代表文章 [1] Zhenlong Wu, Donghai Li, Yanhong Liu*, et al. Performance analysis of improved ADRCs for a class of high-order processes with verification on main steam pressure control. IEEE Transactions on Industrial Electronics, 2023, 70(6): 6180-6190. [2] Zhenlong Wu, Yanhong Liu*, Donghai Li, et al. Multivariable active disturbance rejection control for compression liquid chiller system. Energy, 2023, 262: 125344. [3] Zhenlong Wu*, Jie Yuan, Yanhong Liu, et al. An active disturbance rejection control design with actuator rate limit compensation for the ALSTOM gasifier benchmark problem. Energy. 2021, 227: 120447. [4] Zhenlong Wu, Donghai Li*, Yali Xue, et al. Gain scheduling design based on active disturbance rejection control for thermal power plant under full operating conditions. Energy, 2019, 185:744-762. [5] Zhenlong Wu*, Gengjin Shi, Donghai Li, et al. Active disturbance rejection control design for high-order integral systems. ISA Transactions, 2022, 125: 560-570. [6] Zhenlong Wu, Jie Yuan, Donghai Li, et al. The influence of rate limit on proportional-integral controller for first-order plus time-delay systems. ISA Transactions, 2020, 105:157-173. [7] ZhenLong Wu, Donghai Li*, Yali Xue, et al. Modified active disturbance rejection control for fluidized bed combustor. ISA Transactions, 2020, 102:135-153. [8] Zhenlong Wu, Makeximu, Jie Yuan, et al. A synthesis method for first-order active disturbance rejection controllers: procedures and field tests. Control Engineering Practice, 2022, 127: 105286. [9] Zhenlong Wu, Ting He*, Yanhong Liu, et al. Physics-informed energy-balanced modeling and active disturbance rejection control for circulating fluidized bed units. Control Engineering Practice, 2021, 116: 104934. [10] Zhenlong Wu, Ting He, Donghai Li*, et al. Superheated steam temperature control based on modified active disturbance rejection control. Control Engineering Practice, 2019, 83: 83-97. [11] Zhenlong Wu, Jairo Viola, Ying Luo, et al. Robust fractional-order [proportional integral derivative] controller design with specification constraints: more flat phase idea. International Journal of Control, 2021, Early Access. https://doi.org/10.1080/00207179.2021.1992498 [12] Zhenlong Wu*, Donghai Li*, YangQuan Chen. Active disturbance rejection control design based on probabilistic robustness for uncertain systems. Industrial & Engineering Chemistry Research. 2020, 59(40): 18070-18087. [13] Zhenlong Wu, Jie Yuan, Donghai Li, et al. The PI controller design based on a Smith-like predictor for a class of high order systems. Transactions of the Institute of Measurement and Control. 2020, 43(4): 875-890. [14] Zhenlong Wu, Yanhong Liu*, YangQuan Chen, et al. Load frequency regulation for multi-area power systems with renewable sources via active disturbance rejection control. Energy Reports, 2022, 8(5): 401-409. [15] Zhenlong Wu, PengZhen Li, Yanhong Liu*, et al. Optimized cascaded PI controller for the load frequency regulation of multi-area power systems with communication delays. Energy Reports, 2022, 8(13): 469-477. [16] Zhenlong Wu, Donghai Li*, Yali Xue. A new PID controller design with constraints on relative delay margin for first-order plus dead-time systems. Processes, 2019, 7: 713. [17] Zhenlong Wu, Ting He, Li Sun, et al. The facilitation of a sustainable power system: a practice from data-driven enhanced boiler control. Sustainability, 2018, 10(4): 1112. [18] Zhenlong Wu, Zhiqiang Gao, Donghai Li*, et al. On transitioning from PID to ADRC in thermal power plants. Control Theory and Technology, 2021, 19: 3-18. [19] 吴振龙, 刘艳红*, 薛亚丽, 等. 基于预期动态方程的含高比例可再生能源孤岛运行微电网负荷频率控制, 上海交通大学学报, 2023, 网络首发. [20] 吴振龙, 霍本岩, 刘艳红*, 等. 基于功能性电刺激的上肢康复系统条件反馈控制, 控制理论与应用, 2022, 39(06): 1079-1087. [21] 吴振龙, 何婷, 李东海*, 等. 自抗扰控制器稳定域与鲁棒稳定域计算及工程应用. 控制理论与应用, 2018, 35(11): 1635-1647. [22] 李炳楠, 朱峰, 梁正玉, 吴振龙*. 基于改进自抗扰控制和数据驱动的脱硝系统设计及应用, 控制理论与应用, 2022, 接收. |
专利 [1] 吴振龙, 刘艳红, 霍本岩, 等. 一种基于自抗扰控制和类史密斯预估的控制系统控制方法, CN112180737B, 2022. [2] 吴振龙, 刘艳红, 孙立明, 等. 一种过程控制系统的控制方法, CN112180801B, 2021. [3] 吴振龙, 刘艳红, 陈鹏冲, 等. 一种基于增益调度的改进自抗扰控制实现方法及控制系统, 受理, 2022. [4] 吴振龙, 蒋依辰, 刘艳红, 等. 一种基于预期动态的自抗扰控制实现方法及控制系统, CN114609916A, 2022. [5] 吴振龙, 刘艳红, 李朋真, 等. 一种抗饱和自抗扰控制及定量化参数整定方法、系统, CN114690641A, 2022, [6] 吴振龙, 刘艳红, 张宽, 等. 一种双积分球杆对象的在线辨识方法, 202210382143.8, 2022. [7] 吴振龙, 刘艳红. 一种基于斜坡响应的一类不稳定对象的闭环辨识方法, CN113985730A, 2021. [8] 吴振龙, 刘艳红, 杨磊, 等. 考虑前馈的基于设定值有效激励的闭环系统辨识方法, CN113885326A, 2021. [9] 吴振龙, 刘艳红, 霍本岩, 等. 基于阶跃响应的一阶惯性加纯延迟环节闭环辨识方法, CN113885325A, 2021. [10] 吴振龙, 刘艳红, 李方圆, 等. 基于阶跃响应并考虑前馈的串联控制闭环系统辨识方法, CN113867148A, 2021. [11] 吴振龙, 刘艳红. 基于阶跃响应并考虑前馈的不稳定对象的闭环辨识方法, CN113885323A, 2021. [12] 刘艳红, 吴振龙, 张赞, 等. 一种基于斜坡响应的双控制器闭环系统辨识方法, CN113885322A, 2021. [13] 刘艳红, 吴振龙, 霍本岩, 等. 一种功能性电刺激的上肢康复系统的条件反馈控制方法, CN112546440A, 2020. [14] 孙立明, 吴振龙. 一种闭环系统中的对象辨识方法、电子设备和计算机可读存储介质, CN112198789A, 2020. [15] 杨云凯, 吴振龙, 常健, 等. 一种基于大数据的电厂优化前馈控制方法, CN112200447A, 2020. [16] 成振, 吴振龙, 杨德荣, 等. 一种新型循环流化床锅炉掺烧泥状可燃物工艺及系统, CN111795398A, 2020. [17] 史耕金, 吴振龙, 李东海, 等. 一种扰动补偿的单回路过热汽温自抗扰控制方法, CN111413865B, 2020. [18] 孙立明, 吴振龙, 李东海, 等. 一种针对一类高阶系统的改进自抗扰控制方法, CN108287466B, 2018. |