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A logical account of causal and topological maps.

机译:因果图和拓扑图的逻辑说明。

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摘要

The Spatial Semantic Hierarchy (SSH) is a set of distinct representations the levels below it. At the control level, the agent and its environment are to a discrete set of distinctive states. The control laws whose execution a discrete causal graph representation for the state space. The causal graph and paths (i.e. the topological map). Local metrical models of places and paths can be built within the framework of the control, causal and topological levels while avoiding problems of global consistency.; Most of the SSH's ideas have been traditionally described in procedural terms inspired by implementations of the SSH. This description has various problems when used to implement physical agents. First, some assumptions are not explicitly stated or are difficult to meet by current sensory technology (e.g. sensory information is not rich enough to distinguish one place from another). Second, some important SSH concepts (i.e. paths) are not properly defined or understood. Third, sometimes it is not clear what the representation states and consequently it is hard to apply it to new domains.; In this dissertation we propose a formal semantics for the SSH causal, topological and local metrical theories. Based on this semantics, we extend the SSH in the following important ways: (i) we include distinctive states as objects of the theory and handle perceptual aliasing, (ii) we define the models associated with the SSH causal and topological levels, (iii) we extend the SSH topological theory to handle convergent and self intersecting paths as well as hierarchical maps, (iv) we show how to combine causal, topological and noisy local metrical information, (v) based on the previous enhancements, we define an algorithm to keep track of different topological maps consistent with the agent's experiences. This algorithm supports different exploration-strategies and facilitates map disambiguation when the case arises.
机译:空间语义层次结构(SSH)是其下级别的一组不同表示形式的集合。在控制级别,代理及其环境处于一组离散的独特状态。控制律,其执行状态空间的离散因果图表示。因果图和路径(即拓扑图)。可以在控制,因果和拓扑级别的框架内构建位置和路径的局部度量模型,同时避免全局一致性问题。传统上,SSH的大多数思想都是以受SSH实现启发的程序术语来描述的。当用于实现物理代理时,此描述存在各种问题。首先,一些假设没有明确陈述,或者当前的感官技术很难满足(例如,感官信息不足以将一个地方与另一个地方区分开)。其次,一些重要的SSH概念(即路径)未正确定义或理解。第三,有时不清楚表示的内容,因此很难将其应用于新领域。本文提出了SSH因果,拓扑和局部度量理论的形式语义。基于此语义,我们通过以下重要方式扩展SSH:(i)将独特的状态作为理论对象,并处理感知别名;(ii)定义与SSH因果关系和拓扑级别相关的模型,(iii )我们扩展了SSH拓扑理论,以处理收敛和自相交的路径以及分层映射,(iv)展示了如何组合因果,拓扑和嘈杂的本地度量信息,(v)基于先前的增强功能,我们定义了一种算法跟踪与代理的经验一致的不同拓扑图。该算法支持不同的探索策略,并在情况出现时促进地图歧义消除。

著录项

  • 作者

    Remolina, Emilio.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 266 p.
  • 总页数 266
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

  • 入库时间 2022-08-17 11:47:08

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