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Temporal representation of state transitions

机译:状态转换的时间表示

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This paper describes a knowledge-based temporal representation of state transitions for industrial real-time systems. To allow expression of uncertainty, we shall define fluent as disjuncts of positiveegative time-varying properties. A state of the world is represented as a collection of fluents , which is usually incomplete in the sense that neither the positive form nor the negative form of some properties can be implied from it. The world under consideration is assumed to persist in a given state until an action(s) takes place to effect a transition of it into another state, where actions may either be instantaneous or durative. High-level causal laws are characterized in terms of relationships between actions and the involved world states. An effect completion axiom is imposed on each causal law to guarantee that all the fluents that can be affected by the performance of the corresponding action are governed. This completion requirement is practical for most industrial real-time applications and in fact provides a simple and effective treatment to the so-called frame problem.
机译:本文介绍了一种基于知识的工业实时系统状态转换的时间表示。为了表达不确定性,我们将流利度定义为正/负时变属性的析取。世界的状态被表示为流利的集合,这在某种意义上通常是不完整的,即从中不能暗示某些属性的正形式或负形式。假定所考虑的世界在给定状态下一直存在,直到采取行动将其过渡到另一种状态为止,在该状态下,行为可能是瞬时的也可能是持续的。高级因果关系法的特征是行为与所涉及的世界状态之间的关系。效果完成公理被施加到每个因果法则上,以确保控制所有可能受相应动作执行影响的流利性。该完成要求对于大多数工业实时应用都是实用的,并且实际上为所谓的框架问题提供了一种简单有效的处理方法。

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