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Levels of Use of a GIS01:29

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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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Disease surveillance is the systematic collection, analysis, and interpretation of health data essential to the planning, implementation, and evaluation of public health practice. This process integrates data dissemination to entities responsible for preventing and controlling disease, injury, and disability. Surveillance systems provide crucial information for action, helping public health authorities make informed decisions to manage and prevent outbreaks, ensure public safety, optimize...
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As the construction industry moves towards more eco-friendly practices, concrete's adaptability and its ability to incorporate sustainable features make it a key material in the drive towards greener building solutions.
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Geographic Information Systems (GIS) are tools for storing, analyzing, and displaying spatial data alongside related attributes. Unlike traditional information systems that address general queries, GIS incorporates spatial components, enabling users to answer "where" and "how far." For example, GIS can process housing data linked to geographic locations like zip codes, allowing insights into population density or housing distribution through thematic maps.GIS integrates technologies such as...
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相关实验视频

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为实现智能城市互操作性制定最低一套共同原则.

Angelo Frascella1, Arianna Brutti1, Nicola Gessa1

  • 1Italian National Agency for New Technologies, Energy and Sustainable Economic Development, ENEA, Bologna, Italy.

Techne : journal of technology for architecture and environment
|October 30, 2024
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概括

智慧城市的发展面临着封闭应用所带来的挑战,这些应用被称为"孤岛". 这项研究提出了架构原则和开放平台规范,以促进互操作性,并为集成的智能城市服务打破这些数据孤岛.

关键词:
互操作性 互操作性 互操作性智慧城市是智慧城市.标准 标准 标准 标准 标准

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科学领域:

  • 城市规划是城市规划.
  • 计算机科学 计算机科学
  • 信息技术 信息技术 信息技术 信息技术

背景情况:

  • 目前的智能城市投资导致孤立的,自我一致的应用程序 ("孤岛").
  • 这些孤岛提供了强大的垂直集成,但缺乏横向互操作性.
  • 这种碎片化阻碍了城市环境中的无数据共享和服务集成.

研究的目的:

  • 调查解决智能城市孤岛问题的当前举措.
  • 提出一个框架来减少和理想情况下消除这些孤岛.
  • 促进智能城市生态系统中的更大的互操作性和整合性.

主要方法:

  • 分析现有的智慧城市发展举措.
  • 识别孤立应用所带来的共同挑战和局限性.
  • 基于建筑原则的概念框架的开发.

主要成果:

  • 确定封闭应用程序 ("孤岛") 的扩散是智能城市整合的主要障碍.
  • 提出了互操作性的枢纽点 (PPI) 概念作为一个基础的架构原则.
  • 概述了开放智慧城市平台规范的必要性,以指导发展.

结论:

  • 打破智能城市的孤岛对于实现真正的城市智能至关重要.
  • 采用像PPI这样的共同架构原则可以促进横向整合.
  • 开放平台规范对于建立相互连接和互操作的智能城市至关重要.