基于模型的软件工程:三个生产力视角

S. Bohner, Sriram Mohan
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引用次数: 19

摘要

发展软件产品是一件棘手的事情,特别是当领域复杂且变化迅速时。像其他工程领域一样,软件工程生产力的进步主要是通过抽象、重用、过程和自动化来实现的(例如,从汇编语言迁移到第三代语言,通过更好的抽象提供了更高的生产力)。对于规范或领域应用程序,软件的基于模型的工程(MBE)提供了一种系统的方法,用于生产利用所有这些生产力途径的软件系统。在更高的抽象层次上指定或建模软件,并将这些表示与以前开发的(可重用的)组件连接起来,提供了一个可重复的组装和转换过程,通常可以自动化。自2004年以来,我们已经探索了MBE从高级的基于复杂代理的系统生成软件,从软件定义无线电细节的低级复杂性生成软件,以及最近在社交网络中发现的紧急系统的成熟(例如,类似facebook的系统)。虽然生产力是软件中MBE的一个关键优势,但是很少有关于生产力的研究。在本文中,我们介绍了我们在这些努力中的经验,并反思了一些生产力的影响。我们的经验表明,MBE在产品生命周期的早期引入了一些复杂性,但是通过系统的抽象、重用、过程和自动化为更好的生产力提供了一个稳定的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model-Based Engineering of Software: Three Productivity Perspectives
Evolving software products is a tricky business, especially when the domain is complex and changing rapidly. Like other fields of engineering, software engineering productivity advances have come about largely through abstraction, reuse, process, and automation (e.g., moving from assembly language to third generation languages offered increased productivity through better abstraction). For canonical or domain applications, model-based engineering (MBE) of software provides a systematic approach for producing software systems that leverage all of these avenues of productivity. Specifying or modeling software at higher levels of abstraction and connecting these representations with previously developed (reusable) components provides a repeatable assembly and transformation process that can often be automated. Since 2004, we have explored MBE for generating software from the high-level for sophisticated agent-based systems, low-level complexity in the details of software-defined radios, and more recently with the maturation of emergent systems found in social networking (i.e., Facebook-like systems). While productivity is a key benefit of MBE in software, there have been few studies that examine productivity. In this paper, we present our experience in these efforts and reflect on some productivity implications. Our experience shows that MBE introduces some complexities early in the product life cycle, but provides a stable basis for better productivity through systematic abstraction, reuse, process, and automation.
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