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Logic-Based Modeling Approaches for Qualitative and Hybrid Reasoning in Dynamic Spatial Systems

机译:动态空间系统中基于逻辑的定性和混合推理建模方法

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摘要

Autonomous agents that operate as components of dynamic spatial systems are becoming increasingly popular and mainstream. Applications can be found in consumer robotics, in road, rail, and air transportation, manufacturing, and military operations. Unfortunately, the approaches to modeling and analyzing the behavior of dynamic spatial systems are just as diverse as these application domains. In this article, we discuss reasoning approaches for the medium-term control of autonomous agents in dynamic spatial systems, which requires a sufficiently detailed description of the agent's behavior and environment but may still be conducted in a qualitative manner. We survey logic-based qualitative and hybrid modeling and commonsense reasoning approaches with respect to their features for describing and analyzing dynamic spatial systems in general, and the actions of autonomous agents operating therein in particular. We introduce a conceptual reference model, which summarizes the current understanding of the characteristics of dynamic spatial systems based on a catalog of evaluation criteria derived from the model. We assess the modeling features provided by logic-based qualitative commonsense and hybrid approaches for projection, planning, simulation, and verification of dynamic spatial systems. We provide a comparative summary of the modeling features, discuss lessons learned, and introduce a research roadmap for integrating different approaches of dynamic spatial system analysis to achieve coverage of all required features.
机译:作为动态空间系统的组成部分的自治代理正变得越来越流行和主流。可以在消费机器人,道路,铁路和航空运输,制造和军事行动中找到应用程序。不幸的是,对动态空间系统的行为进行建模和分析的方法与这些应用领域一样多样。在本文中,我们讨论了对动态空间系统中的自治代理进行中期控制的推理方法,该方法需要对代理的行为和环境进行足够详细的描述,但仍可能以定性方式进行。我们就基于逻辑的定性和混合建模以及常识性推理方法(通常用于描述和分析动态空间系统,尤其是其中运行的自治主体的行为)的特征进行调查。我们介绍一个概念性参考模型,该模型基于从模型中得出的评估标准目录总结了当前对动态空间系统特征的理解。我们评估基于逻辑的定性常识和混合方法为动态空间系统的投影,规划,模拟和验证提供的建模功能。我们提供了建模功能的比较摘要,讨论了经验教训,并介绍了研究路线图,以集成动态空间系统分析的不同方法来实现对所有必需功能的覆盖。

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