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Spatially-balanced complete block designs for field experiments

机译:空间平衡的完整模块设计,用于现场实验

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Spatial heterogeneity in fields may affect the outcome of experiments. The conventional randomized allocation of treatments to plots may cause bias and variable precision in the presence of trends (including periodicity) and spatial autocorrelation. Agricultural scientists appear to mostly use conventional experimental designs that are susceptible to adverse affects from field variability. The objectives of this research were to (i) quantify the use of different experimental designs in agronomic field experiments, and (ii) develop spatially-balanced designs that are insensitive to the effects of both trends and spatial autocorrelation. A review was performed of all research efforts reported in Volumes 93-95 of the Agronomy Journal and the frequency of various experimental designs was determined. It showed that the vast majority (96.7%) of agronomic field experiments are implemented through Randomized Complete Block (RCB) designs. The method of simulated annealing was used to develop Spatially-Balanced Complete Block (SBCB) designs based on two objective functions: promoting spatial balance among treatment contrasts, and disallowing treatments to occur in the same position in different blocks, when possible. SBCB designs were successfully developed for designs up to 15 treatments and 15 replications. Square SBCB designs were realized as Latin Squares, and perfect spatial balance was obtained when feasible. SBCB designs are simple to implement, are analyzed through conventional ANOVAs, and provide protection against the adverse effects of spatial heterogeneity, while randomized allocation of treatments still ensures against user bias..
机译:田间空间异质性可能会影响实验结果。在存在趋势(包括周期性)和空间自相关的情况下,对地块的常规随机分配处理可能会导致偏差和精度变化。农业科学家似乎大多使用传统的实验设计,这些设计容易受到田间变化的不利影响。这项研究的目的是(i)量化在农艺田间试验中不同实验设计的使用,以及(ii)开发对趋势和空间自相关都不敏感的空间平衡设计。对《农学杂志》第93-95卷中报道的所有研究工作进行了审查,并确定了各种实验设计的频率。结果表明,绝大多数农业实地试验(96.7%)是通过随机完全区组(RCB)设计实现的。基于两个目标函数,使用模拟退火方法来开发空间平衡完整块(SBCB)设计:促进处理对比之间的空间平衡,并在可能的情况下不允许在不同块中的相同位置进行处理。 SBCB设计已成功开发,可用于多达15种处理和15种重复的设计。广场SBCB设计被实现为拉丁广场,并在可行时获得了完美的空间平衡。 SBCB设计易于实现,可通过常规方差分析进行分析,并提供针对空间异质性的不利影响的保护,而治疗的随机分配仍可确保避免用户偏见。

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