论文标题
用于认证基于学习的安全至关重要航空系统的验证框架
A Verification Framework for Certifying Learning-Based Safety-Critical Aviation Systems
论文作者
论文摘要
我们提供了一个安全验证框架,用于设计时间和航空系统中基于学习的组件的运行时间保证。我们提出的框架集成了两种新方法。从设计时间保证的角度来看,我们提出了离线的混合前保验证工具,该工具结合了模拟环境中不同级别粒度的知识。从运行时的保证角度来看,我们建议基于学习的决策模型基于可及的在线监控和安全防护人员,以补充离线验证方法。该框架旨在在模块之间松散耦合,从而使单个模块可以使用独立的方法和技术,在不同的情况下和不同的工具访问中开发。拟议的框架为在整个系统开发和部署周期内的不同阶段满足系统安全要求提供了可行的解决方案,从而使系统产品的持续学习和评估。
We present a safety verification framework for design-time and run-time assurance of learning-based components in aviation systems. Our proposed framework integrates two novel methodologies. From the design-time assurance perspective, we propose offline mixed-fidelity verification tools that incorporate knowledge from different levels of granularity in simulated environments. From the run-time assurance perspective, we propose reachability- and statistics-based online monitoring and safety guards for a learning-based decision-making model to complement the offline verification methods. This framework is designed to be loosely coupled among modules, allowing the individual modules to be developed using independent methodologies and techniques, under varying circumstances and with different tool access. The proposed framework offers feasible solutions for meeting system safety requirements at different stages throughout the system development and deployment cycle, enabling the continuous learning and assessment of the system product.