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Partial order methodology: a valuable tool in chemometrics

机译:偏序方法:化学计量学中的宝贵工具

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Often from multi-indicator system (MIS), a composite indicator is derived by applying weighted sums of the single indicators. The eventual ranking being based on composite indicator yields a total (linear) ranking. In contrast, partial order ranking constitutes an alternative approach where assumptions about linearity or distribution of the indicators are not needed and indicators are in general used without quantification of mutual preferences. The present paper describes analyses of MIS based on a series of partial order techniques as offered by the PyHasse software. The paper describes how important information on an MIS can be obtained without lengthy and often controversial and possible subjective discussions about indicator weights and thus avoiding both covering up valuable information contained in the single indicators as well as unwanted compensation effects. The application of partial order for obtaining chemometric information is illustrated by a study of 12 chloro-organic pesticides. All calculation has been carried out applying the experimental software PyHasse.
机译:通常从多指标系统(MIS)中,通过应用单个指标的加权总和得出复合指标。基于综合指标的最终排名产生了总体(线性)排名。相反,部分顺序排序构成了一种替代方法,其中不需要关于指标的线性或分布的假设,并且通常在不量化相互偏好的情况下使用指标。本文介绍了基于PyHasse软件提供的一系列偏序技术的MIS分析。本文描述了如何在无需冗长且经常引起争议的主观讨论的指标权重的情况下获得有关MIS的重要信息,从而避免同时掩盖单个指标中包含的宝贵信息以及不必要的补偿效应。通过对12种含氯有机农药的研究,说明了用于获得化学计量信息的部分顺序的应用。所有计算均使用实验软件PyHasse进行。

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