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Discrete Reduced-order Active Disturbance Rejection Control for Marine engines using Variable Sampling Rate Control Scheme under Limited Bandwidth

机译:利用有限带宽下的可变采样率控制方案的船用发动机的离散阶阶主动干扰抑制控制

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In this paper, the reduced-order active disturbance rejection control (RADRC) is studied for marine engine speed control. The benefits of using RADRC are demonstrated by bode diagram method with the transfer function between input disturbance and system output. Discrete RADRC and active disturbance rejection control (ADRC) are designed for marine engine speed control by adopting variable sampling rate control method. The proposed method is assessed by experiment on a hard-in-loop (HIL) engine test platform. Except the step-response indexes, ADRC and RADRC are compared in more indexes. The results demonstrate that RADRC has superiority during the sudden load varying process. For steady-state, a single smaller observer bandwidth in RADRC can make a good compromise for a wide range engine speed. It also has been found that the index of total variation (TV) in control input for RADRC is inferior to the ADRC. Overall, RADRC is a promising method for marine engine speed control.
机译:在本文中,研究了船用发动机速度控制的减小阶主动干扰抑制控制(Radrc)。使用RADRC的益处通过Bode图方法证明了输入干扰与系统输出之间的传递函数。通过采用可变采样率控制方法设计离散的RADRC和主动干扰抑制控制(ADRC)为船用发动机速度控制设计。通过在循环硬链(HIL)发动机测试平台上的实验评估该方法。除了阶跃响应索引之外,ADRC和RADRC以更多的索引比较。结果表明,Radrc在突然的负载变化过程中具有优越性。对于稳态,Radrc中的单个较小的观察者带宽可以为广泛的引擎速度提供良好的折衷。还发现,Radrc控制输入中的总变化(TV)的索引差不等于ADRC。总的来说,Radrc是船用发动机速度控制的有希望的方法。

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