Geoinformation system of engineering networks and communications of maritime trading port

V. Stadnikov, N. Likhva
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Abstract

The work is devoted to researching the process of development, implementation and operation of the geoinformation system of engineering networks and communications (GISIS) in the Odesa Sea Trade Port. The beginning of the development of the system began more than twenty years ago. The beginning of the works was preceded by the stage of pre-project studies, the result of which were the technical tasks for the implementation of the works and the project of the structure of information support. The work was carried out in stages, which corresponded to a separate territory and type of work. The purpose of this work is to research the processes of performing field and camera geodetic, photogrammetric, cartographic works, designing and creating a geoinformation database, selecting and adapting specialized geoinformation software, operating and supporting the system during the full life cycle of the geoinformation system. The methodology mainly corresponds to the following algorithm of work performance. At the stage of preliminary design studies: – collection and analysis of data on the exchange of cartographic and analytical information between external organizations, – collection and analysis of data on the exchange of cartographic and analytical information within the enterprise, primarily between engineering services, – description of the existing document circulation system with cartographic and analytical information, – a description of the shortcomings of the existing document management system, – determination of requirements for geo-information software and justification of the configuration of the geo-information software package and its architecture. At the stage of field work: – construction of a shooting justification and definition of data for communication with other coordinate systems, – reconnaissance on the territory of performance of works. Planning field work. – execution of topographical and geodetic works for the purpose of building or updating 1:500, 1:2000 scale plans. Construction of outlines. – performance of engineering and geodetic works for the study of underground communications in order to design the sections of wells and other engineering nodes. At the stage of design (camera works): – based on outlines and electronic survey protocols, development or correction of 1:500, 1:2000 scale plans using geoinformation software. – based on outlines, photofixation materials, construction of diagrams of sections of wells and other engineering nodes in electronic form. – formation of a geo-informational database of the object on the territory of execution of works. – debugging the project in the environment of geoinformation software. – coordination of the project with the engineering services of the enterprise and external organizations. – commissioning the developed project to the customer. Scientific novelty and practical significance – for the first time, research and development of the methodology of creation and support at all stages of the life cycle of the geoinformation system of engineering networks and communications of a large seaport was carried out. The methodology was developed for a long time during the entire life cycle of the system. The methodology was used by other ports and large industrial enterprises.
海上贸易港工程网络和通信地理信息系统
这项工作致力于研究敖德萨海贸港工程网络和通信地理信息系统(GISIS)的开发、实施和运行过程。该系统的开发始于二十多年前。在工程开始之前,先进行了项目前期研究,研究结果是实施工程的技术任务和信息支持结构项目。工程分阶段进行,分别对应不同的地区和工程类型。这项工作的目的是研究野外和照相大地测量、摄影测量、制图工作的实施过程,设计和创建地理信息数据库,选择和调整专门的地理信息软件,在地理信息系统的整个生命周期内运行和支持该系统。该方法主要对应以下工作绩效算法。在初步设计研究阶段:- 收集和分析外部机构之间交换制图和分析信息的数据,- 收集和分析企业内部(主要是工程服务部门之间)交换制图和分析信息的数据,- 描述现有的制图和分析信息文件传阅系统,- 描述现有文件管理系统的缺点,- 确定对地理信息软件的要求,并对地理信息软件包的配置及其结构进行论证。在野外工作阶段: - 建立拍摄说明并确定与其他坐标系通信的数据, - 对工程实施区域进行勘察。规划实地工作。- 实施地形和大地测量工程,以绘制或更新 1:500 和 1:2000 比例尺的图纸。绘制轮廓图- 进行工程和大地测量工作,研究地下通讯,以便设计水井和其他工程节点。在设计阶段(摄像工程):- 根据轮廓和电子测量协议,使用地理信息软件制定或修正 1:500 和 1:2000 比例尺的平面图。- 根据轮廓图、照相固定材料,以电子形式绘制水井和其他工程节点的剖面图。- 建立工程实施区域内的地理信息数据库。- 在地理信息软件环境中调试项目。- 与企业和外部机构的工程服务部门协调项目。- 将开发的项目交付客户使用。科学新颖性和实际意义--首次对大型海港工程网络和通信地理信息系统生命周期各阶段的创建和支持方法进行了研究和开发。该方法在系统的整个生命周期中经过了长时间的开发。其他港口和大型工业企业也采用了该方法。
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