首页> 外文会议>ISPRS Technical Commission VIII Mid-Term Symposium >GEOSPATIAL DATA SHARING, ONLINE SPATIAL ANALYSIS AND PROCESSING OF INDIAN BIODIVERSITY DATA IN INTERNET GIS DOMAIN- A CASE STUDY FOR RASTER BASED ONLINE GEO-PROCESSING
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GEOSPATIAL DATA SHARING, ONLINE SPATIAL ANALYSIS AND PROCESSING OF INDIAN BIODIVERSITY DATA IN INTERNET GIS DOMAIN- A CASE STUDY FOR RASTER BASED ONLINE GEO-PROCESSING

机译:地理空间分享,在互联网GIS领域中的印度生物多样性数据的在线空间分析和处理 - 以基于栅格在线地理处理的案例研究

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National Biodiversity Characterization at Landscape Level, a project jointly sponsored by Department of Biotechnology and Department of Space, was implemented to identify and map the potential biodiversity rich areas in India. This project has generated spatial information at three levels viz. Satellite based primary information (Vegetation Type map, spatial locations of road & village, Fire occurrence); geospatially derived or modelled information (Disturbance Index, Fragmentation, Biological Richness) and geospatially referenced field samples plots. The study provides information of high disturbance and high biological richness areas suggesting future management strategies and formulating action plans. The study has generated for the first time baseline database in India which will be a valuable input towards climate change study in the Indian Subcontinent. The spatial data generated during the study is organized as central data repository in Geo-RDBMS environment using PostgreSQL and POSTGIS. The raster and vector data is published as OGC WMS and WFS standard for development of web base geoinformation system using Service Oriented Architecture (SOA). The WMS and WFS based system allows geo-visualization, online query and map outputs generation based on user request and response. This is a typical mashup architecture based geo-information system which allows access to remote web services like ISRO Bhuvan, Openstreet map, Google map etc., with overlay on Biodiversity data for effective study on Bio-resources. The spatial queries and analysis with vector data is achieved through SQL queries on POSTGIS and WFS-T operations. But the most important challenge is to develop a system for online raster based geo-spatial analysis and processing based on user defined Area of Interest (AOI) for large raster data sets. The map data of this study contains approximately 20 GB of size for each data layer which are five in number. An attempt has been to develop system using python, PostGIS and PHP for raster data analysis over the web for Biodiversity conservation and prioritization. The developed system takes inputs from users as WKT, Openlayer based Polygon geometry and Shape file upload as AOI to perform raster based operation using Python and GDAL/OGR. The intermediate products are stored in temporary files and tables which generate XML outputs for web representation. The raster operations like clip-zip-ship, class wise area statistics, single to multi-layer operations, diagrammatic representation and other geo-statistical analysis are performed. This is indigenous geospatial data processing engine developed using Open system architecture for spatial analysis of Biodiversity data sets in Internet GIS environment. The performance of this applications in multi-user environment like Internet domain is another challenging task which is addressed by fine tuning the source code, server hardening, spatial indexing and running the process in load balance mode. The developed system is hosted in Internet domain (http://bis.iirs.gov.in) for user access.
机译:国家生物多样性特征,在景观水平,通过生物技术和航天部部共同主办的一个项目,是实现在印度的识别和映射潜在的生物多样性丰富的地区。该项目已在三个层次即生成的空间信息。基于卫星的主要信息(植被类型图,道路和村庄,火灾发生的空间位置);地理空间衍生的或建模的信息(紊乱指数,碎片,生物丰富度)和地理空间参考场的取样图。这项研究提供高干扰和高生物丰富地区暗示未来的管理策略和制定行动计划的信息。该研究已在印度第一次基线数据库,这将是走向印度次大陆气候变化研究提供宝贵的意见产生。在研究过程中所产生的空间数据被组织为在使用PostgreSQL和POSTGIS地理RDBMS环境中央数据储存库。光栅和矢量数据被公布为OGC WMS和用于使用面向服务的架构(SOA)的网络基础地理信息系统的发展WFS标准。的WMS和WFS基于系统允许地理可视化,在线查询和映射基于用户请求和响应输出产生。这是一个典型的混搭架构基于地理信息系统,该系统允许访问远程Web服务,如ISRO Bhuvan,Openstreet地图,谷歌地图等,与对生物资源的有效研究生物多样性数据覆盖。所述空间查询和分析与向量数据通过SQL查询上POSTGIS和WFS-T操作来实现。但最重要的挑战是开发在线光栅基于地理空间分析系统,并基于对大型栅格数据集定义的利息(AOI)地区用户的处理。本研究的地图数据中包含大约20 GB的大小为它们是五个数量的每个数据层。已经尝试使用python,PostGIS中,PHP在Web上对生物多样性的保护和优先栅格数据分析来开发系统。所开发的系统从用户基于WKT,Openlayer多边形的几何形状和式样的文件上传作为AOI使用Python和GDAL / OGR执行基于光栅的操作输入。中间产物被存储在临时文件并生成用于网络表示XML输出表。像剪辑拉链船,类明智区域统计,单至多层的操作,图示和其它地理统计分析光栅操作被执行。这是使用开放式系统架构在互联网GIS环境的生物多样性数据集空间分析土著地理空间数据处理引擎开发。在多用户环境下,如因特网域此应用程序的性能是由微调的源代码,服务器硬化,空间索引和运行负载平衡模式的处理解决的另一个具有挑战性的任务。所开发的系统在互联网领域(http://bis.iirs.gov.in)供用户访问托管。

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