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The use of spectral and spatial information in the classification of aircraft, rocket and satellite imagery.

机译:在飞机,火箭和卫星图像分类中使用光谱和空间信息。

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摘要

The research described in the thesis is concerned with the analysis of imagery obtained from aircraft, rockets, and manned and unmanned spacecraft. The imagery is of two types, one being conventional photographic imagery using the visible and/or the near infrared parts of the spectrum. The other is derived from multispectral scanners carried by Landsat 1 and 2 spacecraft in which information is produced separately for each of the two visible and two infrared spectral bands.;One method of analysis is based solely upon the spatial variations of intensity in a single waveband and provides textural information for a scene. This variation has been examined using both one and two-dimensional Fourier analysis to provide a mathematical description of the textural changes.;Use of spectral information allows greater variation in the methods of analysis which fall into two principal classes. In the unsupervised method group classification of the images is made according to some similarity measure between the spectral content of each picture element and with no a priori information on their identities. The relative advantages of this method as applied to the imagery considered here have been examined in relation to those possessed by the alternative approach, using the supervised method ofanalysis, which requires a priori information on the type and degree of classification which is required.;The supervised method employed here assumes a Gaussian distribution for the spectral intensities of each class and uses a maximum likelihood decision rule for the classification. The extent to which the characteristic spectral signature of each class can be spatially extrapolated and still yield acceptable results has been examined, as has the effort of incorporating a 'threshold' below which classification does not take place.;The analysis is directed towards the automatic machine classification of the images for different applications and also incorporates a comparison of different methods of classification.
机译:本文所描述的研究涉及从飞机,火箭以及载人和无人航天器获得的图像的分析。图像有两种类型,一种是使用光谱的可见和/或近红外部分的常规摄影图像。另一种是从Landsat 1和Landsat 2航天器携带的多光谱扫描仪得出的,其中分别为两个可见光谱带和两个红外光谱带分别产生信息。一种分析方法仅基于单个波段强度的空间变化并提供场景的纹理信息。已经使用一维和二维傅立叶分析对这种变化进行了检验,以提供纹理变化的数学描述。光谱信息的使用可以使分析方法中的变化更大,分为两个主要类别。在无监督方法中,根据每个像素的光谱内容之间的某种相似性度量对图像进行组分类,并且没有关于其身份的先验信息。使用监督的分析方法,已经将这种方法应用于此处考虑的图像的相对优势与替代方法所具有的优势进行了检验,该分析方法需要先验信息以了解所需的分类类型和分类程度。这里采用的监督方法假设每个类别的光谱强度都具有高斯分布,并使用最大似然决策规则进行分类。已经检查了每个类别的特征光谱特征可以在空间上推断的程度并仍然产生可接受的结果的程度,还尝试了合并``阈值''的工作,在该阈值以下不会发生分类。针对不同应用对图像进行机器分类,并且还包括对不同分类方法的比较。

著录项

  • 作者单位

    University of London, Bedford College (United Kingdom).;

  • 授予单位 University of London, Bedford College (United Kingdom).;
  • 学科 Computer science.
  • 学位 Ph.D.
  • 年度 1976
  • 页码 285 p.
  • 总页数 285
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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