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首页> 外文期刊>IEEE Transactions on Automatic Control >Optimal sensor selection for discrete-event systems with partial observation
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Optimal sensor selection for discrete-event systems with partial observation

机译:具有局部观测的离散事件系统的最佳传感器选择

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摘要

For discrete-event systems under partial observation, we study the problem of selection of an optimal set of sensors that can provide sufficient yet minimal events observation information. The sufficiency of the observed information is captured as the fulfillment of a desired formal property. Selection of sensors can be viewed as a selection of an observation mask and also of an equivalence class of events. A sensor set is called optimal if any coarser selection of the corresponding equivalence class of events results in some significant loss of the events observation information. We study an optimal selection of sensors over the set of general "nonprojection" observation masks. We show that this problem is NP hard in general. For mask-monotonic properties, we present a "top-down" and a "bottom-up" algorithm each of polynomial complexity. We show that observerness is not mask-monotonic. We show that the computational complexity can be further improved if the property is preserved under the projection via an intermediary observation mask that is an observer. Our results are obtained in a general setting so that they can be adapted for an optimal selection of sensors for a variety of applications.
机译:对于在部分观察下的离散事件系统,我们研究了可以提供足够但最少的事件观察信息的最佳传感器集合的选择问题。所观察到的信息的充分性被捕获为对所需形式属性的满足。传感器的选择可以看作是观察罩的选择,也可以看作是等效事件的选择。如果对事件的对应等价类的任何较粗的选择导致事件观察信息的一些重大损失,则将传感器组称为“最佳”。我们研究了在一般“非投影”观察蒙版上传感器的最佳选择。我们证明这个问题通常是NP难题。对于蒙版单调属性,我们提出了多项式复杂度各不相同的“自上而下”和“自下而上”的算法。我们表明观察者不是面具单调的。我们表明,如果通过作为观察者的中间观察蒙版将属性保留在投影下,则可以进一步提高计算复杂性。我们的结果是在一般情况下获得的,因此可以针对各种应用对传感器进行最佳选择。

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