ISO 10303-108 CORR 1-2008 Industrial automation systems and integration - Product data representation and exchange - Part 108 Integrated application resource Pa.pdf
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1、ICS 25.040.40 Ref. No. ISO 10303-108:2005/Cor.1:2008(E) ISO 2008 All rights reserved Published in Switzerland INTERNATIONAL STANDARD ISO 10303-108:2005 TECHNICAL CORRIGENDUM 1 Published 2008-12-15 INTERNATIONAL ORGANIZATION FOR STANDARDIZATION ORGANISATION INTERNATIONALE DE NORMALISATIONIndustrial a
2、utomation systems and integration Product data representation and exchange Part 108: Integrated application resource: Parameterization and constraints for explicit geometric product models TECHNICAL CORRIGENDUM 1 Systmes dautomatisation industrielle et intgration Reprsentation et change de donnes de
3、 produits Partie 108: Ressources dapplication intgres: Paramtrage et contraintes pour les modles de produits gomtriques explicites RECTIFICATIF TECHNIQUE 1 Technical Corrigendum 1 to ISO 10303-108:2005 was prepared by Technical Committee ISO/TC 184, Automation systems and integration, Subcommittee S
4、C 4, Industrial data. Introduction The modifications made to ISO 10303-108:2005 have three purposes: a) to remove an entity name clash with ISO 10303-210:2001 (published earlier than ISO 10303-108:2005 and therefore having prior claim on the name) concerning model_parameter. This Technical Corrigend
5、um provides for its replacement throughout ISO 10303-108 with variational_parameter; b) to remove the definition of non_negative_length_measure, which has been moved to ISO 10303-41, and to replace it by a reference to that resource; c) to correct minor errors in EXPRESS code. The opportunity has al
6、so been taken to update the normative reference to ISO 10303-55 (now published) and to correct a few minor editorial errors mainly concerning the numbering of notes and examples. ISO 10303108:2005/Cor.1:2008(E) Modications to the text of ISO 10303108:2005 Table of Contents, p. iii ff. The term model
7、_parameter is being systematically replaced by variational_parameter. The necessary entity name change requires replacement of the titles of several subclauses. Make the following replacements: Subclause: Previous title: New title: 4.2.1 Model parameters Variational parameters 4.4.1 model_parameter
8、variational_parameter 4.4.2 bound_model_parameter bound_variational_parameter 4.4.3 unbound_model_parameter unbound_variational_parameter 4.4.7 unbound_model_parameter_semantics unbound_variational_parameter_semantics 5.2.5 Roles of model parameters. . . Roles of variational parameters. . . Delete t
9、he entry 7.3.10 non_negative_length_measure from the Table of Contents Clause 1, p. 1 Replace model parameters by variational parameters in line 1 of the rst paragraph, and lines 1 and 3 of the second paragraph. Clause 1.1, p. 3 Replace model parameters by variational parameters in the third bullete
10、d item of this subclause. Clause 2, p. 5 ISO 1030355 has now been published. After ISO 1030355delete :, and also delete the footnote. Clause 3.7.24, p. 11 Replace model parameter by variational parameter, and reposition this denition in the list to follow the denition of variational (previously clau
11、se 3.7.34). The wording of the denition is unchanged, but the text of the notes and the example needs to be changed. Replace NOTE 1, EXAMPLE and NOTE 2 as follows: NOTE 1 Assignment of different values to variational parameters generates different members of a family of models. Variational parameter
12、s therefore express design freedom in a model, according to the parameterization scheme imposed by its creator. Limitations may be dened on the allowable ranges of variational parameters. EXAMPLE The dimensions of a generic block may be represented by variational parameters L (length), W (width) and
13、H (height). Individual members of the family of blocks are specied by assigning numerical values to the three parameters independently. Alternatively, relationships may be dened between the variational parameters, such as L = 2W;H = 0:5W , to restrict the size of the family and dene it in terms of t
14、he single independent variational parameterW . NOTE 2 Distinction must be made between the use of the word parameter in this part of ISO 10303, in ISO 1030311, in ISO 1030342 and in ISO 1030350. In ISO 1030311 a parameter is used for the formal represen tation of an input to, or output from, a funct
15、ion or procedure dened in an EXPRESS schema. In ISO 1030342 a parameter is a variable used to identify the position of a point on a curve or a surface, so that the parameter may be thought of as an input to a function whose output is a coordinate value. In ISO 1030350 a parameter is dened as a free
16、variable in an expression. In this part of ISO 10303 the term variational parameter is used for a variable that controls dimensions or other gross characteristics of a model, for example the overall shape of a product model. A variational parameter may be thought of as an input to a procedure, in th
17、is case a procedure that 2 c ISO 2008 All rights reservedISO 10303108:2005/Cor.1:2008(E) computes one instance of a family of shape models. It is unfortunate that the word parameter is in widespread current use for such a variety of purposes. Although at a broad conceptual level the usages within IS
18、O 10303 are similar, there are signicant differences in such matters as the way the functions or procedures are dened and in the scope of parameters in a model. Clause 3.7 more generally The terms dened in this clause need to be reordered into alphabetical order, and other references to the supersed
19、ed entity name need to be changed as follows: (a) Renumber clause 3.7.24, as modied above, to 3.7.34; (b) Renumber the current clauses 3.7.25 3.7.34 as 3.7.24 3.7.33, keeping their sequence the same; (c) In the clause newly numbered 3.7.25, dening the term parameter, replace the existing denition by
20、 variational parameter (in the context of this part of ISO 10303) see the denition of variational parameter given in clause 3.7.34. Clause 4, p. 15 Clause 4.2 and most of clause 4.4 need to be replaced. Subclauses 4.1 and 4.3 may remain as they are (subject to the correction noted below), and so may
21、 subclause 4.5. Clause 4.4.9 needs only one name replacement. Clause 4.1, p. 15 In NOTE 2, replace Figure by Figures. Clause 4.2, p. 15 Replace subclause 4.2 by the following: 4.2 Fundamental concepts and assumptions This schema provides representation methods for the following: Variables, represent
22、ed by instances of bound_variational_parameter or unbound_variational_ parameter, expressing variation or design freedom in a representation or model; A means for binding a bound_variational_parameter instance to an attribute of another entity data type instance in the same representation; Domains o
23、f validity for instances of bound_variational_parameter and unbound_variational_ parameter; A means for xing the values of attributes of specic entity data type instances in a model, equiva lent to the use of bound_variational_parameter instances with constant associated values. These resource const
24、ructs are of general utility in the exchange and sharing of ISO 10303 models em bodying the capability for variation of attribute values in a model following an exchange; the capture and transfer of constraint relationships dened in terms of mathematical expressions, functions or procedures. Specica
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