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The Integration of an Operational Fire Hot Spots Processing Chain in a Multi-Hazard Emergency Management Service Platform (PHAROS)

机译:在多危险的紧急管理服务平台(PHAROS)中的操作火灾热点加工链的整合

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摘要

The project PHAROS (Project on a Multi-Hazard Open Platform for Satellite Based Downstream Services) designs and implements a multi-hazard open service platform which integrates space-based earth observation, satellite communications and navigation (Galileo/GNSS) assets to provide sustainable (pre-operational) services for a wide variety of users in multi-application domains, such as prediction/early detection of emergencies, population alerting, environmental monitoring and crisis management. While the service platform is designed to be multi-hazard, the specific developments for the pre-operational system and pilot demonstration will be focused on the forest fire scenario. The platform will integrate data from EO satellites and in-situ sensors process it and provide the results to a series of key services for disaster management in its different phases. One of the main concerns is to provide fire hot spots as an input for the PHAROS Simulation Service.udThese fire hot spots (thermal anomalies) are derived automatically and in near real time (NRT) from MODIS data. The MODIS data are available in a high (1d) temporal and in a medium (250m – 1000m) spatial resolution. For the detection of high temperature events (HTE) the MOD14 algorithm is used. The algorithm is based on the shift of the radiances/reflectance to shorter wavelengths (middle infrared) with an increasing surface temperature. MOD14 is well documented and tested in operational services and guarantees comparability and reproducibility as well as a standardized international acknowledged product. The thermal information is collected at 1000 m spatial resolution twice daily by each sensor (Terra and Aqua) providing up to four thermal observations daily. The MODIS images used for fire detection are acquired from two direct broadcast receiving stations from DLR located in Oberpfaffenhofen and Neustrelitz (Germany).udThis Poster will give an overview of the processing chain from the reception, the processing and derivation of the fire hot spots to the dissemination in the Pharos system.
机译:Pharos(基于卫星的下游服务的多危险开放平台项目)设计并实现了一个多危险开放式服务平台,整合了基于空间的地球观察,卫星通信和导航(Galileo / GNSS)资产,以提供可持续的(在多应用领域的各种用户的售前)服务,例如预测/早期检测紧急情况,人口警报,环境监测和危机管理。虽然服务平台被设计为多危险,但预先运营系统和试点示范的具体发展将集中在森林火灾情景上。该平台将从EO卫星和原位传感器集成数据,并将结果提供给不同阶段的一系列灾害管理的关键服务。主要担忧之一是提供火灾热点作为Pharos仿真服务的输入。 Udthese Fire Hot Spots(热异常)是自动衍生的,并且在Modis数据中自动衍生出近实时(NRT)。 MODIS数据以高(1D)时间和介质(250m - 1000M)空间分辨率提供。为了检测高温事件(HTE),使用MOD14算法。该算法基于较短波长(中红外线)的辐射/反射率的偏移,随着表面温度的增加。 Mod14在运营服务中记录和测试,保证了可比性和可重复性以及标准化的国际承认产品。每个传感器(Terra和Aqua)每天每天每天两次收集热信息,每天每天提供多达四个热敏观察。用于火灾检测的MODIS图像是从位于Oberpfaffenhofen和Neustrelitz(德国)的DLR直接广播电台获取。 Udthis海报将概述从接待处的加工链,火灾热点的加工和推导在Pharos系统中传播。

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