
99
Lastpage :
100
Abstract :
We conducted an experiment in an attempt to generate baseline accuracy and precision values for optical see-through (OST) head mounted display (HMD) calibration without the inclusion of human postural sway error. This preliminary work will act as a control condition for future studies into postural error reduction. An experimental apparatus was constructed to allow performance of a SPAAM calibration using 25 alignments taken using one of three distance distribution patterns: static, sequential, and magic square. The accuracy of the calibrations were determined by calculating the extrinsic X, Y, Z translation values from the resulting projection matrix. The standard deviation for each translation component was also calculated. The results show that the magic square distribution resulted in the most accurate parameter estimation and also resulted in the smallest standard deviation for each extrinsic translation component.
Keywords :
calibration; cameras; display devices; parameter estimation; X translation values; Y translation values; Z translation values; baseline SPAAM calibration accuracy; magic square distribution; optical see-through head mounted display; parameter estimation; postural error reduction; precision values; sequential distribution; single point active alignment method; static distribution; Accuracy; Adaptive optics; Assembly; Augmented reality; Calibration; Cameras; Standards; Augmented reality; SPAAM; alignment; calibration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Virtual Reality (VR), 2014 iEEE
Conference_Location :
Minneapolis, MN
Type :
conf
DOI :
10.1109/VR.2014.6802070
Filename :
6802070
Link To Document :
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