首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >SIMULATION OF REGIONAL WINTER WHEAT YIELD BY COMBINING EPIC MODEL AND REMOTELY SENSED LAI BASED ON GLOBAL OPTIMIZATION ALGORITHM
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SIMULATION OF REGIONAL WINTER WHEAT YIELD BY COMBINING EPIC MODEL AND REMOTELY SENSED LAI BASED ON GLOBAL OPTIMIZATION ALGORITHM

机译:基于全局优化算法的史诗模型与远程感测赖液相同思考区域冬小麦产量

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In recent years, combining spatial and timely remote sensing data and crop growth model is an important way to improve accuracy of crop growth simulation and crop growth monitoring. In this paper, global optimization algorithm SCE-UA (Shuffled Complex Evolution method - University of Arizona) was used to integrate remotely sensed leaf area index (LAI) with EPIC crop growth model to simulate regional winter wheat yield and other field management information such as sowing date, plant density and net nitrogen fertilizer application rate in Huanghuaihai Plain in China. Final results showed that average relative error of estimated winter wheat yield was 1.81% and RMSE was 0.208 t/ha. Compared with the actual observation data, average relative error of simulated plant density and net nitrogen fertilization application rate was -7.95% and -8.88% respectively and absolute error of simulated sowing date was only 1 day. These above accuracy of simulated results could meet requirements of crop monitoring at regional scale. It was proved that integrating remotely sensed LAI with EPIC model based on SCE-UA for simulation of crop growth condition and crop yield was feasible.
机译:近年来,相结合的空间和及时遥感数据和作物生长模型是提高作物增长模拟和作物生长监测的准确性的重要途径。在本文中,全球优化算法SCE-UA(亚利桑那州洗牌复合体演进方法)用于与史诗作物生长模型进行远程感测的叶面积指数(LAI),以模拟区域冬小麦产量和其他现场管理信息黄淮海平原播种日期,植物密度和净氮肥应用率。最终结果表明,综合冬小麦产量的平均相对误差为1.81%,RMSE为0.208吨/小时。与实际观察数据相比,模拟植物密度的平均相对误差和净氮肥施用率分别为-7.95%和-8.88%,模拟播种日期的绝对误差仅为1天。这些模拟结果的准确性可以满足区域规模的作物监测要求。事实证明,基于SCE-UA的史诗模型将远程感测的LAI与用于模拟作物生长条件和作物产量是可行的。

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