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作 者:张安安[1] 刘川 黄璜 杨威 张曦 ZHANG Anan;LIU Chuan;HUANG Huang;YANG Wei;ZHANG Xi(School of Electrical Engineering and Information,Southwest Petroleum University,Chengdu 610500,Sichuan Province,China)
机构地区:[1]西南石油大学电气信息学院,四川省成都市610500
出 处:《中国电机工程学报》2024年第S01期191-201,共11页PROCEEDINGS OF THE CHINESE SOCIETY FOR ELECTRICAL ENGINEERING
基 金:西南石油大学自然科学“揭榜挂帅”项目(2021JBGS06);四川省科技计划项目(2023YFQ0073,2024NSFSC0862)。
摘 要:固体氧化物燃料电池(solid oxide fuel cell,SOFC)作为一种新型发电装置,因高效无污染、全金属固态结构、燃料来源广等优点,在未来各个领域具有广阔应用前景。电堆内部的温度分布对其安全稳定运行至关重要,针对其内部温度难以获取的问题,该文设计一种龙伯格-滑模观测器估计电堆内部温度分布。首先,观测器的输入考虑系统可观性和工程应用,并结合能观矩阵条件数筛选出最优组合;然后,基于龙伯格和滑模观测器理论构造观测器具体结构;其次,为提升观测器性能,将电堆误差系统进行解耦,通过极点配置重新构造反馈增益;最后,通过平滑非线性不连续项,抑制观测器抖振现象。结果表明,所设计观测器相较于龙伯格和滑模观测器在收敛速度和误差波动方面具有明显优越性。As a new type of power generation device,solid oxide fuel cell(SOFC)has a broad application prospect in various fields in the future due to its advantages of high efficiency,no pollution,all-metal solid structure and wide fuel source.The temperature distribution inside a reactor is very important for its safe and stable operation.It is difficult to obtain the internal temperature,and with the aim of solving this problem,a Luenberger-sliding mode observer is designed to estimate the internal temperature distribution.First,the observability of the system and engineering application are considered for the input of the observer,and the optimal combination is selected by combining the observable matrix condition number.Then,the observer structure is constructed based on Luenberger and sliding mode observer theory.Secondly,in order to improve the performance of the observer,the stack error system is decoupled and the feedback gain is reconstructed by pole assignment.Finally,the observer buffeting phenomenon is suppressed by smoothing the nonlinear discontinuities.The simulation results show that the designed observer has obvious advantages in convergence rate and error fluctuation compared with Luenberger and sliding mode observers.
关 键 词:固体氧化物燃料电池电堆 龙伯格-滑模观测器 温度分布 系统解耦 抖振抑制
分 类 号:TP13[自动化与计算机技术—控制理论与控制工程]
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