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Control-oriented dynamic fuzzy model and predictive control for proton exchange membrane fuel cell stack

机译:面向控制的质子交换膜燃料电池堆动态模糊模型与预测控制

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Proton exchange membrane fuel cell (PEMFC) stack temperature and cathode stoichiometric oxygen are very important control parameters. The performance and lifespan of PEMFC stack are greatly dependent on the parameters. So, in order to improve the performance index, tight control of two parameters within a given range and reducing their fluctuation are indispensable.However, control-oriented models and control strategies are very weak junctures in the PEMFC development. A predictive control algorithm was presented based on their model established by input-output data and operating experiences. It adjusts the operating temperature to 80 ℃. At the same time, the optimized region of stoichiometric oxygen is kept between 1.8-2.2. Furthermore, the control algorithm adjusts the variants quickly to the destination value and makes the fluctuation of the variants the least. According to the test results, compared with traditional fuzzy and PID controllers, the designed controller shows much better performance.
机译:质子交换膜燃料电池(PEMFC)堆温度和阴极化学计量氧是非常重要的控制参数。 PEMFC堆栈的性能和寿命在很大程度上取决于参数。因此,为了提高性能指标,在给定范围内严格控制两个参数并减小其波动是必不可少的。然而,面向控制的模型和控制策略在PEMFC开发中是非常薄弱的​​环节。基于输入输出数据和操作经验建立的模型,提出了一种预测控制算法。它将工作温度调节到80℃。同时,化学计量氧的最佳区域保持在1.8-2.2之间。此外,控制算法将变量快速调整到目标值,并使变量的波动最小。根据测试结果,与传统的模糊和PID控制器相比,设计的控制器具有更好的性能。

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