首页> 外文期刊>Precision Agriculture >Geostatistical and fuzzy clustering approach for delineation of site-specific management zones and yield-limiting factors in irrigated hot arid environment of India
【24h】

Geostatistical and fuzzy clustering approach for delineation of site-specific management zones and yield-limiting factors in irrigated hot arid environment of India

机译:划分现场特定管理区的地质和模糊聚类方法及印度灌溉热干旱环境中的产量限制因素

获取原文
获取原文并翻译 | 示例
       

摘要

Delineation of management zones (MZs) are needed to manage fields in order to maximize economic return, minimize environmental impact, and improve soil and crop management. The MZs of uniform production potential may offer an effective solution to nutrient management. In this study, a total of 122 geo-referenced representative surface (0-250 mm depth) soil samples were collected from the study area covering an area of 6296 ha. Soil samples were analysed for pH, EC, CaCO3, organic carbon (SOC), available nitrogen (AN), available phosphorus (AP), available potassium (AK) and micronutrients (Fe, Mn, Zn and Cu). Their spatial variability was analyzed and spatial distribution maps were constructed using geostatistical techniques. Geostatistical analysis showed that exponential, rational quadratic, tetraspherical, pentaspherical and circular models were the best-fit models for soil properties and available nutrients. Further, geographical weighted principal component analysis (GWPCA) and possibilistic fuzzy C-means (PFCM) clustering algorithm were carried out to delineate the management zones based on optimum clusters identified using fuzzy performance index (FPI) and normalized classification entropy (NCE). The results revealed that the optimum number of MZs for this study area was four and there was heterogeneity in soil nutrients in four MZs. The study indicated that MZ-based soil test crop response recommendation reduces the application quantity of fertilizer significantly at a large extent. Therefore, the management zone concept can reduce agricultural inputs and environmental pollution, and maximize crop production.
机译:管理区域(MZS)划分划分才能管理领域,以最大限度地提高经济回报,最大限度地减少环境影响,改善土壤和作物管理。均匀生产潜力的MZ可以提供有效的营养管理解决方案。在本研究中,从研究区域收集了总共122个地理参考的代表表面(0-250mm深度)土壤样品,覆盖了6296公顷的面积。分析土壤样品用于pH,EC,CaCO 3,有机碳(SoC),可用的氮(AN),可用磷(AP),可用钾(AK)和微量营养素(Fe,Mn,Zn和Cu)。分析了它们的空间变异性,并且使用地统计技术构建了空间分布图。地质统计分析表明,指数,合理的二次,四面妇,五特征和圆形模型是土壤性质和可用营养素的最佳型号。此外,对地理加权主成分分析(GWPCA)和可能的模糊C-MATION(PFCM)聚类算法进行了基于使用模糊性能指数(FPI)和标准化分类熵(NCE)识别的最佳簇来描绘管理区。结果表明,该研究区域的最佳数量为4个,四种MZ中的土壤营养素中存在异质性。该研究表明,基于MZ的土壤测试作物响应推荐在很大程度上降低了肥料的施用量。因此,管理区概念可以减少农业投入和环境污染,并最大限度地发挥作物生产。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号