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Model-driven architecture-centric engineering of (embedded) software intensive systems: modeling theories and architectural milestones

机译:(嵌入式)软件密集型系统的模型驱动的以架构为中心的工程:建模理论和架构里程碑

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Today, in general, embedded software is distributed onto networks and structured into logical components that interact asynchronously by exchanging messages. The software system is connected to sensors, actuators, human machine interfaces and networks. In this paper we study fundamental models of composed embedded software systems and their properties, identify and describe various basic views, and show how they are related. We consider, in particular, models of data, states, interfaces, functionality, hierarchically composed systems, and processes. We study relationships by abstraction and refinement as well as forms of composition and modularity. In particular, we introduce a comprehensive mathematical model and a corresponding mathematical theory for composed systems, its essential views and their relationships. We introduce two methodologically essential, complementary and orthogonal concepts for the structured modeling of multifunctional embedded systems in software and systems engineering and their scientific foundation. One approach addresses mainly tasks in requirements engineering and the specification of the comprehensive user functionality of multifunctional systems in terms of their functions, features and services. The other approach essentially addresses the design phase with its task to develop logical architectures formed by networks of interactive components that are specified by their interface behavior.
机译:如今,一般而言,嵌入式软件已分发到网络上,并被结构化为逻辑组件,这些逻辑组件通过交换消息进行异步交互。该软件系统连接到传感器,执行器,人机界面和网络。在本文中,我们研究组成的嵌入式软件系统的基本模型及其属性,识别并描述各种基本视图,并展示它们之间的关系。我们特别考虑数据模型,状态,接口,功能,分层组成的系统和过程。我们通过抽象和完善以及组成和模块化的形式来研究关系。特别是,我们针对组成的系统,其基本视图及其相互关系介绍了一个综合的数学模型和一个相应的数学理论。我们为软件和系统工程中的多功能嵌入式系统的结构化建模及其科学基础介绍了两种方法学上必不可少的,互补的和正交的概念。一种方法主要针对需求工程中的任务以及就多功能系统的功能,特性和服务而言,对多功能系统的全面用户功能进行规范。另一种方法本质上解决了设计阶段的任务,即开发由交互组件的网络行为形成的逻辑体系结构,这些组件由其接口行为指定。

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