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Deriving new measurements for real-time reactive systems.

机译:得出实时反应系统的新测量值。

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摘要

Real-time reactive systems are largely event-driven, interact intensively and continuously with the environment through stimulus-response behavior, and are regulated by strict timing constraints. Examples of such systems include alarm systems, air traffic control systems, nuclear reactor control systems and telecommunication systems; applications involving real-time reactive software play a mission-critical role in the defense industry.; Real-time reactive systems are inherently complex. The complexity pervades through the different phases of software development, deployment, and maintenance. Applying formal methods in the development process is an effective way for dealing with the complexity, and for quality assurance. One of the goals is to assess the quality of such systems starting from the earlier phases of their life cycle.; The integration of the quality measurement into the development framework provides feedback to the system developers in order to effectively control the development processes and to obtain high reliability of a final product. Thus, quality control is a must when safety-critical real-time reactive systems are developed. The quality assessment must be regarded as a support for controlling the process of software development in order to guarantee the final quality.; The aim of the thesis is to correctly apply the measurement theory to formal description of real-time software upon which we can base models of object-oriented software measurement. In order to create the framework for the present work, we are surveying the theoretical approaches to software measurement.; The novelties of the quality measurement methodology are in the theoretical basis and a practical automated measurement data generation process for real-time reactive systems. The proposed approach is applicable to real-time reactive systems modeled as timed labeled transition systems.
机译:实时反应系统主要是事件驱动的,通过刺激响应行为与环境进行密集且连续的交互,并受到严格的时间限制。这种系统的例子包括警报系统,空中交通管制系统,核反应堆控制系统和电信系统;涉及实时反应软件的应用程序在国防工业中扮演着至关重要的角色。实时反应系统本质上很复杂。复杂性遍及软件开发,部署和维护的不同阶段。在开发过程中采用形式化方法是处理复杂性和质量保证的有效方法。目标之一是从生命周期的早期阶段开始评估此类系统的质量。将质量度量集成到开发框架中可为系统开发人员提供反馈,以有效地控制开发过程并获得最终产品的高可靠性。因此,开发安全关键型实时反应系统时必须进行质量控制。质量评估必须被视为控制软件开发过程的支持,以确保最终质量。本文的目的是将测量理论正确地应用到实时软件的形式化描述中,从而为基于对象的软件测量模型奠定基础。为了创建当前工作的框架,我们正在调查软件测量的理论方法。质量测量方法的新颖之处在于理论基础和实时反应系统的实用的自动测量数据生成过程。所提出的方法适用于建模为定时标记过渡系统的实时反应系统。

著录项

  • 作者

    Ormandjieva, Olga.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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