Urban remote sensing with lidar for the Smart City Concept implementation

Udc, Sergiy Kostrikov, V. Karazin
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引用次数: 6

Abstract

Introduction of the problem. The paper emphasizes that the key features of the contemporary urban development have caused a number of challengers, which require the innovative technological introductions in urban studies. The research goal of this paper means representing a multifunctional approach, which combines author’s urbogeosystem (UGS) theory with the URS (Urban Remote Sensing) technique for LiDAR (Light Detection And Ranging) data processing. The key elements of the Smart City concept within a geospatial perspective. Three basic assumptions are implied due to the affiliation “a geospatial perspective ó the Smart City concept” (SCC). The five key elements of the SCC have been outlined: Innovations; Scalability; Data gathering, measuring, and mining; Addressing environmental challengers; Interlink between the smart meter information and the geo-sensor information. The urbogeosystemic approach as a tool for simulating the “smart urban environment” – a core node of the Smart City hierarchy. The urbogeosystemic ontological model has been introduced as a trinity-tripod (urban citizens, municipal infrastructure, urbanistic processes and phenomena). The “smart urban environment” is a core node of an urbogeosystem. Processing results of LiDAR surveying technique. With increasing availability of LiDAR data, 3D city models of robust topology and correct geometry have become the most prominent features of the urban environment. Three key advantages of the LiDAR surveying technique have been introduced. The flowchart of the operational URS / LiDAR / GIS workflow for the Smart City implementation has been depicted. Urban Remote Sensing for data mining / city analytics and the EOS LiDAR Tool. ELiT (EOS LiDAR Tool) software is both a separate web-based (network) generator (an engine) – ELiT Server, and an integrated component of EOS Platform-as-a-Service software – ELiT Cloud. The allied one to these two products is our desktop ElitCore software, that possesses even broader functionality. The paper outlines the whole framework of urban data mining / city analytics relevant to the mentioned applications. The ELiT software use cases for the Smart Cities. A number of use cases that can be completed with the ELiT software in the common urban planning domain have been described and illustrated. Each from five scenarios presented suggests some unique solution within the frameworks of the SCC implementation. Conclusion, future research and developments. The completed research results have been summarized. An entity of the urban geoinformation space has been introduced. A geodatabase of ELiT 3D city models has been assigned a mandatory key component of the urban decision support system.
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利用激光雷达进行城市遥感,实现智慧城市概念
问题介绍。本文强调当代城市发展的主要特征带来了许多挑战,这需要在城市研究中引入创新的技术。本文的研究目标是代表一种多功能的方法,将作者的城市地理系统(UGS)理论与URS(城市遥感)技术相结合,用于LiDAR(光探测和测距)数据处理。从地理空间角度看智慧城市概念的关键要素。由于“地理空间视角ó智慧城市概念”(SCC)的关联,隐含了三个基本假设。SCC的五个关键要素如下:创新;可伸缩性;数据收集、测量和挖掘;应对环境挑战;智能电表信息与地理传感器信息之间的互连。城市地理系统方法作为模拟“智能城市环境”的工具——智能城市层次结构的核心节点。城市地理系统本体论模型作为三位一体(城市居民、市政基础设施、城市化过程和现象)被引入。“智慧城市环境”是城市地理系统的核心节点。激光雷达测量技术处理结果。随着激光雷达数据的日益可用性,具有鲁棒拓扑和正确几何形状的3D城市模型已成为城市环境的最突出特征。介绍了激光雷达测量技术的三个主要优点。描述了智慧城市实施的URS / LiDAR / GIS工作流程流程图。用于数据挖掘/城市分析的城市遥感和EOS激光雷达工具。ELiT (EOS激光雷达工具)软件既是一个独立的基于网络的(网络)生成器(引擎)——ELiT服务器,也是EOS平台即服务软件——ELiT云的集成组件。与这两款产品配套的是我们的桌面ElitCore软件,它拥有更广泛的功能。本文概述了与上述应用相关的城市数据挖掘/城市分析的整个框架。智慧城市的ELiT软件用例。在公共城市规划领域中,ELiT软件可以完成的许多用例已经被描述和说明。所提出的五个场景中的每一个都在SCC实现的框架内提出了一些独特的解决方案。结论,未来的研究与发展。对已完成的研究成果进行了总结。介绍了一个城市地理信息空间实体。ELiT三维城市模型地理数据库已被指定为城市决策支持系统的强制性关键组件。
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