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首页> 外文期刊>International journal of remote sensing >Airborne forest fire mapping with an adaptive infrared sensor
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Airborne forest fire mapping with an adaptive infrared sensor

机译:带有自适应红外传感器的空中森林火灾测绘

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The international scientific community has called for more detailed data on vegetation fires to improve the understanding of their role in global atmospheric chemistry, and on fire itself as an ecosystem disturbance. The fire science community highlighted the value of information such as fire spatial distribution, timing, extent, energy release, burning efficiency and emissions. In order to obtain reliable information on these parameters, a combination of operational and experimental space-borne sensors with in situ and airborne sensor measurements is required. A small satellite demonstrator mission on Bi-spectral InfraRed Detection (BIRD) was prepared by the Institute of Space Sensor Technology and Planetary Exploration of the German Aerospace Center (DLR). It was successfully launched on 22 October 2001 into a 570km sun-synchronous orbit. This paper presents new thermal mapping results obtained with the Advanced BIRD Airborne Simulator (ABAS) during a flight campaign over controlled forest fires in the open coal mining region of the Brandenburg country in Germany on 23 August 2001. These data have been successfully used to retrieve the effective area and effective temperature of forest fires by means of the application of the bi-spectral sub-pixel method.
机译:国际科学界呼吁提供有关植物大火的详细数据,以加深对植物大火在全球大气化学中的作用以及作为自然生态系统干扰的火灾的了解。消防科学界强调了诸如火灾空间分布,时间,范围,能量释放,燃烧效率和排放等信息的价值。为了获得有关这些参数的可靠信息,需要结合使用操作性和实验性星载传感器以及就地和机载传感器进行测量。德国航空航天中心(DLR)的空间传感器技术与行星探测研究所准备了一个小型的双光谱红外探测卫星演示器(BIRD)。它于2001年10月22日成功发射到570公里的太阳同步轨道。本文介绍了2001年8月23日在德国勃兰登堡州的露天煤矿地区进行的一场受控森林大火飞行运动中,通过先进的BIRD机载模拟器(ABAS)获得的新热图结果。这些数据已成功用于检索运用双光谱子像素法研究森林火灾的有效面积和有效温度。

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