ANSI ASME B89.4.10-2000 Methods for Performance Evaluation of Coordinate Measuring Systems Software (Erratum September 2003)《坐标测量系统软件的性能评估方法》.pdf
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1、AN AMERICAN NATIONAL STANDARDMETHODS FORPERFORMANCE EVALUATIONOF COORDINATE MEASURINGSYSTEM SOFTWARE ASME B89.4.10-2000Date of Issuance: July 15, 2002The next edition of this Standard is scheduled for publication in 2005. Therewill be no addenda issued to this Edition.ASME issues written replies to
2、inquiries concerning interpretations oftechnical aspects of this Standard.ASME is the registered trademark of The American Society of Mechanical Engineers.This code or standard was developed under procedures accredited as meeting the criteria forAmerican National Standards. The Standards Committee t
3、hat approved the code or standardwas balanced to assure that individuals from competent and concerned interests have had anopportunity to participate. The proposed code or standard was made available for public reviewand comment that provides an opportunity for additional public input from industry,
4、 academia,regulatory agencies, and the public-at-large.ASME does not “approve,” “rate,” or “endorse” any item, construction, proprietary device,or activity.ASME does not take any position with respect to the validity of any patent rights asserted inconnection with any items mentioned in this documen
5、t, and does not undertake to insure anyoneutilizing a standard against liability for infringement of any applicable letters patent, nor assumeany such liability. Users of a code or standard are expressly advised that determination of thevalidity of any such patent rights, and the risk of infringemen
6、t of such rights, is entirely theirown responsibility.Participation by federal agency representative(s) or person(s) affiliated with industry is not tobe interpreted as government or industry endorsement of this code or standard.ASME accepts responsibility for only those interpretations of this docu
7、ment issued inaccordance with the established ASME procedures and policies, which precludes the issuanceof interpretations by individuals.No part of this document may be reproduced in any form,in an electronic retrieval system or otherwise,without the prior written permission of the publisher.The Am
8、erican Society of Mechanical EngineersThree Park Avenue, New York, NY 10016-5990Copyright 2002 byTHE AMERICAN SOCIETY OF MECHANICAL ENGINEERSAll Rights ReservedPrinted in U.S.A.CONTENTSForeword vStandards Committee Roster . viCorrespondence With the B89 Committee . viii1 Scope 11.1 1Assumptions .1.2
9、 1Application 1.3 1References 2 Terms and Definitions 13 Software Functions . 23.1 2Input Data 3.2 2Data Analysis .4 Performance Characterization . 34.1 3Evaluation of Quality 4.2 4Characteristics of Robustness .4.3 4Characteristics of Reliability 4.4 5Characteristics of Ease-of-Use 4.5 5Related Iss
10、ues .5 Test Methodologies . 65.1 6Test Principles .5.2 6Apparatus .5.3 7Test Procedure 5.4 7Input Parameters .5.5 8Generation of Test Data .5.6 10Test Set .5.7 10Process Data With Test Software .5.8 10Calculation and Interpretation of Results 5.9 10Reporting of Test Results 5.10 11Periodic Reverific
11、ation .6 Software Documentation . 116.1 11Purpose .6.2 11Compliance 6.3 11Required Information Figures1 Example of Fit Bounding 22 Line Evaluation 23 Circle Evaluation 3iii4 Plane Evaluation . 35 Sphere Evaluation 36 Cylinder Evaluation 47 Cone Bounding 58 Cone Evaluation . 69 Major Components of a
12、Software Testing System . 7Tables1 Circle Fit Types . 42 Evaluation Parameters 53 Number of Required Form Errors . 9Mandatory AppendixI Mathematical Descriptions of Form Errors . 13Nonmandatory AppendicesA Factors That Influence the Results 14B NIST Algorithm Testing System (ATS) . 15C Example Docum
13、entation 17D Substitute Features . 19E Datum Reference Frames (DRF) 22F Functional Gage Simulation 23G References . 25ivFOREWORDCoordinate measuring systems (CMSs) rely upon software that processes coordinate data;often this software computes fits of geometric elements to such data. The performance
14、ofthese fits can vary among software packages, and in some cases can be a significantcontributor to the overall uncertainty of measurement.The purpose of this document is to provide guidelines for evaluating the quality ofsolutions generated by CMS software and to define minimal documentation requir
15、ementsfor software providers. This Standard is concerned with testing the behavior of algorithmimplementation, not the testing of algorithms themselves. It is not the intent of this documentto endorse or rate any computational method or system. A mechanism for generatingcollections of test data sets
16、 is specified. While a specific, static collection of standardizedtest data sets is not defined, the generating mechanism can produce several collections ofsimilar character.This Standard was approved by the American National Standards Institute on December1, 2000.vASME STANDARDS COMMITTEE B89Dimens
17、ional Metrology(The following is the roster of the Committee at the time of approval of this Standard.)OFFICERSR. B. Hook, ChairB. Parry, Vice ChairP. Esteban, SecretaryCOMMITTEE PERSONNELK. L. Blaedel, University of CaliforniaJ. B. Bryan, Bryan AssociatesT. Carpenter, U.S. Air ForceT. Charlton, Bro
18、wn (b) reduces the possibility of error in software appli-cation;(c) defines a method of comparing CMS software.This document covers the following areas: inputdata, feature construction, software documentation, per-formance characterization, and test methodologies.1.1 AssumptionsThe assumptions inhe
19、rent in this document are asfollows.(a) Measurement uncertainty in coordinate samplesis not addressed. For information on measurement uncer-tainty, refer to Appendix A and ASME B89.3.2, Dimen-sional Measurement Methods (when released).(b) Methods to input predetermined samples to thecomputational sy
20、stem are available.(c) Personnel have adequate experience and trainingto implement the evaluation and understand the implica-tions of the results.11.2 ApplicationThis document is one component required for theevaluation of CMSs. Other relevant documents can befound in Appendix G.1.3 ReferencesWhen t
21、he following American National Standardsreferred herein are superseded by a revision approvedby the American National Standards Institute, Inc., therevision shall apply.ASME B89.1.12M-1990 Methods for Performance Eval-uation of Coordinate Measuring MachinesASME B89.4.1-1997, Methods for Performance
22、Evalua-tion of Coordinate Measuring MachinesASME Y14.5M-1994, Dimensioning and TolerancingASME Y14.5.1M-1994, Mathematical Definition of Di-mensioning and Tolerancing PrinciplesPublisher: The American Society of Mechanical Engi-neers (ASME International), Three Park Avenue, NewYork, NY 10016-5990; A
23、SME Order Department, 22Law Drive, Box 2900, Fairfield, NJ 07007-2900References to other documents are for informationalpurposes only.2 TERMS AND DEFINITIONSalgorithm: a well defined procedure for solving aparticular problem, e.g., sorting algorithms.Coordinate Measuring System (CMS): any piece ofeq
24、uipment which collects coordinates (points), calculatesand displays additional information using the measuredpoints.datum: a theoretically exact point, line, or plane de-rived from a feature on a part. See ASME Y14.5M-1994.datum reference frame (DRF): a part coordinate sys-tem constructed from datum
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