European Commission, Joint Research Centre (JRC), Ispra, Italy.
External consultant for the European Commission (ARCADIA SIT s.r.l) ARCADIA SIT s.r.l, Vigevano, PV, Italy.
Sci Data. 2019 Nov 29;6(1):296. doi: 10.1038/s41597-019-0312-2.
Global fire monitoring systems are crucial to study fire behaviour, fire regimes and their impact at the global scale. Although global fire products based on the use of Earth Observation satellites exist, most remote sensing products only partially cover the requirements for these analyses. These data do not provide information like fire size, fire spread speed, how fires may evolve and joint into single event, or the number of fire events for a given area. This high level of abstraction is very valuable; it makes it possible to characterize fires by types (either size, spread, behaviour, etc.). Here, we present and test a data mining work flow to create a global database of single fires that allows for the characterization of fire types and fire regimes worldwide. This work describes the data produced by a data mining process using MODIS burnt area product Collection 6 (MCD64A1). The entire product has been computed until the present and is available under the umbrella of the Global Wildfire Information System (GWIS).
全球火灾监测系统对于研究火灾行为、火灾规律及其在全球范围内的影响至关重要。虽然存在基于地球观测卫星使用的全球火灾产品,但大多数遥感产品仅部分满足这些分析的要求。这些数据无法提供火灾大小、火灾蔓延速度、火灾如何演变并合为单一事件,或者特定区域内火灾事件的数量等信息。这种高度抽象化非常有价值;它使得通过类型(如大小、蔓延、行为等)来描述火灾成为可能。在这里,我们提出并测试了一种数据挖掘工作流程,以创建一个全球单一火灾数据库,从而能够对全球范围内的火灾类型和火灾规律进行描述。这项工作描述了使用 MODIS 火烧面积产品集合 6 (MCD64A1)进行数据挖掘过程产生的数据。整个产品已经计算到目前为止,并可在全球野火信息系统(GWIS)的保护伞下使用。