This paper continues the application of circuit theory to experimental design started by the first two authors. The theory gives a very special and detailed representation of the kernel of the design model matrix. This representation turns out to be an appropriate way to study the optimality criteria referred to as robustness: the sensitivity of the design to the removal of design points. Many examples are given, from classical combinatorial designs to two-level factorial design including interactions. The complexity of the circuit representations are useful because the large range of options they offer, but conversely require the use of dedicated software. Suggestions for speed improvement are made.
翻译:本文件继续将电路理论应用于前两位作者开始的实验性设计,该理论非常特别和详细地介绍了设计模型矩阵的内核。这一表述证明是研究称为稳健性的最佳性标准的恰当方式:设计敏感度至去除设计点。许多例子,从古典组合设计到包括互动在内的两级因素设计。电路表述的复杂性是有用的,因为它们提供了广泛的选择,但反过来需要使用专用软件。提出了加快速度的建议。