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Characterization of the Range Performance of a 3D Imaging System (NIST TN 1695)
Contributor(s): Nist (Author)
ISBN: 1496159888     ISBN-13: 9781496159885
Publisher: Createspace Independent Publishing Platform
OUR PRICE:   $13.29  
Product Type: Paperback
Published: March 2014
Qty:
Additional Information
BISAC Categories:
- Technology & Engineering | Automation
Physical Information: 0.17" H x 8.5" W x 11.02" (0.48 lbs) 84 pages
 
Descriptions, Reviews, Etc.
Publisher Description:
A 3D imaging instrument is a non-contact measurement instrument used to rapidly obtain 3D information about a scene or object. The use of and the applications for these instruments have grown tremendously in the last decade. The expanded use of 3D imaging instruments has revealed a significant lack of commonly accepted methods and standards to both characterize and report the performance of these systems, and to develop confidence limits for the data and their end products. Industry, and in particular the construction sector, needs open, consensus-based standards regarding the performance and use of 3D imaging instruments for construction applications. To support this need, the National Institute of Standards and Technology (NIST) is developing the measurement science (e.g., performance data) required to facilitate the development of standards for 3D imaging instruments. As a part of this effort, NIST conducted experiments to characterize the range performance of 3D imaging instruments. The objective of the experiments was to evaluate the effects of various factors on the range error of a 3D imaging instrument. The factors evaluated were: range, angle-of-incidence (AOI), reflectivity, azimuth angle, method of obtaining range measurement (measure single point on target or scanning target), and target type (planar vs. spherical). The results of these experiments are presented in this report.