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Grid-based temporal logic inference

机译:基于网格的时间逻辑推理

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This paper introduces a new algorithm to infer temporal logic properties of a system from data consisting of a set of finite time system traces. We propose an algorithm that generates a Signal Temporal Logic formula by discretizing the entire domain and codomain of the system traces. Unlike many popular inference algorithms which require labeled data that represents whether a trace exhibits a desired behavior (positive) or not (negative), this approach only requires positive traces to infer temporal logic properties. We present two case studies to illustrate the efficiency and accuracy of the proposed algorithm. The first is a biological network consisting of a genetic logic circuit in a bacterial cell. The second is a fault detection problem in automotive powertrain systems. We also compare the performance of the algorithm with an existing inference algorithm.
机译:本文介绍了一种新的算法,可以从由一组有限时间系统迹线组成的数据推断系统的时间逻辑属性。我们提出了一种算法,其通过离散化系统迹线的整个域和Codomain来生成信号时间逻辑公式。与许多需要标记的数据的流行推理算法不同,该算法表示跟踪是否呈现所需的行为(正)(正)(否定),则该方法仅需要正迹线来推断时间逻辑属性。我们提出了两个案例研究,以说明所提出的算法的效率和准确性。首先是由细菌细胞中的遗传逻辑电路组成的生物网络。第二个是汽车动力总成系统的故障检测问题。我们还使用现有推理算法比较算法的性能。

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