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Estimating Rangeland Forage Production Using Remote Sensing Data from a Small Unmanned Aerial System (sUAS) and PlanetScope Satellite

机译:使用小型无人机系统(sUAS)和PlanetScope卫星的遥感数据估算牧场的牧草产量

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Rangelands cover ~23 million hectares and support a $3.4 billion annual cattle industry in California. Large variations in forage production from year to year and across the landscape make grazing management difficult. We here developed optimized methods to map high-resolution forage production using multispectral remote sensing imagery. We conducted monthly flights using a Small Unmanned Aerial System (sUAS) in 2017 and 2018 over a 10-ha deferred grazing rangeland. Daily maps of NDVI at 30-cm resolution were first derived by fusing monthly 30-cm sUAS imagery and more frequent 3-m PlanetScope satellite observations. We estimated aboveground net primary production as a product of absorbed photosynthetically active radiation (APAR) derived from NDVI and light use efficiency (LUE), optimized as a function of topography and climate stressors. The estimated forage production agreed well with field measurements having a R 2 of 0.80 and RMSE of 542 kg/ha. Cumulative NDVI and APAR were less correlated with measured biomass ( R 2 = 0.68). Daily forage production maps captured similar seasonal and spatial patterns compared to field-based biomass measurements. Our study demonstrated the utility of aerial and satellite remote sensing technology in supporting adaptive rangeland management, especially during an era of climatic extremes, by providing spatially explicit and near-real-time forage production estimates.
机译:牧场覆盖约2300万公顷,支持加利福尼亚州每年34亿美元的养牛业。每年和整个地区的牧草产量差异很大,使放牧管理变得困难。我们在此开发了优化的方法,以使用多光谱遥感影像绘制高分辨率草料的生产图。我们在2017年和2018年使用小型无人机系统(sUAS)在10公顷的延迟放牧牧场上进行了每月飞行。首先通过融合每月30厘米的sUAS图像和更频繁的3-m的P​​lanetScope卫星观测来获得30厘米分辨率的NDVI每日地图。我们估算了地上净初级生产力是吸收自NDVI的光合有效辐射(APAR)和光利用效率(LUE)的乘积,并根据地形和气候压力因子进行了优化。估计的草料产量与R 2为0.80且RMSE为542 kg / ha的田间测量结果非常吻合。累积的NDVI和APAR与测得的生物量相关性较小(R 2 = 0.68)。与基于田间生物量的测量相比,每日饲料生产图捕获了相似的季节和空间格局。我们的研究通过提供空间明晰和近实时的草料产量估算值,证明了航空和卫星遥感技术在支持适应性牧场管理中的实用性,特别是在极端气候时期。

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