Abstract In many applications, sensors (e.g., temperature, humidity and chemical composition) are used downstream of passive interactive devices to determine their transient response. In this arrangement, the sensors alter the apparent response of the device. As a practical example, the transient characteristics of a humidity sensor are investigated during a step change in humidity with no change in temperature. This response of the humidity sensor is measured for a step change in the humidity and the data are correlated with exponential functions with two time constants of about 3 and 100–300 s. When the same humidity sensor is used downstream of an interactive passive moisture transfer device (e.g., a regenerative wheel for transferring water vapour), the measured humidity is found to correlate with exponential functions with longer time constants than the sensor itself. In this case, the measured response of the sensor includes the combined effects of the device and sensor. An analysis is presented to determine only the transient moisture transfer characteristics of the unknown device using the measured responses of the sensor alone and the response of sensor with the device upstream. The time constants of the interactive device may have errors as large as 20% when the transient response of the humidity sensor is neglected for the application studied in this paper.
[1]
R. Wooldridge,et al.
Advanced Engineering Mathematics
,
1967,
The Mathematical Gazette.
[2]
Robert W. Besant,et al.
Determining the performance of energy wheels: Part 1 -- Experimental and numerical methods
,
1999
.
[3]
Julian W. Gardner,et al.
Effect of micro-electrode geometry on response of thin-film poly(pyrrole) and poly(aniline) chemoresistive sensors
,
1999
.
[4]
Noel Y. A. Shammas,et al.
A simple method for evaluating the transient thermal response of semiconductor devices
,
2002,
Microelectron. Reliab..
[5]
Mark D. Semon,et al.
POSTUSE REVIEW: An Introduction to Error Analysis: The Study of Uncertainties in Physical Measurements
,
1982
.
[6]
Claude Delpha,et al.
Discrimination of a refrigerant gas in a humidity controlled atmosphere by using modelling parameters
,
2000
.
[7]
Michael B. Pate,et al.
An Experimental Evaluation of Duct-Mounted Relative Humidity Sensors: Part 1 – Test and Evaluation Procedures
,
2005
.