Chemical sensing and pattern recognition

R. Muller
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Abstract

Most conventional chemosensors exhibit a rather limited selectivity. The use of a sensor array together with proper signal processing makes it possible to achieve a high, electronically controllable selectivity. Different approaches to this technique are described, together with experimental results. Also discussed is the impact of this pattern-recognition method on the development of sensor elements. It is predicted that the trend to build arrays will increase. Since in many cases the packaging, heating, etc. take more space and cost that the actual sensor element, an array must not necessarily be much more expensive and larger than a single element.<>
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化学传感和模式识别
大多数传统的化学传感器表现出相当有限的选择性。使用传感器阵列和适当的信号处理可以实现高的,电子可控的选择性。本文描述了实现该技术的不同方法,并给出了实验结果。并讨论了这种模式识别方法对传感器元件开发的影响。据预测,构建阵列的趋势将会增加。由于在许多情况下,封装、加热等比实际的传感器元件占用更多的空间和成本,因此阵列不一定比单个元件更昂贵或更大。
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