考虑安全问题,应用STAMP支持控制器逻辑的综合

Bráulio Marques Horta, Juliana de Melo Bezerra, C. Hirata
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引用次数: 0

摘要

控制器是安全关键系统的关键部件。他们负责通过对其他组件的监视和操作来确保许多系统需求。设计控制器的传统方法包括仔细理解、分析和手动定义控制器的行为。在监督控制理论的基础上,提出了一种基于构造修正的控制器逻辑综合方法。在本文中,我们主要研究使用STAMP来支持控制器的合成。STAMP是一种基于系统理论的事故原因模型,它将事故和不可接受损失作为一个动态控制问题来处理。在这里,STAMP帮助捕获系统描述,支持与组件及其接口的定义、组件行为的规范、假设的识别以及功能和安全属性的确定相关的步骤。我们提供了该方法的概述,将方法步骤与自动门系统联系起来。随后,我们介绍了一个真实的核电站系统,并讨论了其结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applying STAMP to Support the Synthesis of Controller Logic considering Safety Concerns
Controllers are key components of safety-critical systems. They are responsible for ensuring many of the system requirements through monitoring and action over other components. The traditional approach for designing controllers encompasses careful understanding, analysis, and manual definition of the behavior of the controller. We propose a correct-by-construction method to synthesize the logic of controllers, based on supervisory control theory. In this paper, we focus on using STAMP to support the controller synthesis. STAMP is an accident causation model based on systems theory, which treats accidents and unacceptable losses as a dynamic control problem. Here STAMP aids to capture the system description, supporting the steps related to the definition of components and their interfaces, the specification of components' behavior, the identification of assumptions, and the determination of functional and safety properties. We provide an overview of the method, contextualizing the methods steps with the system of an automatic door. Later, we present a real system of a Nuclear Power Plant and discuss its outcomes.
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