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Soybean yield estimation using HJ-1 CCD data in Northeast China

机译:利用HJ-1 CCD数据估算中国东北的大豆产量

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In this study, soybean biomass was estimated using HJ-1 CCD data, combined with a radiation use efficiency model. HJ-1 CCD data provide time-serial parameters, with which we can get the information that describe the growth process of soybean, so inputted these information into a biomass model with the real time meteorological data, and then we could get the biomass. And then a fix value of harvest index (HI) was used to calculate the soybean yield. The results were validated with ground measure data. The coefficients of determination R2 is 0.425, and the average fractional differences between estimated and observed yield of soybean is 29.73%. We concluded that estimation with remote-sensing data, such as the HJ CCD data that have a high spatial resolution and a shorter revisit cycle, can show more detail in its spatial patterns and improve the application of remote sensing on a local scale. The potential also exists for applying the approach to many other studies, including agricultural production estimation, crop growth monitoring, and agricultural ecosystem carbon cycle studies.
机译:在这项研究中,使用HJ-1 CCD数据结合辐射利用效率模型估算了大豆生物量。 HJ-1 CCD数据提供了时间序列参数,通过这些参数我们可以获得描述大豆生长过程的信息,因此将这些信息与实时气象数据一起输入到生物量模型中,然后就可以获得生物量。然后使用收获指数的固定值(HI)来计算大豆产量。地面测量数据验证了结果。测定系数R2为0.425,估计和观察到的大豆产量之间的平均分数差异为29.73%。我们得出的结论是,利用遥感数据进行的估计(例如具有高空间分辨率和较短重访周期的HJ CCD数据)可以在其空间模式中显示更多细节,并改善在本地范围内遥感的应用。将这种方法应用到许多其他研究中的潜力也很大,包括农业产量估算,作物生长监测和农业生态系统碳循环研究。

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