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基于对象的图像分析和多端元光谱混合分析评估和监测半干旱灌丛。

Assessing and monitoring semi-arid shrublands using object-based image analysis and multiple endmember spectral mixture analysis.

机构信息

Argonne National Laboratory, Argonne, IL 60439, USA.

出版信息

Environ Monit Assess. 2013 Apr;185(4):3173-90. doi: 10.1007/s10661-012-2781-z. Epub 2012 Aug 4.

DOI:10.1007/s10661-012-2781-z
PMID:22864579
Abstract

Arid and semi-arid shrublands have significant biological and economical values and have been experiencing dramatic changes due to human activities. In California, California sage scrub (CSS) is one of the most endangered plant communities in the US and requires close monitoring in order to conserve this important biological resource. We investigate the utility of remote-sensing approaches--object-based image analysis applied to pansharpened QuickBird imagery (QBPS/OBIA) and multiple endmember spectral mixture analysis (MESMA) applied to SPOT imagery (SPOT/MESMA)--for estimating fractional cover of true shrub, subshrub, herb, and bare ground within CSS communities of southern California. We also explore the effectiveness of life-form cover maps for assessing CSS conditions. Overall and combined shrub cover (i.e., true shrub and subshrub) were estimated more accurately using QBPS/OBIA (mean absolute error or MAE, 8.9 %) than SPOT/MESMA (MAE, 11.4 %). Life-form cover from QBPS/OBIA at a 25 × 25 m grid cell size seems most desirable for assessing CSS because of its higher accuracy and spatial detail in cover estimates and amenability to extracting other vegetation information (e.g., size, shape, and density of shrub patches). Maps derived from SPOT/MESMA at a 50 × 50 m scale are effective for retrospective analysis of life-form cover change because their comparable accuracies to QBPS/OBIA and availability of SPOT archives data dating back to the mid-1980s. The framework in this study can be applied to other physiognomically comparable shrubland communities.

摘要

干旱和半干旱灌丛具有重要的生物和经济价值,但由于人类活动,这些地区正在发生剧烈变化。在美国加利福尼亚州,加利福尼亚旱生灌丛(CSS)是最濒危的植物群落之一,需要密切监测,以保护这一重要的生物资源。我们研究了遥感方法的实用性——基于对象的图像分析应用于锐化后的 QuickBird 图像(QBPS/OBIA)和多端元光谱混合分析(MESMA)应用于 SPOT 图像(SPOT/MESMA)——用于估计南加州 CSS 群落中真实灌木、半灌木、草本和裸地的分数覆盖。我们还探索了生活型覆盖图在评估 CSS 条件方面的有效性。使用 QBPS/OBIA(平均绝对误差或 MAE,8.9%)估计整体和综合灌木覆盖(即真实灌木和半灌木)比使用 SPOT/MESMA(MAE,11.4%)更准确。由于 QBPS/OBIA 在覆盖估计方面具有更高的准确性和空间细节,并且易于提取其他植被信息(例如,灌木斑块的大小、形状和密度),因此,25×25 m 网格单元大小的 QBPS/OBIA 生活型覆盖图似乎最适合评估 CSS。使用 SPOT/MESMA 在 50×50 m 尺度上生成的地图对于生活型覆盖变化的回溯分析非常有效,因为它们与 QBPS/OBIA 的准确性相当,并且可以使用 SPOT 档案数据回溯到 20 世纪 80 年代中期。本研究中的框架可以应用于其他形态上可比的灌丛群落。

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