Segura Francisca, Bartolucci Veronica, Andújar José Manuel
Department of Electronic, Computer Science and Automatic Engineering, University of Huelva, Engineering High School, Crta. Huelva- Palos de la Fra, 21919 Palos de la Fra, Huelva, Spain.
Dipartimento di Ingegneria dell'Informazione, Universita' Politecnica delle Marche, Via Brecce Bianche, 60131 Ancona, Italy.
Sensors (Basel). 2017 Jul 9;17(7):1600. doi: 10.3390/s17071600.
This work presents a hardware/software data acquisition system developed for monitoring the temperature in real time of the cells in Air-Cooled Polymer Electrolyte Fuel Cells (AC-PEFC). These fuel cells are of great interest because they can carry out, in a single operation, the processes of oxidation and refrigeration. This allows reduction of weight, volume, cost and complexity of the control system in the AC-PEFC. In this type of PEFC (and in general in any PEFC), the reliable monitoring of temperature along the entire surface of the stack is fundamental, since a suitable temperature and a regular distribution thereof, are key for a better performance of the stack and a longer lifetime under the best operating conditions. The developed data acquisition (DAQ) system can perform non-intrusive temperature measurements of each individual cell of an AC-PEFC stack of any power (from watts to kilowatts). The stack power is related to the temperature gradient; i.e., a higher power corresponds to a higher stack surface, and consequently higher temperature difference between the coldest and the hottest point. The developed DAQ system has been implemented with the low-cost open-source platform Arduino, and it is completed with a modular virtual instrument that has been developed using NI LabVIEW. Temperature vs time evolution of all the cells of an AC-PEFC both together and individually can be registered and supervised. The paper explains comprehensively the developed DAQ system together with experimental results that demonstrate the suitability of the system.
本文介绍了一种为实时监测风冷式聚合物电解质燃料电池(AC - PEFC)中电池温度而开发的硬件/软件数据采集系统。这些燃料电池备受关注,因为它们能够在单次运行中完成氧化和制冷过程。这使得AC - PEFC的控制系统重量、体积、成本和复杂性得以降低。在这种类型的PEFC(一般而言在任何PEFC中),对电池堆整个表面温度进行可靠监测至关重要,因为合适的温度及其均匀分布是电池堆在最佳运行条件下实现更好性能和更长使用寿命的关键。所开发的数据采集(DAQ)系统能够对任何功率(从瓦到千瓦)的AC - PEFC电池堆中的每个单电池进行非侵入式温度测量。电池堆功率与温度梯度相关;即,功率越高,电池堆表面越高,因此最冷点和最热点之间的温差也越大。所开发的DAQ系统已基于低成本开源平台Arduino实现,并配备了使用NI LabVIEW开发的模块化虚拟仪器。AC - PEFC所有电池的温度随时间的变化情况,既能整体记录和监测,也能对单个电池进行记录和监测。本文全面解释了所开发的DAQ系统以及证明该系统适用性的实验结果。