Robust Alternating-Time Temporal Logic

A. Murano, D. Neider, Martin Zimmermann
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引用次数: 1

Abstract

In multi-agent system design, a crucial aspect is to ensure robustness, meaning that for a coalition of agents A, small violations of adversarial assumptions only lead to small violations of A's goals. In this paper we introduce a logical framework for robust strategic reasoning about multi-agent systems. Specifically, inspired by recent works on robust temporal logics, we introduce and study rATL and rATL*, logics that extend the well-known Alternating-time Temporal Logic ATL and ATL* by means of an opportune multi-valued semantics for the strategy quantifiers and temporal operators. We study the model-checking and satisfiability problems for rATL and rATL* and show that dealing with robustness comes at no additional computational cost. Indeed, we show that these problems are PTime-complete and ExpTime-complete for rATL, respectively, while both are 2ExpTime-complete for rATL*.
鲁棒交替时间时序逻辑
在多智能体系统设计中,一个至关重要的方面是确保鲁棒性,这意味着对于智能体a的联盟来说,对对抗性假设的轻微违反只会导致对a目标的轻微违反。本文介绍了一个多智能体系统鲁棒策略推理的逻辑框架。具体来说,受鲁棒时间逻辑研究的启发,我们引入并研究了rATL和rATL*,这两种逻辑通过适当的策略量词和时间算子的多值语义扩展了著名的交替时间逻辑ATL和ATL*。我们研究了rATL和rATL*的模型检验和可满足性问题,并表明处理鲁棒性不需要额外的计算成本。实际上,我们证明了这些问题对于rATL分别是PTime-complete和ExpTime-complete,而对于rATL*都是2ExpTime-complete。
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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