利用先进的盲源分离算法改进半导体化学传感器阵列

G. Bedoya, C. Jutten, S. Bermejo, J. Cabestany
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引用次数: 22

摘要

提出并讨论了一种设计低成本/高性能在线生理数据和水监测系统的新方法。该方法基于一组固态化学传感器(即isfet / chemfet)和一个后处理阶段,该阶段执行对溶液中离子活度的估计。这种估计是通过非线性盲分离算法执行的,该算法使用了一些关于传感器如何同时响应几个离子活性的先验知识。此外,该方法还解决了这些传感器的一些重要问题,如温度效应、交叉灵敏度和漂移;它还考虑了一些硬件实现约束。实验结果证实了该结构的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving semiconductor-based chemical sensor arrays using advanced algorithms for blind source separation
A novel approach to design low cost/high performance on-line physiological data and water monitoring systems is presented and discussed. The approach is based on a set of solid state chemical sensors (i.e. ISFETs/CHEMFETs), and a post-processing stage which performs the estimation of the ionic activities presented in the solution. This estimation is performed by a non-linear blind separation algorithm that uses some prior knowledge about how sensors simultaneously respond to several ionic activities. Additionally, the presented approach addresses some important problems of these sensors like temperature effects, cross sensitivity and drift; it also takes into account some hardware implementation constraints. Experimental results confirm the effectiveness of the proposed architecture.
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