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DATA ANALYSIS FOR CHEMICAL SENSOR ARRAYS

机译:化学传感器阵列的数据分析

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摘要

Arrays were introduced in the mid-eighties as a method to counteract the cross-selectivity of gas sensors. Their use has since become a common practice in sensor applications. The great advantage of this technique is that once arrays are matched with proper multivariate data analysis, the use of non-selective sensors for practical applications becomes possible. Again in the eighties, Persaud and Dodds argued that such arrays has a very close connection with mammalian olfaction systems. This conjecture opened the way to the advent of electronic noses, a popular name for chemical sensor arrays used for qualitative analysis of complex samples. It is worth remarking that a gas sensor array is a mere mathematical construction where the sensor outputs are arranged as components of a vector. Arrays can also be utilized to investigate the properties of chemical sensors, or even better, the peculiar behaviour of a sensor as a component of an array. In this chapter, the more common sensor array methodologies are critically reviewed, including the most general steps of a multivariate data analysis. The application of such methods to the study of sensor properties is also illustrated through a practical example.
机译:八十年代中期引入了阵列,以抵消气体传感器的交叉选择性。从那时起,它们的使用已成为传感器应用中的常见惯例。该技术的巨大优势在于,一旦将阵列与适当的多元数据分析进行匹配,就可以在实际应用中使用非选择性传感器。同样在八十年代,Persaud和Dodds认为这种阵列与哺乳动物的嗅觉系统有非常紧密的联系。这种推测为电子鼻的出现开辟了道路,电子鼻是用于复杂样品定性分析的化学传感器阵列的流行名称。值得一提的是,气体传感器阵列仅仅是一种数学构造,其中传感器输出被布置为矢量的组成部分。阵列也可用于研究化学传感器的特性,甚至更好地研究作为阵列组件的传感器的特殊行为。在本章中,将对更常见的传感器阵列方法进行严格审查,包括多元数据分析的最一般步骤。通过一个实际的例子说明了这种方法在传感器性能研究中的应用。

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