
【国外标准】 ISO/IEC/IEEE Draft International Standard - Systems and Software Engineering -- Software Life Cycle Processes -- Part 2: Relation and Mapping Between ISO/IEC/IEEE 12207-1:2017 and ISO/IEC/IEEE 12207:2008
本网站 发布时间:
2025-04-28
- IEEE/ISO/IEC 12207-2
- 定价: 0元 / 折扣价: 0 元
- 在线阅读
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
This document provides the mapping expressing corresponding relations between software life cycle processes in ISO/IEC/IEEE 12207-1:2017 and the processes in the previous edition ISO/IEC/IEEE 12207:2008.
These relations are demonstrated by means of mapping tables that show relationships between activities and tasks, and process outcomes.
This mapping assists users of the 2008 edition to transition to using the 2017 edition.
This document provides users who employ processes based on the previous… read more edition of ISO/IEC/IEEE 12207 a rationale and opportunity to apply and perform continuously their life cycle processes including software specific processes, activities and tasks. Also, this document provides to such users the mapping which helps to identify corresponding and compatible process outcomes, activities and tasks of processes for software systems in the ISO/IEC/IEEE 12207-1:2017.
The mapping between ISO/IEC/IEEE 12207-1:2017 and 2008 in this document can be used as a basis to continuously conduct, improve and extend current process assets including software specific process assets based on ISO/IEC/IEEE 12207:2008 for effective implementation of the new edition of ISO/IEC/IEEE 12207-1:2017. These process activities and tasks can be applied iteratively. read less
标准号:
IEEE/ISO/IEC 12207-2
标准名称:
ISO/IEC/IEEE Draft International Standard - Systems and Software Engineering -- Software Life Cycle Processes -- Part 2: Relation and Mapping Between ISO/IEC/IEEE 12207-1:2017 and ISO/IEC/IEEE 12207:2008
英文名称:
标准状态:
-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- ASTM F2620-20ae2 Standard Practice for Heat Fusion Joining of Polyethylene Pipe and Fittings
- ASTM F2819-10(2015)e2 Standard Test Methods for Measurement of Straightness of Bar, Rod, Tubing and Wire to be used for Medical Devices
- ASTM G110-92(2022)e2 Standard Practice for Evaluating Intergranular Corrosion Resistance of Heat Treatable Aluminum Alloys by Immersion in Sodium Chloride + Hydrogen Peroxide Solution
- ASTM ISO/ASTM51310-22 Standard Practice for Use of a Radiochromic Optical Waveguide Dosimetry System
- ASTM ISO/ASTM51539-23 Standard Guidance for Use of Radiation-Sensitive Indicators
- ASTM ISO/ASTM51607-13 Standard Practice for Use of the Alanine-EPR Dosimetry System
- ASTM ISO/ASTM51608-15(2022) Standard Practice for Dosimetry in an X-Ray (Bremsstrahlung) Facility for Radiation Processing at Energies between 50 keV and 7.5 MeV
- ASTM ISO/ASTM51631-20 Standard Practice for Use of Calorimetric Dosimetry Systems for Dose Measurements and Routine Dosimetry System Calibration in Electron Beams
- ASTM ISO/ASTM51650-13 Standard Practice for Use of a Cellulose Triacetate Dosimetry System
- ASTM ISO/ASTM51707-15 Standard Guide for Estimation of Measurement Uncertainty in Dosimetry for Radiation Processing
- ASTM ISO/ASTM51900-23 Standard Guidance for Dosimetry for Radiation Research
- ASTM ISO/ASTM51939-17(2022) Standard Practice for Blood Irradiation Dosimetry
- ASTM ISO/ASTM52628-20 Standard Practice for Dosimetry in Radiation Processing
- ASTM ISO/ASTM52701-13(2020) Standard Guide for Performance Characterization of Dosimeters and Dosimetry Systems for Use in Radiation Processing
- ASTM ISO/ASTM52903-1-20 Additive manufacturing — Material extrusion-based additive manufacturing of plastic materials — Part 1: Feedstock materials