论文标题

使用卫星数据检测印度的作物燃烧

Detecting Crop Burning in India using Satellite Data

论文作者

Walker, Kendra, Moscona, Ben, Jack, Kelsey, Jayachandran, Seema, Kala, Namrata, Pande, Rohini, Xue, Jiani, Burke, Marshall

论文摘要

农作物残留物燃烧是世界许多地方的空气污染的主要来源,尤其是南亚。政策制定者,从业者和研究人员都投资了衡量影响和制定干预措施以减少燃烧的方法。但是,测量燃烧的影响或干预措施的有效性减少燃烧需要数据燃烧的位置。这些数据在成本和可行性方面都在现场收集具有挑战性。我们利用印度旁遮普邦旁遮普邦农作物残留物燃烧的地面监测的数据,以探索是否可以使用可访问的卫星图像更有效地检测到燃烧。具体而言,我们使用了具有高时间分辨率(最多每天)的3M Planetscope数据以及具有每周时间分辨率但光谱信息深度的公共可用Sentinel-2数据。在分析了不同光谱带和燃烧指数分别分离燃烧和未燃烧图的能力之后,我们构建了一个随机森林模型,这些模型确定提供了最大的分离性和使用地面验证的数据进行评估的模型性能。鉴于测量所带来的挑战,我们的总体模型精度为82%是有利的。基于此过程的见解,我们讨论了检测卫星图像燃烧作物残留物的技术挑战,以及测量燃烧和政策干预措施的影响的挑战。

Crop residue burning is a major source of air pollution in many parts of the world, notably South Asia. Policymakers, practitioners and researchers have invested in both measuring impacts and developing interventions to reduce burning. However, measuring the impacts of burning or the effectiveness of interventions to reduce burning requires data on where burning occurred. These data are challenging to collect in the field, both in terms of cost and feasibility. We take advantage of data from ground-based monitoring of crop residue burning in Punjab, India to explore whether burning can be detected more effectively using accessible satellite imagery. Specifically, we used 3m PlanetScope data with high temporal resolution (up to daily) as well as publicly-available Sentinel-2 data with weekly temporal resolution but greater depth of spectral information. Following an analysis of the ability of different spectral bands and burn indices to separate burned and unburned plots individually, we built a Random Forest model with those determined to provide the greatest separability and evaluated model performance with ground-verified data. Our overall model accuracy of 82-percent is favorable given the challenges presented by the measurement. Based on insights from this process, we discuss technical challenges of detecting crop residue burning from satellite imagery as well as challenges to measuring impacts, both of burning and of policy interventions.

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