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July 1, 2006Photogrammetric Engineering & Remote Sensing773 citationsOpen Access

Object-based Detailed Vegetation Classification with Airborne High Spatial Resolution Remote Sensing Imagery

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QYQian YuPGPeng GongNCNick Clinton

Key Points

  • This research aims to assess the effectiveness of high spatial resolution airborne imagery for detailed vegetation classification at the alliance level.
  • Utilized airbone Digital Airborne Imaging System (DAIS) imagery alongside ancillary topographic data.
  • Generated image objects with Fractal Net Evolution Approach (FNEA) and calculated 52 features for each.
  • Implemented a hierarchical classification scheme with a non-parametric classifier and compared results to pixel-based maximum likelihood classification.
  • Achieved improved classification accuracy through the object-based approach compared to traditional pixel-based methods.
  • The object-based method addressed the salt-and-pepper effect prevalent in pixel-based classifications.
  • Successfully created a comprehensive vegetation inventory at Point Reyes National Seashore.

Abstract

In this paper, we evaluate the capability of the high spatial resolution airborne Digital Airborne Imaging System (DAIS) imagery for detailed vegetation classification at the alliance level with the aid of ancillary topographic data. Image objects as minimum classification units were generated through the Fractal Net Evolution Approach (FNEA) segmentation using eCognition software. For each object, 52 features were calculated including spectral features, textures, topographic features, and geometric features. After statistically ranking the importance of these features with the classification and regression tree algorithm (CART), the most effective features for classification were used to classify the vegetation. Due to the uneven sample size for each class, we chose a non-parametric (nearest neighbor) classifier. We built a hierarchical classification scheme and selected features for each of the broadest categories to carry out the detailed classification, which significantly improved the accuracy. Pixel-based maximum likelihood classification (MLC) with comparable features was used as a benchmark in evaluating our approach. The objectbased classification approach overcame the problem of saltand-pepper effects found in classification results from traditional pixel-based approaches. The method takes advantage of the rich amount of local spatial information present in the irregularly shaped objects in an image. This classification approach was successfully tested at Point Reyes National Seashore in Northern California to create a comprehensive vegetation inventory. Computer-assisted classification of high spatial resolution remotely sensed imagery has good potential to substitute or augment the present ground-based inventory of National Park lands.

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Cite This Study

Yu et al. (2006) studied this question.

synapsesocial.com/papers/6a1550785347fbb1739f934bhttps://doi.org/10.14358/pers.72.7.799
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