Ardekani Mohammad Ali, Nafisi Vahid Reza, Farhani Foad
Department of Mechanical Engineering, Iranian Research Organization for Science and Technology, Tehran, Iran.
J Med Signals Sens. 2012 Oct;2(4):185-91.
Hot-wire spirometer is a kind of constant temperature anemometer (CTA). The working principle of CTA, used for the measurement of fluid velocity and flow turbulence, is based on convective heat transfer from a hot-wire sensor to a fluid being measured. The calibration curve of a CTA is nonlinear and cannot be easily extrapolated beyond its calibration range. Therefore, a method for extrapolation of CTA calibration curve will be of great practical application. In this paper, a novel approach based on the conventional neural network and self-organizing map (SOM) method has been proposed to extrapolate CTA calibration curve for measurement of velocity in the range 0.7-30 m/seconds. Results show that, using this approach for the extrapolation of the CTA calibration curve beyond its upper limit, the standard deviation is about -0.5%, which is acceptable in most cases. Moreover, this approach for the extrapolation of the CTA calibration curve below its lower limit produces standard deviation of about 4.5%, which is acceptable in spirometry applications. Finally, the standard deviation on the whole measurement range (0.7-30 m/s) is about 1.5%.
热线式肺活量计是一种恒温风速仪(CTA)。用于测量流体速度和流动湍流的CTA的工作原理基于从热线传感器到被测流体的对流热传递。CTA的校准曲线是非线性的,并且不易在其校准范围之外进行外推。因此,一种CTA校准曲线外推方法将具有很大的实际应用价值。本文提出了一种基于传统神经网络和自组织映射(SOM)方法的新方法,用于外推CTA校准曲线,以测量0.7至30米/秒范围内的速度。结果表明,使用这种方法将CTA校准曲线外推到其上限之外时,标准偏差约为-0.5%,在大多数情况下是可以接受的。此外,这种将CTA校准曲线外推到其下限以下的方法产生的标准偏差约为4.5%,在肺活量测定应用中是可以接受的。最后,整个测量范围(0.7至30米/秒)的标准偏差约为1.5%。