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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >A VIIRS direct broadcast algorithm for rapid response mapping of wildfire burned area in the western United States
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A VIIRS direct broadcast algorithm for rapid response mapping of wildfire burned area in the western United States

机译:美国西部野火烧毁区快速响应映射的VIIRS直播算法

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摘要

We present a direct broadcast (DB) rapid response burned area mapping algorithm for Visible Infrared Imaging Radiometer Suite (VIIRS) data that combines products driven by the spectral signal of fire-affected areas from both emissive and reflective spectral bands. The algorithm processes VIIRS infrared M-bands (750 m) using spectral ratios of the top of atmosphere reflectance from a single satellite scene to identify pixels exhibiting surface properties consistent with burn scars. Next, this collection of candidate burn scar pixels is screened using a contextual filter based on VIIRS I-band (375 m) active fire detections (AFD) which removes erroneously classified pixels and provides burn scar detections (BSD). The AFD and BSD are then resampled to a 375 m grid and reported jointly as VIIRS burned area (VBA). The accuracy of the VBA was assessed for 390 wildfires (11-114,500 ha in size) in the western United States. The spatial accuracy was assessed by comparison with a validation dataset of Monitoring Trends in Burn Severity (MTBS) burned area and incident fire perimeter polygons. The VBA temporal accuracy was evaluated using a time series of daily fire perimeter polygons derived from high resolution airborne infrared imagery. The algorithm's burned area mapping accuracy is 59%. The algorithm detected 60% of burned area on the initial day of burning and 73% within 24 h.
机译:我们介绍了一种直接广播(DB)快速响应燃烧区域映射算法,用于可见红外成像辐射计套件(VIIRS)数据,该数据与来自发射和反射光谱带的光谱信号的光谱信号驱动的产品相结合。该算法使用从单个卫星场景的大气反射率顶部的光谱比处理Viirs红外M带(750m),以识别表现出与烧伤疤痕一致的表面性质的像素。接下来,使用基于Viirs I-BAND(375M)主动火灾检测(AFD)的上下文过滤器筛选候选烧伤瘢痕像素的该集合,其消除错误的分类像素并提供烧伤瘢痕检测(BSD)。然后将AFD和BSD重新采样至375米网格,并作为VIIR烧毁区域(VBA)共同报道。在美国西部的390个野火(大小为11-114,500公顷)的评估VBA的准确性。通过比较与烧伤严重程度(MTB)烧毁区域和入射火周边多边形的监测趋势的验证数据集进行评估空间准确度。使用来自高分辨率空气红外图像的每日火灾周长多边形的时间序列评估VBA时间精度。算法的烧毁区域映射精度为59%。该算法在燃烧的初始日期检测到60%的烧伤区域,24小时内73%。

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