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Porting a Process-Based Crop Model to a High-Performance Computing Environment for Plant Simulation

机译:将基于过程的作物模型移植到植物仿真的高性能计算环境中

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Increasing concerns about food security have stimulated integrated assessment of the sustainability of agricultural systems at regional, national and global scales with high-resolution. Traditionally, the process-based agricultural models are designed for field scale studies that obtain inputs, run the simulations and provide outputs through the graphic interface. The graphic interface based model dose not suit for modelling practices requiring a large number of simulations. Here, we developed a high performance approach which concurrently executed the Agricultural Production Systems sIMulator (APSIM) simulations using parallel programming techniques. In this approach, an APSIM simulation template with replaceable parameters was firstly designed, and new simulations based on the template was then constructed by dynamically replacing parameters of climate, soil and management options. We parallelized the batched running method in a shared-memory multiprocessor system using Python's Multiprocessing module. We tested the approach with a case study that simulated the productivity of continuous wheat cropping system during 20 years period along the Australian cereal-growing regions under management practices of 5 levels nitrogen application and 3 stubble management practices. More than 170 K runs were finished in 43h by using 64 workers, achieved a speedup ratio of 60. The parallelized method proposed in this study makes large-scale and high-resolution agricultural systems assessment possible.
机译:对食品安全的关注日益强烈刺激了农业综合系统的可持续性评估在高分辨率区域,国家和全球尺度。传统上,基于过程的农业模式被设计用于场规模研究,获得输入,运行模拟和通过图形接口提供输出。图形界面基于模型的剂量不适合用于建模需要大量的模拟实践。在这里,我们开发了同时执行使用并行编程技术的农业生产系统模拟器(APSIM)模拟高性能的方法。在这种方法中,具有可替换参数的APSIM仿真模板首先设计的,基于模板的新的模拟,然后通过动态更换的气候,土壤和管理选项的参数构造。我们并行使用Python的多处理模块中的共享存储多处理机系统的批处理运行方法。我们测试与在所5级施氮和3和管理实践的管理实践以及澳大利亚谷物种植区20之期模拟连续种植小麦系统的生产力的情况下,研究的方法。超过170ķ次试验采用64名工人43H完成,实现了60一加速比在这项研究中提出的并行方法使大规模和高清晰度的农业系统的评估成为可能。

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