Combining error models to reduce the imprecision of geometric length measurement in vector databases

IF 2.1 3区 地球科学 Q2 GEOGRAPHY Transactions in GIS Pub Date : 2024-01-16 DOI:10.1111/tgis.13132
Jean-François Girres
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Abstract

Length measurements calculated from the geometry of vector geographic objects, called geometric measurements, are inherently imprecise. The imprecision of the measurements is due to the accumulation of causes of various origins, related to the production processes, and the rules of data representation. In order to reduce the overall imprecision of geometric length measurements, this article proposes to identify the causes of measurement error in the data, to model their respective impact, and finally to combine these different impacts. To do so, five causes of geometric measurement error have been modeled: map projection, terrain disregard, polygonal approximation of curves, digitizing error, and cartographic generalization. To estimate the overall measurement imprecision, three combination methods are proposed: selection of the maximum error, sum of the errors, and quadratic aggregation of the errors. An experiment conducted on a sample of roads represented at a medium scale demonstrates that quadratic error aggregation is the most effective combination method for reducing the imprecision of geometric length measurements.
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结合误差模型减少矢量数据库中几何长度测量的不精确性
根据矢量地理物体的几何形状计算出的长度测量值(称为几何测量值)本质上是不精确的。测量结果不精确的原因有很多,与生产过程和数据表示规则有关。为了减少几何长度测量的整体不精确性,本文建议找出造成数据测量误差的原因,建立各自影响的模型,最后将这些不同的影响结合起来。为此,本文对造成几何测量误差的五个原因进行了建模:地图投影、地形忽略、曲线的多边形近似、数字化误差和制图概括。为估算总体测量误差,提出了三种组合方法:最大误差选择法、误差总和法和误差二次汇总法。在中等比例尺道路样本上进行的实验表明,二次误差汇总法是降低几何长度测量不精确度的最有效组合方法。
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来源期刊
Transactions in GIS
Transactions in GIS GEOGRAPHY-
CiteScore
4.60
自引率
8.30%
发文量
116
期刊介绍: Transactions in GIS is an international journal which provides a forum for high quality, original research articles, review articles, short notes and book reviews that focus on: - practical and theoretical issues influencing the development of GIS - the collection, analysis, modelling, interpretation and display of spatial data within GIS - the connections between GIS and related technologies - new GIS applications which help to solve problems affecting the natural or built environments, or business
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