期刊论文详细信息
Sensors
An Electronic Measurement Instrumentation of the Impedance of a Loaded Fuel Cell or Battery
El-Hassane Aglzim1  Amar Rouane1 
[1] Laboratoire d'Instrumentation Electronique de Nancy (L.I.E.N.), Nancy Université, Boulevard des Aiguillettes, BP239 - 54506 Vandoeuvre les Nancy, France E-mail:
关键词: fuel cell on load;    impedance measurements;    electrochemical impedance spectroscopy;   
DOI  :  10.3390/s7102363
来源: mdpi
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【 摘 要 】

In this paper we present an inexpensive electronic measurement instrumentation developed in our laboratory, to measure and plot the impedance of a loaded fuel cell or battery. Impedance measurements were taken by using the load modulation method. This instrumentation has been developed around a VXI system stand which controls electronic cards. Software under Hpvee® was developed for automatic measurements and the layout of the impedance of the fuel cell on load. The measurement environment, like the ambient temperature, the fuel cell temperature, the level of the hydrogen, etc…, were taken with several sensors that enable us to control the measurement. To filter the noise and the influence of the 50Hz, we have implemented a synchronous detection which filters in a very narrow way around the useful signal. The theoretical result obtained by a simulation under Pspice® of the method used consolidates the choice of this method and the possibility of obtaining correct and exploitable results. The experimental results are preliminary results on a 12V vehicle battery, having an inrush current of 330A and a capacity of 40Ah (impedance measurements on a fuel cell are in progress, and will be the subject of a forthcoming paper). The results were plotted at various nominal voltages of the battery (12.7V, 10V, 8V and 5V) and with two imposed currents (0.6A and 4A). The Nyquist diagram resulting from the experimental data enable us to show an influence of the load of the battery on its internal impedance. The similitude in the graph form and in order of magnitude of the values obtained (both theoretical and practical) enables us to validate our electronic measurement instrumentation. One of the future uses for this instrumentation is to integrate it with several control sensors, on a vehicle as an embedded system to monitor the degradation of fuel cell membranes.

【 授权许可】

Unknown   
© 2007 by MDPI (http://www.mdpi.org).

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