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Modeling foundations for executable model-based testing of self-healing cyber-physical systems

机译:基于可执行模型的自我修复网络 - 物理系统测试建模基础

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Self-healing cyber-physical systems (SH-CPSs) detect and recover from faults by themselves at runtime. Testing such systems is challenging due to the complex implementation of self-healing behaviors and their interaction with the physical environment, both of which are uncertain. To this end, we propose an executable model-based approach to test self-healing behaviors under environmental uncertainties. The approach consists of a Modeling Framework of SH-CPSs (MoSH) and an accompanying Test Model Executor (TM-Executor). MoSH provides a set of modeling constructs and a methodology to specify executable test models, which capture expected system behaviors and environmental uncertainties. TM-Executor executes the test models together with the systems under test, to dynamically test their self-healing behaviors under uncertainties. We demonstrated the successful application of MoSH to specify 11 self-healing behaviors and 17 uncertainties for three SH-CPSs. The time spent by TM-Executor to perform testing activities was in the order of milliseconds, though the time spent was strongly correlated with the complexity of test models.
机译:自我修复的网络物理系统(SH-CPSS)在运行时自行检测和从故障中恢复。由于自我修复行为的复杂实施以及与物理环境的相互作用,测试这种系统是具有挑战性的,这两者都不确定。为此,我们提出了一种基于可执行模式的基于模式的方法来测试环境不确定性下的自我修复行为。该方法包括SH-CPSS(MOSH)的建模框架和附带的测试模型执行程序(TM-EXECURER)。 MOSH提供一组建模构造和方法来指定可执行测试模型,捕获预期的系统行为和环境不确定性。 TM-Executor与正在测试的系统一起执行测试模型,以在不确定性下动态测试其自我修复行为。我们展示了MOSH的成功应用来指定11个自我修复行为和三个SH-CPS的不确定性。 TM-Executor来执行测试活动所花费的时间是毫秒的,尽管花费的时间与测试模型的复杂性强烈相关。

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