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Probability of faults for partially observed Timed PNs with temporal constraints

机译:具有时间约束的部分观测定时PN的故障概率

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This article concerns faults detection and isolation for timed stochastic discrete event systems modeled with partially observed Timed Petri nets and temporal constraints. Events occur according to arbitrary probability density functions. The models include the sensors used to measure the events and markings and also the temporal constraints to be satisfied by the system operations. These temporal constraints are defined according to tolerance intervals specified for each transition. A fault is an operation that ends too early or too late. The set of marking trajectories consistent with a given measured trajectory is first computed. Then, the probability that the temporal constraints are unsatisfied is estimated for any consistent trajectory and the probability that a temporal fault has occurred is obtained as a consequence.
机译:本文涉及用部分观测到的定时Petri网和时间约束建模的定时随机离散事件系统的故障检测和隔离。事件根据任意概率密度函数发生。这些模型包括用于测量事件和标记的传感器,以及系统操作要满足的时间约束。这些时间约束是根据为每个过渡指定的公差间隔定义的。故障是结束得太早或太晚的操作。首先计算与给定的测量轨迹一致的标记轨迹的集合。然后,针对任何一致的轨迹估计时间约束不满足的概率,并因此获得发生时间故障的概率。

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