嵌入式实时系统的需求开发和管理

Jiale Zhou
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引用次数: 2

摘要

众所周知,在嵌入式实时系统开发过程中发现的大多数异常都属于需求和规范阶段。为了缓和局势,已经对该地区进行了许多调查。对于需求开发,特别是需求确认和验证,模型驱动的体系结构技术可以被认为是一种经济有效的解决方案。为了利用这些优势,所建议的系统的设计通常在一定的抽象级别上以可分析的模型来指定。此外,不同层次的需求被转换为可验证的查询,并输入模型以进行验证或验证。对于需求管理,需求可追溯性为执行变更影响分析、风险分析、回归测试等提供了关键的支持。在这篇论文中,我们涵盖了几个关于需求确认、需求验证和需求可追溯性的主题。特别是,技术贡献有三个方面:1)我们提出了一种通过使用新定义的TASM构造的扩展的定时抽象状态机(TASM)语言来进行需求验证的方法;2)我们提出了一种基于仿真的方法,该方法通过统计技术来进行需求验证,与工业应用一起工作;3)我们引入了一种改进的基于vsm的需求可追溯性恢复方法,使用新的上下文分析。此外,我们还通过各种案例研究演示了我们的贡献在实际使用中的适用性。
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Requirements development and management of embedded real-time systems
It is well recognized that most of the anomalies, discovered in the development of embedded real-time systems, belong to requirement and specification phases. To ease the situation, many efforts have been investigated into the area. For requirements development, especially requirements validation and verification, model-driven architecture techniques can be considered as a cost-efficient solution. In order to utilize such advantages, the design of the proposed system is often specified in terms of analyzable models at the certain level of abstraction. Further, different levels of requirements are translated into verifiable queries and fed into the models to be either validated or verified. For requirements management, requirements traceability provides critical support for performing change impact analysis, risk analysis, regression testing, etc. In this thesis, we cover several topics about requirements validation, requirements verification, and requirements traceability. In particular, the technical contributions are three-fold: 1) we propose an approach to requirements validation by using the extended Timed Abstract State Machine (TASM) language with newly defined TASM constructs and, 2) we present a simulation-based method which is powered up by statistical techniques to conduct requirements verification, working with industrial applications and, 3) we introduce an improved VSM-based requirements traceability recovery approach using a novel context analysis. Further, we have demonstrated the applicability of our contributions in real world usage through various case studies.
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