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Using system analysis modeling language (saml) for validating the critical aerospace model: Short paper: A case-study

机译:使用系统分析建模语言(SAML)来验证关键航空航天型号:短文:一个案例研究

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System Analysis Modeling Language (SAML) is a formal language which helps in expressing and analyzing the qualitative and quantitative aspects of the software as well as hardware models. This can be used in model-based safety analysis (MBSA) which provides the means of identifying, localizing and analyzing hazards in these real-time Safety-Critical Systems. This paper describes the work carried out in the organization to validate the complex and critical Mode-Transition Logic (MTL) in Automated Flight Control System (AFCS) being developed in the organization. The Mode-Transition Logic (MTL) of the AFCS system is re-modeled using SAML and further analyzed with model checkers such as PRISM and NuSMV, for generation of counter-examples. The counter examples helped in mapping the safety scenarios along the AFCS requirements. These counter examples also helped in generating the fault model and analyzing the system logic for fault tolerance. Using NUSMV, MTL the failure scenarios were generated and the allowed transitions were studied. Failure management analysis report is generated and mapped as an artefact for the certification. For the illustration of the proposed approach, a suitable framework viz. Verification Environment for Safety-Critical Systems (VECS) is used to validate the utility of Mode-Transition Logic (MTL) in Automated Flight Control System (AFCS). The critical operations and complex functions were analyzed for contingency situations and provide means in significantly enhancing the safe operation of the Safety-Critical System. The mapping of the model safety using this approach will provide compliance with Civil Aerospace Standard DO-178C and DO-331 using Model-Based Design.
机译:系统分析建模语言(SAML)是一种正式的语言,有助于表达和分析软件的定性和定量方面以及硬件模型。这可以用于基于模型的安全性分析(MBSA),其提供了在这些实时安全关键系统中识别,本地化和分析危害的手段。本文介绍了本组织在组织中开发的自动飞行控制系统(AFC)中的复杂和临界模式 - 转换逻辑(MTL)执行的工作。使用SAML重新建模AFCS系统的模式转换逻辑(MTL),并进一步与模型检查器(如棱镜和NUSMV)进行分析,用于产生反例。计数器示例有助于沿AFCS要求映射安全方案。这些计数器示例还有助于生成故障模型​​并分析系统逻辑以进行容错。使用NUSMV,MTL生成了故障方案,研究了允许的转换。生成失败管理分析报告并将其映射为认证的人工制品。为了说明所提出的方法,合适的框架viz。用于安全关键系统(VEC)的验证环境用于验证自动飞行控制系统(AFC)中的模式转换逻辑(MTL)的实用程序。分析了关键操作和复杂功能,用于应急情况,并提供了显着提高安全关键系统安全运行的手段。使用这种方法的模型安全映射将使用基于模型的设计提供与民用航天标准DO-178C和DO-331的遵守情况。

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