Embedded Software Modeling and Design

M. Natale
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引用次数: 0

Abstract

The development of correct complex software for reactive embedded systems requires automated support for the verification of functional and nonfunctional properties by formal analysis or by simulation and testing. Reduced time-to-market and increased complexity also demand the reuse of components, which also brings the issue of composability of software artifacts. Currently, a language (or a design methodology) that can provide all these desirable features without incurring excessive inefficiency is not available, and a strong semantic characterization of the modeling language or separation of the concerns between the functional and the architecture-level design is the solution advocated by many. This chapter provides an overview of existing models and tools for embedded software, starting from an introduction to the fundamental concepts and the basic theory of existing models of computation, both synchronous and asynchronous. The chapter also features an introduction to commercial languages and tools such as Unified Modeling Language (UML) and Specification and Description Language (SDL), and a quick peek at research work in software models and tools, to give a firm understanding of future trends and currently unsolved issues.
嵌入式软件建模与设计
为响应式嵌入式系统开发正确的复杂软件需要通过形式分析或模拟和测试来自动支持功能性和非功能性特性的验证。缩短上市时间和增加复杂性也要求重用组件,这也带来了软件工件的可组合性问题。目前,没有一种语言(或设计方法)能够提供所有这些理想的特性而不会导致过度的低效率,并且建模语言的强语义特征或功能级和体系结构级设计之间的关注点分离是许多人提倡的解决方案。本章概述了嵌入式软件的现有模型和工具,首先介绍了同步和异步计算的基本概念和基本理论。本章还介绍了商业语言和工具,如统一建模语言(UML)和规范和描述语言(SDL),并快速浏览了软件模型和工具的研究工作,以对未来趋势和当前未解决的问题有一个坚定的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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