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Monitoring vegetation biomass of a coastal ecosystem using multidate optical satellite data

机译:使用多日期光学卫星数据监测沿海生态系统的植被生物量

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Abstract: In order to effectively protect coastal ecosystems, objective information on the structural and functional characteristics of these systems must be obtained through regular monitoring. In recent years, more advanced technologies, such as satellite remote sensing, have arisen which are being utilized for the monitoring and management of coastal ecosystems in general, and vegetation in particular. This paper presents the results from monitoring the vegetation biomass of the Koycegiz Lagoon area, declared as a Specially Protected Area by the Turkish Government, using multi-temporal satellite imagery. Several problems need to be overcome when using imagery from different dates or from different sensors. These include; image registration, atmospheric variability, and, often, the lack of historical ground data. Furthermore, for monitoring purposes, techniques to overcome these problems should be robust and automatic allowing the database to be upgraded easily. The procedures we have developed include automatic registration (to subpixel accuracy), atmospheric normalization, and vegetation index (VI) calibration components. This was tested on multidate (1984, 1988, 1991, 1995 and 1996) LANDSAT-TM data. From this adjusted data set the performance of different vegetation indices, in this coastal environment was examined, and the vegetation trends analyzed. !10
机译:摘要:为了有效保护沿海生态系统,必须通过定期监测获得有关这些系统的结构和功能特征的客观信息。近年来,已经出现了诸如卫星遥感之类的更先进的技术,这些技术被广泛地用于监视和管理沿海生态系统,尤其是植被。本文介绍了使用多时相卫星图像监测土耳其政府宣布为特别保护区的科伊吉吉斯泻湖地区的植被生物量的结果。使用不同日期或不同传感器的图像时,需要克服几个问题。这些包括;图像配准,大气多变性以及通常缺乏历史地面数据的情况。此外,出于监视目的,克服这些问题的技术应具有鲁棒性和自动性,以允许轻松升级数据库。我们开发的程序包括自动配准(至亚像素精度),大气归一化和植被指数(VI)校准组件。这已在多日期(1984、1988、1991、1995和1996)LANDSAT-TM数据上进行了测试。根据调整后的数据集,研究了该沿海环境中不同植被指数的表现,并分析了植被趋势。 !10

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