首页> 外文期刊>Journal of geographical systems >A general framework for error analysis in measurement-based GIS Part 1: The basic measurement-error model and related concepts
【24h】

A general framework for error analysis in measurement-based GIS Part 1: The basic measurement-error model and related concepts

机译:基于测量的GIS中误差分析的通用框架,第1部分:基本的测量误差模型和相关概念

获取原文
获取原文并翻译 | 示例
           

摘要

This is the first of a four-part series of papers which proposes a general framework for error analysis in measurement-based geographical information systems (MBGIS). The purpose of the series is to investigate the fundamental issues involved in measurement error (ME) analysis in MBGIS, and to provide a unified and effective treatment of errors and their propagation in various interrelated GIS and spatial operations. Part 1 deals with the formulation of the basic ME model together with the law of error propagation. Part 2 investigates the classic point-in-polygon problem under ME. Continuing to Part 3 is the analysis of ME in intersections and polygon overlays. In Part 4, error analyses in length and area measurements are made. In this present part, a simple but general model for ME in MBGIS is introduced. An approximate law of error propagation is then formulated. A simple, unified, and effective treatment of error bands for a line segment is made under the name of covariance-based error band. A new concept, called maximal allowable limit, which guarantees invariance in topology or geometric-property of a polygon under ME is also advanced. To handle errors in indirect measurements, a geodetic model for MBGIS is proposed and its error propagation problem is studied on the basis of the basic ME model as well as the approximate law of error propagation. Simulation experiments all substantiate the effectiveness of the proposed theoretical construct.
机译:这是由四部分组成的系列文章中的第一篇,该系列文章提出了基于度量的地理信息系统(MBGIS)中误差分析的通用框架。该系列的目的是研究MBGIS中的测量误差(ME)分析所涉及的基本问题,并提供对误差及其在各种相互关联的GIS和空间操作中的传播的统一有效的处理。第1部分讨论了基本ME模型的制定以及错误传播定律。第2部分研究了ME下的经典多边形点问题。继续第3部分,对相交和多边形叠加中的ME进行分析。在第4部分中,对长度和面积测量进行了误差分析。在本部分中,将介绍一个简单但通用的MBGIS ME模型。然后制定误差传播的近似定律。以基于协方差的误差带的名称对线段的误差带进行了简单,统一和有效的处理。还提出了一种新的概念,称为最大允许极限,该概念可确保在ME下多边形的拓扑或几何特性不变。为了处理间接测量中的误差,提出了一种MBGIS的大地测量模型,并在基本的ME模型以及误差传播的近似规律的基础上研究了其误差传播问题。仿真实验均证实了所提出理论结构的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号