基于仪器的直接甲醇燃料电池测试平台及燃料控制算法验证

Sheng-Hua Chen, Ya-Chien Chung, Tzyy-Yih Yang, Yu-Jen Chiu, Jin-Yih Lin, C. Chi
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摘要

系统集成对燃料电池至关重要。除了考虑相对控制规则和反应物的处理外,电厂平衡(BOP)的设计和控制对燃料电池系统的自我可持续和优化至关重要。在本研究中,利用基于仪器的系统集成平台和无传感器的燃料浓度估计与验证,开发了一种燃料电池控制系统。根据燃料的消耗量和浓度变化确定控制措施。实验结果验证了该方法的可行性。本研究开发了一个用于直接液体燃料电池系统的软硬件集成测试平台。它是开发相关控制算法、评价电池效率或设计燃料电池防喷器的一种有益而灵活的工具。
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An instrument-based testing platform and fuel control algorithm verification for direct methanol fuel cell
System integration is crucial to fuel cells. In addition to considering relative control rules and treatment of the reactants, the design and control of the balance of plant (BOP) are vitally important for a self-sustainable and optimized fuel cell system. In this study, a fuel cell control system is developed by utilizing an instrument-based system integration platform and sensor-less fuel concentration estimation and verification. A control measure is determined by both consumption and concentration change of the fuel. The feasibility of the sensor-less fuel concentration estimation is verified by experimental results. A testing platform, integrating software and hardware, which is used for the direct liquid fuel cell system, has developed in this study. It is an beneficial and flexible tool for developing relative controlling algorithms, evaluating efficiency of cells, or designing BOP of fuel cells.
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