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相关概念视频

Selected Data About Geographic Locations01:25

Selected Data About Geographic Locations

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Geographic Information Systems (GIS) rely on two core types of data: spatial data and attribute data.Spatial DataSpatial data defines the physical location of features within a coordinate system, typically expressed in terms of latitude and longitude. It provides precise positioning for elements like roads, rivers, or buildings.Attribute DataAttribute data complements spatial data by adding descriptive information about these features. For example, a road's spatial data includes its start and...
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Levels of Use of a GIS01:29

Levels of Use of a GIS

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Geographic Information Systems (GIS) operate across three levels of application, each representing an increasing degree of complexity: data management, analysis, and prediction. These levels reflect the expanding functionality and versatility of GIS technology in handling spatial data for diverse purposes.Data ManagementAt its foundational level, GIS serves as a tool for data management, enabling the input, storage, retrieval, and organization of spatial data. This level is often employed in...
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Ogive Graph01:07

Ogive Graph

5.8K
An ogive graph is sometimes called a cumulative frequency polygon. It is one type of frequency polygon that shows cumulative frequency. In other words, the cumulative percentages are added to the graph from left to right. An ogive graph plots cumulative frequency on the vertical y-axis and class boundaries along the horizontal x-axis. It’s very similar to a histogram; only instead of rectangles, an ogive displays a single point where the top right of the rectangle would be. Creating this...
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Time-Series Graph00:54

Time-Series Graph

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A time-series graph is a line graph with repeated measurements taken at successive intervals of time. It is also called a time series chart. To construct a time-series graph, one must look at both pieces of a paired data set. The horizontal axis is used to plot the time increments, and the vertical axis is used to plot the values of the variable that one is measuring. By using the axes in this way, each point on the graph will correspond to time and a measured quantity. The points on the graph...
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GIS Software, Hardware, and Sources of GIS Data01:23

GIS Software, Hardware, and Sources of GIS Data

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A Geographic Information System (GIS) combines specialized software and hardware to effectively manage, analyze, and present spatial and related data. GIS software includes critical functionalities such as a user interface for easy navigation, database management tools for handling spatial and attribute data, and data retrieval features for efficient access. Analytical tools transform raw data into insights, while display functions produce maps and reports in various formats for effective...
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Thematic Layering in GIS01:30

Thematic Layering in GIS

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In the past, planning projects such as schools or public facilities required extensive manual effort to gather and compile data. Information such as property boundaries, soil characteristics, road networks, zoning regulations, and flood zones had to be sourced individually from courthouses, utility providers, and registry offices. Assembling these datasets into a coherent format often took several months, delaying project timelines.The introduction of Geographic Information Systems (GIS)...
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相关实验视频

Updated: Sep 11, 2025

Evidence-based Knowledge Synthesis and Hypothesis Validation: Navigating Biomedical Knowledge Bases via Explainable AI and Agentic Systems
05:47

Evidence-based Knowledge Synthesis and Hypothesis Validation: Navigating Biomedical Knowledge Bases via Explainable AI and Agentic Systems

Published on: June 13, 2025

578

一个基于本体学的知识图表,用于旅游信息管理.

Subhashis DAS1, Mayukh Bagchi2

  • 1Department of Computer Science and Automation, Universidad de Salamanca, Salamanca, Castile and León, 37007, Spain.

Open research Europe
|August 12, 2025
PubMed
概括

本研究介绍了由人工智能 (AI) 驱动的本体学驱动的知识图,以解决复杂的旅游信息需求. 这种人工智能方法增强了旅游数据服务,用于复杂的用户查询.

关键词:
概念解 概念解 概念解面向的本体学 面向的本体学知识图表知识图表实体学建模 实体学建模旅游 旅游 旅游 旅游旅游业和人工智能 (AI)

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科学领域:

  • 人工智能的人工智能
  • 知识表示 知识表示
  • 信息科学 信息科学 信息科学

背景情况:

  • 现代旅游业产生复杂的用户查询,从简单到高度具体.
  • 现有的信息和通信技术 (ICT) 基础设施难以满足对细粒度旅游数据的需求.
  • 文化,语言和经济多样性使旅游者的信息提供变得复杂.

研究的目的:

  • 提出并倡导基于本体学的知识图表作为先进旅游信息服务的解决方案.
  • 为开发能够在规模上处理复杂的旅游查询的人工智能支持系统提供方法.
  • 提高旅游数据的细节性和可访问性.

主要方法:

  • 开发一个理论上和实施上健全的方法.
  • 利用人工智能 (AI) 来处理数据和提供服务.
  • 利用本体学驱动的知识图来进行结构化数据表示.

主要成果:

  • 开发了一个全面的旅游特定的本体学驱动的知识图.
  • 知识图包含了4264个资源描述框架 (RDF) 语句.
  • 开发的系统得到了验证,并准备好进行集成和扩展.

结论:

  • 由本体学驱动的知识图为复杂的旅游信息需求提供了强大的解决方案.
  • 拟议的AI方法有效地解决了旅游业当前ICT的局限性.
  • 开发的知识图是可重复使用的,可扩展的,在旅游业中可利用的.