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A structured and systematic model-based development method for automotive systems, considering the OEM/supplier interface

机译:考虑到OEM /供应商接口的结构化,系统化,基于模型的汽车系统开发方法

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摘要

The released ISO 26262 standard for automotive systems requires to create a hazard analysis and risk assessment and to create safety goals, to break down these safety goals into functional safety requirements in the functional safety concept, to specify technical safety requirements in the safety requirements specification, and to perform several validation and verification activities. Experience shows that the definition of technical safety requirements and the planning and execution of validation and verification activities has to be done jointly by OEMs and suppliers. In this paper, we present a structured and model-based safety development approach for automotive systems. The different steps are based on Jackson's requirement engineering. The elements are represented by UML notation extended with stereotypes. The UML model enables a rigorous validation of several constraints. We make use of the results of previously published work to be able to focus on the OEM/supplier interface. We illustrate our method using a three-wheeled-tilting control system (3WTC) as running example and case study.
机译:针对汽车系统发布的ISO 26262标准要求创建危害分析和风险评估并创建安全目标,并将这些安全目标分解为功能安全概念中的功能安全要求,并在安全要求规范中指定技术安全要求,并执行一些验证和验证活动。经验表明,技术安全要求的定义以及验证和验证活动的计划和执行必须由OEM和供应商共同完成。在本文中,我们提出了一种基于结构化和基于模型的汽车系统安全开发方法。不同的步骤基于Jackson的需求工程。元素由带有原型的UML表示法表示。 UML模型可以对几个约束进行严格验证。我们利用先前发布的结果来专注于OEM /供应商界面。我们以三轮倾斜控制系统(3WTC)作为运行示例和案例研究来说明我们的方法。

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