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Mapping seaweed forests with IKONOS image based on bottom surface reflectance

机译:基于底面反射率的IKONOS图像绘制海藻森林

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摘要

Seaweed forests are important habitats for many fishery species. However, decrease in seaweed forests is reported in all over Japan. Mapping and monitoring seaweed forest distribution is necessary for understanding their present status and taking measures for their conservation. Since traditional diving visual observation is not efficient for large scale mapping, alternative method is required. Although satellite remote sensing is one of the noteworthy methods, only a few studies have been conducted probably due to two main problems about mapping seaweed forests by remote sensing. The first one is a difficulty to collect field truth data. The second one is a light attenuation effect in water column which makes analysis more difficult. We applied an efficient method to overcome these two problems. We selected the seaweed beds off Shimoda in Izu Peninsula, Japan, as a study area. An IKONOS satellite image was used for analysis because its high spatial and radiometric resolutions are practical for seaweed mapping. We measured spectral reflectance profiles of seaweed and substrates in the study area. The result revealed effective wavelength bands for distinguishing seaweeds from other substrates. Truth data for satellite image analysis and evaluation were collected in the field using the boat and an aquatic video camera. This method allowed us to collect many truth data in short time. Satellite image analysis was conducted using radiometric correction for water column and maximum likelihood classification. The overall accuracy using error matrix reached 97.9%. The results indicate usefulness of the method for seaweed forest mapping.
机译:海藻森林是许多渔业物种的重要栖息地。但是,据报道日本全国的海藻森林减少。对海藻森林分布进行制图和监测对于了解其现状并采取保护措施非常必要。由于传统的潜水视觉观察对于大规模地图绘制效率不高,因此需要替代方法。尽管卫星遥感是值得注意的方法之一,但由于有关通过遥感绘制海藻森林的两个主要问题,因此仅进行了少量研究。第一个是收集现场真实数据的困难。第二个是水柱中的光衰减效应,这使分析更加困难。我们应用了一种有效的方法来克服这两个问题。我们选择了日本伊豆半岛下田附近的海藻床作为研究区域。使用IKONOS卫星图像进行分析是因为其高空间分辨率和辐射分辨率可用于海藻制图。我们在研究区域中测量了海藻和基质的光谱反射率分布。结果显示了有效的波长带,用于区分海藻和其他基质。使用船和水上摄像机在野外收集用于卫星图像分析和评估的真相数据。这种方法使我们可以在短时间内收集许多真实数据。使用辐射校正对水柱和最大似然分类进行卫星图像分析。使用误差矩阵的整体准确性达到97.9%。结果表明该方法对海藻森林制图的实用性。

著录项

  • 来源
    《Remote sensing of the marine environment II》|2012年|85250Q.1-85250Q.7|共7页
  • 会议地点 Kyoto(JP)
  • 作者单位

    Remote Sensing Technology Center of Japan, TOKYU REIT Toranomon Bldg., 3F, 3-17-1, Toranomon, Minato-Ku, Tokyo, 105-0001, Japan;

    Atmosphere and Ocean Research Institute, The University of Tokyo, 5-1-5, Kashiwanoha, Kashiwa, Chiba, 277-8564, Japan;

    Graduate School of Agricultural Science, Tohoku University, 1-1, Tsutsumi-dori Amamiya-machi, Aoba, Sendai, Miyagi, 981-8555, Japan;

    Atmosphere and Ocean Research Institute, The University of Tokyo, 5-1-5, Kashiwanoha, Kashiwa, Chiba, 277-8564, Japan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    seaweed forest; mapping; IKONOS; bottom surface reflectance;

    机译:海藻林映射IKONOS;底面反射率;

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