ASTM E 3125 : 2017
Current
The latest, up-to-date edition.
Standard Test Method for Evaluating the Point-to-Point Distance Measurement Performance of Spherical Coordinate 3D Imaging Systems in the Medium Range
Hardcopy , PDF
English
09-05-2022
CONTAINED IN VOL. 10.04, 2017 Defines the performance evaluation of laser-based, scanning, time-of-flight, single-detector 3D imaging systems in the medium-range and provides a basis for comparisons among such systems.
Committee |
E 57
|
DocumentType |
Test Method
|
Pages |
38
|
PublisherName |
American Society for Testing and Materials
|
Status |
Current
|
1.1This test method covers the performance evaluation of laser-based, scanning, time-of-flight, single-detector 3D imaging systems in the medium-range and provides a basis for comparisons among such systems. This standard best applies to spherical coordinate 3D imaging systems that are capable of producing a point cloud representation of an object of interest. In particular, this standard establishes requirements and test procedures for evaluating the derived-point to derived-point distance measurement performance throughout the work volume of these systems. Although the tests described in this standard may be used for non-spherical coordinate 3D imaging systems, the test method may not necessarily be sensitive to the error sources within those instruments.
1.2System performance is evaluated by comparing measured distance errors between pairs of derived-points to the manufacturer-specified, maximum permissible errors (MPEs). In this standard, a derived-point is a point computed using multiple measured points on the target surface (such as the center of a sphere). In the remainder of this standard, the term point-to-point distance refers to the distance between two derived-points.
1.3The term “medium-range” refers to systems that are capable of operating within at least a portion of the ranges from 2 m to 150 m. The term “time-of-flight systems” includes phase-based, pulsed, and chirped systems. The word “standard” in this document refers to a documentary standard in accordance with Terminology E284.
1.4This test method may be used once to evaluate the Instrument Under Test (IUT) for a given set of conditions or it may be used multiple times to assess the performance of the IUT for various conditions (for example, surface reflectance factors, environmental conditions).
1.5SI units are used for all calculations and results in this standard.
1.6This test method is not intended to replace more in-depth methods used for instrument calibration or compensation, and specific measurement applications may require other tests and analyses.
1.7This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. Some aspects of the safe use of 3D imaging systems are discussed in Practice E2641.
1.8This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
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ASTM E 2919 : 2013 | Standard Test Method for Evaluating the Performance of Systems that Measure Static, Six Degrees of Freedom (6DOF), Pose |
ASTM E 2544 : 2007 : REV A | Standard Terminology for Three-Dimensional (3-D) Imaging Systems |
ISO/IEC Guide 99:2007 | International vocabulary of metrology Basic and general concepts and associated terms (VIM) |
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ASTM E 1331 : 2004 | Standard Test Method for Reflectance Factor and Color by Spectrophotometry Using Hemispherical Geometry |
ASTM E 1164 : 2012 : EDT 1 | Standard Practice for Obtaining Spectrometric Data for Object-Color Evaluation |
ASTM E 1164 : 1994 | Standard Practice for Obtaining Spectrophotometric Data for Object-Color Evaluation |
ASTM E 1164 : 2012 : R2023 : EDT 1 | Standard Practice for Obtaining Spectrometric Data for Object-Color Evaluation |
ASTM E 2544 : 2011 : REV A : R2019 | Standard Terminology for Three-Dimensional (3D) Imaging Systems |
ASTM E 2544 : 2011 : REV A : R2019 : EDT 1 | Standard Terminology for Three-Dimensional (3D) Imaging Systems |
ASTM E 1164 : 2023 | Standard Practice for Obtaining Spectrometric Data for Object-Color Evaluation |
ASTM E 2919 : 2022 | Standard Test Method for Evaluating the Performance of Systems that Measure Static, Six Degrees of Freedom (6DOF), Pose |
ASTM E 2544 : 2011 | Standard Terminology for Three-Dimensional (3D) Imaging Systems |
ASTM E 2544 : 2008 : REV B | Standard Terminology for Three-Dimensional (3D) Imaging Systems |
ISO 10360-10:2016 | Geometrical product specifications (GPS) Acceptance and reverification tests for coordinate measuring systems (CMS) Part 10: Laser trackers for measuring point-to-point distances |
ASTM E 1164 : 2002 | Standard Practice for Obtaining Spectrometric Data for Object-Color Evaluation |
ASTM E 1331 : 2009 | Standard Test Method for Reflectance Factor and Color by Spectrophotometry Using Hemispherical Geometry |
ASTM E 1164 : 2012 | Standard Practice for Obtaining Spectrometric Data for Object-Color Evaluation |
ASTM E 2641 : 2009 : R2017 | Standard Practice for Best Practices for Safe Application of 3D Imaging Technology |
ASTM E 1331 : 2015 : R2019 | Standard Test Method for Reflectance Factor and Color by Spectrophotometry Using Hemispherical Geometry |
ASTM E 2938 : 2015 | Standard Test Method for Evaluating the Relative-Range Measurement Performance of 3D Imaging Systems in the Medium Range |
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ASTM E 2544 : 2010 | Standard Terminology for Three-Dimensional (3D) Imaging Systems |
ASTM E 1331 : 2015 : REDLINE | Standard Test Method for Reflectance Factor and Color by Spectrophotometry Using Hemispherical Geometry |
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ISO/IEC Guide 98-3:2008 | Uncertainty of measurement — Part 3: Guide to the expression of uncertainty in measurement (GUM:1995) |
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