Department of Information Management, Transworld University, 1221 Zhennan Rd., Yunlin 64063, Taiwan.
Sensors (Basel). 2013 Dec 13;13(12):17281-91. doi: 10.3390/s131217281.
Fault diagnosis (FD) and data fusion (DF) technologies implemented in the LabVIEW program were used for a ruthenium dioxide pH sensor array. The purpose of the fault diagnosis and data fusion technologies is to increase the reliability of measured data. Data fusion is a very useful statistical method used for sensor arrays in many fields. Fault diagnosis is used to avoid sensor faults and to measure errors in the electrochemical measurement system, therefore, in this study, we use fault diagnosis to remove any faulty sensors in advance, and then proceed with data fusion in the sensor array. The average, self-adaptive and coefficient of variance data fusion methods are used in this study. The pH electrode is fabricated with ruthenium dioxide (RuO2) sensing membrane using a sputtering system to deposit it onto a silicon substrate, and eight RuO2 pH electrodes are fabricated to form a sensor array for this study.
在 LabVIEW 程序中实现的故障诊断 (FD) 和数据融合 (DF) 技术被用于二氧化钌 pH 传感器阵列。故障诊断和数据融合技术的目的是提高测量数据的可靠性。数据融合是一种非常有用的统计方法,用于许多领域的传感器阵列。故障诊断用于避免传感器故障和电化学测量系统中的测量误差,因此,在本研究中,我们使用故障诊断来预先去除任何有故障的传感器,然后在传感器阵列中进行数据融合。在本研究中使用了平均值、自适应和方差系数数据融合方法。使用溅射系统将二氧化钌 (RuO2) 感测膜沉积在硅衬底上,制成 pH 电极,并制造了八个 RuO2 pH 电极以形成用于本研究的传感器阵列。