陈天恩, 董 静, 陈立平, 陈 栋. 县域农田土壤采样布局多目标优化分析模型[J]. 农业工程学报, 2012, 28(23): 67-73.
    引用本文: 陈天恩, 董 静, 陈立平, 陈 栋. 县域农田土壤采样布局多目标优化分析模型[J]. 农业工程学报, 2012, 28(23): 67-73.
    Chen Tian'en, Dong Jing, Chen Liping, Chen Dong. Multi-objective optimization analysis for soil nutrients sampling point layout in county range[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(23): 67-73.
    Citation: Chen Tian'en, Dong Jing, Chen Liping, Chen Dong. Multi-objective optimization analysis for soil nutrients sampling point layout in county range[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(23): 67-73.

    县域农田土壤采样布局多目标优化分析模型

    Multi-objective optimization analysis for soil nutrients sampling point layout in county range

    • 摘要: 合理布置农田土壤采样点可以在满足采样精度的前提下显著降低采样数量及成本,或在有限采样数量的限制下确保采样具有最佳的代表性。通过研究筛选区域范围内多种影响农田土壤养分采样点分布的因素,以及不同土壤养分的空间效应,建立区域农田土壤养分采样点布局多目标优化决策分析模型;并结合改进的遗传算法进行模型的求解过程分析。采用江苏省宝应县的农田空间数据及筛选的环境数据,分别从给定采样点数量条件下寻求最佳采样点分布方案,以及在满足采样精度和代表性的前提下确定最小采样点数量等2个角度进行了模型的分析验证工作;结果表明该模型可适用于解决县域范围大量分散耕作农田的土壤养分统一采样规划问题,为采样点的合理分布提供了一种定量优化分析手段。

       

      Abstract: It is obvious that optimal design of crop soil sampling locations would significantly decrease the number and costs of sampling by the premise of satisfying sampling precision, or insure the sample having the best representativeness by the limitation of sampling quantity. A multi-object optimization analysis and decision-making model of regional crop soil densities sampling distribution was put forward by researching and screening the various factors which influence the distribution of crop soil nutrients sampling destinies, and the spatial effect of different soil nutrients. The model's solving process is analyzed according to the improved genetic algorithm. At last, the model was analyzed and verified separately from two views for finding the best sampling densities distribution under the condition of assigned number, and insuring the minimum quantity of sampling densities by the premise of satisfying sampling precision and representativeness based on the farmland spatial data and screened environmental data in Baoying, Yangzhou. The results show that this model is suitable for solving soil nutrients uniform sampling planning problems under the condition of a large number of dispersive arable lands in the range of county area, which can provide a quantitative method for optimization analysis.

       

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