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General balance, large data sets and extensions to unbalanced treatment structures

机译:总体平衡,大数据集和不平衡治疗结构的扩展

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General balance defines an important class of designs covering virtually all the traditional experimental designs and, in particular, those with several error terms, In these designs the block terms are mutually orthogonal, the treatment terms are also mutually orthogonal, and the contrasts of each treatment term have equal efficiency factors in each of the strata where they are estimated. Generally balanced designs can efficiently be analysed by an algorithm which involves a series of sweep operations for each stratum. Each sweep estimates the effects of a treatment term (by its means divided by the efficiency factor), and subtracts them from the current working vector which then becomes the working vector for the next sweep. Workspace requirements are considerably less than those of multiple-regression style algorithms, so the algorithm has great advantages particularly with large treatment models. With large data sets, however, it may be more difficult to fulfill and the conditions of general balance. One possibility is to retain orthogonal block structure, but allow unbalanced treatment structures. It is shown that the algorithm can successfully be adapted to this situation, but it now requires an iterative sequence of sweeps to fit the treatment model in each stratum.
机译:总体平衡定义了一类重要的设计,几乎涵盖了所有传统的实验设计,尤其是那些带有多个误差项的设计。在这些设计中,块项相互正交,处理项也相互正交,以及每种处理的对比术语在估计它们的每个层次中具有相等的效率因子。通常平衡的设计可以通过一种算法来有效地分析,该算法涉及到每个层的一系列扫描操作。每次扫描估计一个处理项的效果(通过其平均值除以效率因子),然后从当前工作向量中减去它们,然后该工作向量成为下一次扫描的工作向量。工作空间要求比多重回归样式算法要少得多,因此该算法具有很大的优势,特别是对于大型处理模型。但是,对于大型数据集,可能难以实现,而且总体平衡的条件也更难实现。一种可能性是保留正交块结构,但允许不平衡的处理结构。结果表明,该算法可以成功地适应这种情况,但现在需要迭代的扫描序列以适合每个层中的治疗模型。

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