具有输入/输出的混合系统的安全和过渡结构保持抽象

R. Kumar, C. Zhou, S. Jiang
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引用次数: 6

摘要

我们提出了一种方法来获得一个离散抽象的混合系统建模为一个输入输出混合自动机(I/O-HA),推广我们之前的工作线性混合自动机没有输入或输出。我们提出的离散抽象保留了I/O-HA的离散行为(在离散转换后立即在实例中采样的状态轨迹集),因此它足以用于安全性验证。(对安全属性的违反可以表示为某些离散状态的可达性。)我们将I/O-HA的离散行为表示为输入-输出转换系统(I/O-TS)的离散行为,该系统不具有连续动力学,即它是一个纯离散系统。我们将I/O-HA离散抽象为I/O-TS的一个特点是,它保留了离散动力学的过渡结构,与之前对混合系统的离散抽象的工作(要么不保留离散行为,要么不保留离散动力学的过渡结构)相比,它是独一无二的。离散抽象可用于涉及安全属性的进一步分析(如验证、测试、控制、诊断、监测等)。通过一个自适应巡航控制实例说明了这种抽象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Safety and transition-structure preserving abstraction of hybrid systems with inputs/outputs
We present a method for obtaining a discrete abstraction of a hybrid system modeled as an input-output hybrid automaton (I/O-HA), generalizing our earlier work on linear hybrid automaton with no inputs or outputs. The discrete abstraction we present preserves the discrete behaviors (the set of state trajectories sampled at instances immediately after the discrete transitions) of an I/O-HA, and thus it is adequate for safety verification. (The violation of a safety property can be formulated as the reachability of certain discrete states.) We represent the discrete behaviors of an I/O-HA as the discrete behaviors of an input-output transition system (I/O-TS), which possesses no continuous dynamics, i.e., it is a purely discrete system. A feature of our discrete abstraction of an I/O-HA into an I/O-TS is that it preserves the transition structure of the discrete dynamics, making it unique compared to the prior works on discrete abstraction of a hybrid system (which either did not preserve the discrete behaviors or the transition structure of the discrete dynamics). The discrete abstraction can be used for further analysis (such as verification, testing, control, diagnosis, monitoring, etc.) involving safety properties. The abstraction is illustrated through an adaptive cruise control example.
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