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A novel method to estimate the chemical rank of three-way data for second-order calibration

机译:一种估算三路数据化学等级以进行二阶校准的新方法

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摘要

A novel method, self-weighted alternating trilinear decomposition with Monte Carlo simulation (SWATLD-MCS), is developed to determine the chemical rank of three-way data for second-order calibration. The proposed method estimates the chemical rank by comparing the values of sorted mean relative-concentration (SMRC), which are obtained from SWATLD by decomposing one pseudo three-way data array created by Monte Carlo simulation. The results for two simulated and two real three-way data sets are presented, in comparison with other two factor-determining methods, i.e., ADD-ONE-UP and the core consistency diagnostic (CORCONDIA). These results demonstrate that this new method can accurately estimate chemical ranks of complex systems even when heavy collinearity and high-intensity noise are present. Also the method has a lower computational burden than competitive methods, which saves overall analysis time. In addition, this new methodology can be extended to: i) other second-order calibration algorithms, being insensitive to excessive factors, can be used with this method; ii) the chemical rank of higher-order data can be determined by this method, using higher-order calibration algorithms.
机译:开发了一种新的方法,即采用蒙特卡洛模拟(SWATLD-MCS)的自加权交替三线性分解法,以确定用于二级校准的三向数据的化学等级。所提出的方法通过比较排序平均相对浓度(SMRC)的值来估算化学等级,该平均相对相对浓度(SMRC)是通过分解通过蒙特卡洛模拟创建的一个伪三效数据数组从SWATLD获得的。与其他两种因素确定方法(即ADD-ONE-UP和核心一致性诊断(CORCONDIA))相比较,给出了两个模拟和两个实际三向数据集的结果。这些结果表明,即使存在严重的共线性和高强度噪声,该新方法也可以准确估计复杂系统的化学等级。同样,该方法比竞争方法具有更低的计算负担,从而节省了总体分析时间。此外,这种新方法可以扩展为:i)其他对多余因素不敏感的二阶校准算法可以与该方法一起使用; ii)可以使用高阶校准算法通过此方法确定高阶数据的化学等级。

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