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首页> 外文期刊>International journal of digital Earth >Advances in active fire detection using a multi-temporal method for next-generation geostationary satellite data
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Advances in active fire detection using a multi-temporal method for next-generation geostationary satellite data

机译:利用下一代地静止卫星数据的多时间方法进行主动火灾检测的进步

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A vital component of fire detection from remote sensors is the accurate estimation of the background temperature of an area in fire's absence, assisting in identification and attribution of fire activity. New geostationary sensors increase the data available to describe background temperature in the temporal domain. Broad area methods to extract the expected diurnal cycle of a pixel using this temporally rich data have shown potential for use in fire detection. This paper describes an application of a method for priming diurnal temperature fitting of imagery from the Advanced Himawari Imager. The BAT method is used to provide training data for temperature fitting of target pixels, to which thresholds are applied to detect thermal anomalies in 4 mu m imagery over part of Australia. Results show the method detects positive thermal anomalies with respect to the diurnal model in up to 99% of cases where fires are also detected by Low Earth Orbiting (LEO) satellite active fire products. In absence of LEO active fire detection, but where a burned area product recorded fire-induced change, this method also detected anomalous activity in up to 75% of cases. Potential improvements in detection time of up to 6 h over LEO products are also demonstrated.
机译:远程传感器的火灾检测的重要组成部分是精确估计火灾缺失的区域的背景温度,协助发现和归因于消防活动。新的地静止传感器增加可用于描述时间域中的背景温度的数据。使用这种时间富有的数据提取像素的预期昼夜提取的广泛区域方法已经显示用于火灾检测的可能性。本文介绍了一种从先进的Himawari成像仪中灌注播种昼夜温度拟合的方法。 BAT方法用于提供目标像素的温度拟合的训练数据,施加到哪些阈值以检测澳大利亚一部分的4亩图像中的热异常。结果表明该方法检测阳性热异常,在昼夜模型中,高达99%的案例也被低地球轨道(LEO)卫星活性消防产品检测到火灾。在没有LEO主动火灾检测的情况下,在烧毁的区域产品记录火灾诱导的变化的情况下,这种方法也检测到高达75%的病例的异常活动。还证明了在Leo产品上最多6小时的检测时间的潜在改进。

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