Factored Planning: From Automata to Petri Nets

L. Jezequel, É. Fabre, Victor Khomenko
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引用次数: 8

Abstract

Factored planning mitigates the state space explosion problem by avoiding the construction of the state space of the whole system and instead working with the system's components. Traditionally, finite automata have been used to represent the components, with the overall system being represented as their product. In this paper we change the representation of components to safe Petri nets. This allows one to use cheap structural operations like transition contractions to reduce the size of the Petri net, before its state space is generated, which often leads to substantial savings compared with automata. The proposed approach has been implemented and proven efficient on several factored planning benchmarks.
因子规划:从自动机到Petri网
因式规划避免了构建整个系统的状态空间,而是处理系统的各个组件,从而缓解了状态空间爆炸问题。传统上,有限自动机被用来表示组件,整个系统被表示为它们的产物。在本文中,我们将组件的表示改为安全的Petri网。这使得人们可以在Petri网的状态空间生成之前,使用廉价的结构操作(如转换收缩)来减小其大小,这通常会导致与自动机相比的大量节省。所建议的方法已得到实施,并在几个因素规划基准上证明是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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