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Simulation of fire detection by infrared imagers from geostationary satellites

机译:对地静止卫星红外成像仪进行火情探测的模拟

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Forest fire detection in real time from geostationary satellite is very useful for early warning intervention and monitoring in all European countries. The use of infrared sensors is a well-known technique to detect high temperature events at sub-pixel level. An end to end simulation model quantitatively linking the user requirements with the instrument design parameters has been developed and applied to the European MSG SEVIRI imagery, allowing an evaluation of the minimum and the maximum detectable active fire area and temperature and giving results in agreement with literature data. A parametric analysis as a function of the instrument Instantaneous Field Of View has also been performed in order to evaluate preliminary results for the imager foreseen to be embarked in the European MTG platform. This end-to-end model can be useful to evaluate the capability of the fire detection for other satellite infrared payloads particularly during the phase 0-A of a space project when it is necessary to understand the possible impacts of the scientific requirements on the instrument sizing. (C) 2015 Elsevier Inc. All rights reserved.
机译:对地静止卫星实时森林火灾探测对所有欧洲国家的预警干预和监测非常有用。红外传感器的使用是一种众所周知的技术,可以检测子像素级别的高温事件。已经开发了一种将用户需求与仪器设计参数定量链接的端到端仿真模型,并将其应用于欧洲MSG SEVIRI图像,从而可以评估最小和最大可探测活动火场面积和温度,并得出与文献一致的结果数据。还根据仪器的瞬时视场进行了参数分析,以评估预计要在欧洲MTG平台上安装的成像器的初步结果。这种端到端模型对于评估其他卫星红外有效载荷的火情探测能力很有用,特别是在太空项目的0-A阶段,当有必要了解科学要求对仪器的可能影响时浆纱。 (C)2015 Elsevier Inc.保留所有权利。

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