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Developing a space-filling mixture experiment design when the components are subject to linear and nonlinear constraints

机译:当组件受到线性和非线性约束时,开发一种充满空间的混合物实验设计

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This article presents a case study of developing a space-filling design (SFD) for a constrained mixture experiment when the experimental region is specified by single-component constraints (SCCs), linear multiple-component constraints (LMCCs), and nonlinear multiple-component constraints (NMCCs). Traditional methods and software for designing constrained mixture experiments with SCCs and LMCCs (using either optimal design or SFD approaches) are not directly applicable because of the NMCCs. A SFD algorithm in the JMP (R) software was modified to accommodate the NMCCs; the modification is described in this article. The case study involves high-level waste (HLW) glass that is subject to the formation of nepheline crystals as the glass cools. This can significantly reduce the durability of HLW glass (which is undesirable). The goal of the study was to develop a SFD for the HLW glass compositional region where nepheline may form, and generate data for modeling nepheline formation as a function of HLW glass composition. The HLW glass composition region was specified in terms of eight components with SCCs, two LMCCs, and two NMCCs. The NMCCs were based on a nonlinear logistic regression model for a binary nepheline response that was developed from previous data. This article discusses the HLW glass example, the constraints specifying the experimental composition region, and how an existing algorithm for generating SFDs was modified to accommodate the NMCCs. The methodology discussed in this article can be applied to any example in which the experimental region is specified by one or more nonlinear constraints in addition to linear constraints on mixture components and/or non-mixture variables.
机译:本文提供了一个案例研究,该案例是当单组分约束(SCC),线性多组分约束(LMCC)和非线性多组分指定实验区域时,为受限混合实验开发空间填充设计(SFD)约束(NMCC)。由于NMCC,用于设计SCC和LMCC的受限混合物实验的传统方法和软件(使用最佳设计或SFD方法)不能直接应用。修改了JMP(R)软件中的SFD算法以适应NMCC;本文中介绍了该修改。案例研究涉及高放废液(HLW)玻璃,当玻璃冷却时,该玻璃容易形成霞石晶体。这会大大降低HLW玻璃的耐久性(这是不希望的)。该研究的目的是为可能形成霞石的HLW玻璃成分区域开发SFD,并生成用于建模作为HLW玻璃成分的函数的霞石形成数据。根据具有SCC,两个LMCC和两个NMCC的八个组件来指定HLW玻璃成分区域。 NMCC基于从先前数据发展而来的二元霞石响应的非线性逻辑回归模型。本文讨论了HLW玻璃示例,指定实验组成区域的约束条件以及如何修改用于生成SFD的现有算法以适应NMCC。本文讨论的方法可以应用于任何示例,其中除了混合成分和/或非混合变量的线性约束外,还通过一个或多个非线性约束来指定实验区域。

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