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MODEL-BASED RESILIENCE ASSESSMENT FRAMEWORK FOR AUTONOMOUS SYSTEMS

机译:自治系统的基于模型的弹性评估框架

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While automation technologies advance faster than ever, gaps of resilience capabilities between autonomous and human-operated systems have not yet been identified and addressed appropriately. To date, there exists no generic framework for resilience assessment that is applicable to a broad spectrum of domains or able to take into account the impacts on mission-scenario-level resilience from system-specific attributes. In the proposed framework, resilience is meant to describe the ability of a system, in an open range of adverse scenarios, to maintain normal operating conditions or to recover from degraded or failed states in order to provide anticipated functions or services to achieve mission success. The term resilience is introduced in relation with classical terms such as fault, error, failure, fault-tolerance, reliability, and risk. The proposed model-based resilience assessment framework is based on a resilience ontology that enables the use of system models into reliability and risk models for transparent, persistent, and up-to-date modeling and quantification. A SysML profile and associated OWL ontology are defined to enable the use of a range of resilience mechanisms into the design and operation of a system.
机译:尽管自动化技术的发展比以往任何时候都快,但是自主系统和人工操作系统之间的弹性能力差距尚未得到确定和解决。迄今为止,尚无适用于广泛领域或无法考虑系统特定​​属性对任务场景级弹性的影响的通用弹性评估框架。在建议的框架中,弹性是指在各种不利情况下,系统保持正常运行条件或从降级或失败状态中恢复以提供预期功能或服务以实现任务成功的能力。术语弹性是与诸如故障,错误,故障,容错,可靠性和风险之类的经典术语相关的。所提出的基于模型的弹性评估框架基于弹性本体,该弹性本体可将系统模型用于可靠性和风险模型中,以进行透明,持久和最新的建模和量化。定义了SysML概要文件和关联的OWL本体,以允许在系统的设计和操作中使用各种弹性机制。

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