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A New Soil Sampling Design in Coastal Saline Region Using EM38 and VQT Method

机译:基于EM38和VQT方法的滨海盐碱地土壤取样新设计。

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摘要

Spatial sampling design based on the variability and distribution of soil properties is an important issue with the progress in precision agriculture and soil ecology. Electromagnetic induction (type EM38) and variance quad-tree (VQT) method were both applied to optimize the sampling scheme of soil salinity in a coastal reclamation field in north Jiangsu Province, China. Apparent soil electrical conductivity (ECa) measured with EM38 was used as an ancillary variable and the spatial distribution of ECa was used as priori information. The process and result of VQT algorithm analysis was illustrated and the obtained sampling strategy was validated using observed soil salinity. Then the spatial precision and sampling efficiency were evaluated. The result indicated that the spatial distribution of soil salinity produced with the VQT scheme was quite similar to that produced with total sampling sites, while sampling quantity of the former was reduced to approximately 1/2 of the latter. The spatial precision of VQT scheme was considerably higher than that of traditional grid method with respect to the same sampling number, and fewer samples were required for VQT scheme to obtain the same precision level. A 17.3% increase in sampling efficiency was achieved by VQT over grid method at the precision level of 90%. The VQT method was proved to be more efficient and economical because it can sample intensively or sparsely according to variation status in local areas. The associated application of EM38 and VQT method provides efficient tools and theoretical basis for saving sampling cost and improving sampling efficiency in coastal saline region and enriching soil ecology.
机译:随着土壤特性的变化和分布的空间采样设计是精确农业和土壤生态学发展的重要问题。电磁感应(EM38型)和方差四叉树(VQT)方法均被用于优化苏北沿海开垦区土壤盐分的采样方案。用EM38测得的表观土壤电导率(ECa)作为辅助变量,ECa的空间分布用作先验信息。阐述了VQT算法分析的过程和结果,并通过观测土壤盐分验证了所获得的采样策略。然后评估了空间精度和采样效率。结果表明,VQT方案产生的土壤盐分的空间分布与总采样点产生的盐分的空间分布非常相似,而前者的采样量减少到后者的1/2。就相同的采样数而言,VQT方案的空间精度大大高于传统的网格方法,并且VQT方案需要更少的样本才能获得相同的精度水平。与网格方法相比,VQT以90%的精度将采样效率提高了17.3%。 VQT方法被证明是更有效,更经济的方法,因为它可以根据局部地区的变化状况进行密集或稀疏采样。 EM38和VQT方法的结合应用为节省采样成本,提高沿海盐碱地区采样效率,丰富土壤生态提供了有效的工具和理论依据。

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