增强的并发工程:一种加速系统工程过程同时最小化风险的方法

R. S. Lightfoot
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引用次数: 5

摘要

好的系统工程实践和程序需要时间。信息经济市场的需求对系统工程团队提出了要求,要求他们在使用越来越多的最新技术(通常是未经验证的)组件的同时更快地开发系统。因此,为了减少系统开发生命周期(SDLC)的时间需求,团队经常被迫压缩或跳过经过验证的过程和检查点。这种方法的风险是信息技术解决方案不能完全满足客户的需求,难以操作和维护,可靠性低于预期,容易出错和失败,并且/或者不能有效地迁移到下一个开发阶段。并行工程已经被用来帮助系统工程团队减少SDLC的时间需求。并行工程被定义为一种系统的方法,用于创建产品设计,同时考虑产品生命周期的所有元素,从概念到处置……它是快速应用开发技术和联合应用开发技术的关键部分。本文通过对一个增强的并行工程过程的全面概述,重塑了SDLC方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced concurrent engineering: an approach for accelerating the systems engineering process while minimizing the risk
Good systems engineering practices and procedures take time. The demands of the information economy market place have placed demands on systems engineering teams to develop systems faster while using an increasing number of new state-of-the-art, often unproven, components. Consequently, teams are often pressured to compress or skip over proven processes and check points in order to reduce the systems development life cycle (SDLC) time requirements. The risk of such an approach are information technology solutions which do not fully meet the customer's requirements, are difficult to operate and maintain, are less reliable than desired, are prone to errors and failures and/or do not migrate effectively to the next phase of development. Concurrent engineering has been used to help system engineering teams reduce the SDLC time requirements. Concurrent engineering is defined as a systematic approach to creating a product design that simultaneously considers all elements of the product life cycle, from conception through disposal..."/sup 1/ It is a critical part of the rapid application development technique as well as the joint application development technique. This paper recasts the SDLC approach through a comprehensive overview of an enhanced concurrent engineering process.
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