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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Detecting high and low-intensity fires in Alaska using VIIRS I-band data: An improved operational approach for high latitudes
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Detecting high and low-intensity fires in Alaska using VIIRS I-band data: An improved operational approach for high latitudes

机译:使用VIIRS I-BAND数据检测阿拉斯加的高和低强度火灾:一种改进的高纬度的操作方法

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Abstract Fire products from Moderate Resolution Imaging Spectroradiometer (MODIS) and Visible Infrared Imaging Radiometer Suite (VIIRS) imagery provide timely information for wildfire detection, monitoring, and characterization at the global scale. However, in Alaskan boreal forest fires, their lower effectiveness in detecting residual fire once the high-intensity fire front has passed limits their practical use for regional or local fire management decisions. Using data acquired during Alaska's 2016 fire season, we analyzed the performance of the MODIS-based MOD14/MYD14, and the more recent VIIRS I-band active fire products. A comparison with the fire perimeter and properties data published by the Alaska Interagency Coordination Center (AICC) shows that both MODIS and VIIRS fire products successfully detect all fires larger than approximately 200–300ha. For fires smaller than this threshold, the VIIRS I-band product offers higher detection likelihood. To map burn areas containing both low- and high-intensity active fire, we developed the VIIRS I-band Fire Detection Algorithm for High Latitudes (VIFDAHL). We apply this algorithm to regions of known Alaskan boreal forest fires and validate it using events mapped by fire management agencies and detected on closely-timed Landsat imagery. We find that for Alaska, an example of a high-latitude region, VIFDAHL more accurately captures the fire spread, can differentiate well between low- and high-intensity fires, and can detect 30–90% more fire pixels compared to the MODIS and VIIRS global fire products. Highlights ? The performance of operational MODIS and VIIRS fire products is evaluated. ? A new VIIRS fire detection algorithm (VIFDAHL) is proposed. ? It is easy to implement and suitable for high latitudes. ? Detection of low-intensity fires and fire mapping are enhanced. ]]>
机译:<![cdata [ 抽象 来自适度分辨率的成像光谱辐射计(MODIS)和可见红外成像辐射计套件(VIIRS)图像的消防产品提供及时信息在全球范围内进行野火检测,监测和表征。然而,在阿拉斯加的北方森林火灾中,一旦高强度火灾前线通过限制了区域或当地火灾管理决策,它们就会降低剩余火灾的有效性。使用在阿拉斯加2016年火灾季节期间获得的数据,我们分析了基于MODIS的MOD14 / MYD14的性能,以及最近的VIIRS I-BAND主动消防产品。与Alaska Intergration Center(AICC)发布的消防周长和属性数据(AICC)的比较表明,MODIS和VIIRS消防产品成功地检测到大于约200-300的所有火灾 HA。对于小于此阈值的火灾,VIIRS I-BAND产品提供更高的检测可能性。为了映射包含低强度和高强度的激动火灾的烧伤区域,我们开发了高纬度(Vifdahl)的VIIRS I频段火灾检测算法。我们将该算法应用于已知阿拉斯加博林森林火灾的地区,并使用火灾管理机构映射的事件进行验证,并在紧密定时的Landsat Imagery上检测到。我们发现,对于阿拉斯加,高纬度地区的一个例子,Vifdahl更准确地捕获火灾扩散,可以区分低强度和高强度的火灾之间的良好,并且与MODIS相比,可以检测到30-90%的火像素。 VIIRS全球消防产品。 突出显示 评估操作MODIS和VIIRS Fire Products的性能。 提出了新的Viirs火灾检测算法(Vifdahl)。 < ce:list-item id =“li0015”> 它很容易实现和适合高纬度。< / ce:para> 增强了低强度火灾和火灾映射的检测。 ]]>

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