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Thermoelectric cooperation control method for SOFC system based on fractional order sliding mode variable structure

机译:基于分数阶滑模变结构的SOFC系统热电协同控制方法

摘要

The present invention provides a thermoelectric cooperative control method for the SOFC system based on fractional order sliding mode variable structure, comprising the following steps: S1, collecting parameters of system states and output under combinations of different input parameters of the SOFC system, acquiring an influence function of steady-state power, temperature, efficiency response characteristics and bypass valve opening BP within a full load interval on efficiency optimization, as well as an efficiency optimization function within a specified load switching interval and under a time-delay condition; S2, acquiring a local optimal steady-state operation function, a global optimal function under the steady state developed and formed, and a power tracking function with different switching intervals and different time-delay conditions; S3, calculating a sliding mode interval; S4, calculating a series reaching law function according to optimization functions; S5, eliminating chattering of the series reaching law function through a fractional order optimization method, and solving the reaching law by calculation. The present method can provide precise, flexible and stable control, greatly speed up the switch process, overcome time-delay feature of the great inertia of the SOFC system, and realize fast load switching.
机译:本发明提供了一种基于分数阶滑模变结构的SOFC系统的热电协同控制方法,包括以下步骤:S1,收集系统状态的参数,并根据SOFC系统的不同输入参数的组合进行输出,得到影响。效率优化时在满负载间隔内的稳态功率,温度,效率响应特性和旁通阀开度BP的功能,以及在指定的负载切换间隔内和时延条件下的效率优化功能; S2,获取局部最优稳态操作函数,形成并形成稳态下的全局最优函数,以及具有不同切换间隔和不同时延条件的功率跟踪函数; S3,计算滑模间隔; S4,根据优化函数计算级数到达律函数; S5,通过分数阶优化方法消除级数到达律函数的颤动,并通过计算求解级数律。本发明方法可以提供精确,灵活,稳定的控制,大大加快了切换过程,克服了SOFC系统惯性大的延时特性,实现了快速的负载切换。

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