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A Compensation Controller Based on a Nonlinear Wavelet Neural Network for Continuous Material Processing Operations 被引量:1
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作者 Chen Shen Youping Chen +1 位作者 Bing Chen Jingming Xie 《Computers, Materials & Continua》 SCIE EI 2019年第7期379-397,共19页
Continuous material processing operations like printing and textiles manufacturing are conducted under highly variable conditions due to changes in the environment and/or in the materials being processed.As such,the p... Continuous material processing operations like printing and textiles manufacturing are conducted under highly variable conditions due to changes in the environment and/or in the materials being processed.As such,the processing parameters require robust real-time adjustment appropriate to the conditions of a nonlinear system.This paper addresses this issue by presenting a hybrid feedforward-feedback nonlinear model predictive controller for continuous material processing operations.The adaptive feedback control strategy of the controller augments the standard feedforward control to ensure improved robustness and compensation for environmental disturbances and/or parameter uncertainties.Thus,the controller can reduce the need for manual adjustments.The controller applies nonlinear generalized predictive control to generate an adaptive control signal for attaining robust performance.A wavelet-based neural network model is adopted as the prediction model with high prediction precision and time-frequency localization characteristics.Online training is utilized to predict uncertain system dynamics by tuning the wavelet neural network parameters and the controller parameters adaptively.The performance of the controller algorithm is verified by both simulation,and in a real-time practical application involving a single-input single-output double-zone sliver drafting system used in textiles manufacturing.Both the simulation and practical results demonstrate an excellent control performance in terms of the mean thickness and coefficient of variation of output slivers,which verifies the effectiveness of this approach in improving the long-term uniformity of slivers. 展开更多
关键词 Continuous material processing wavelet neural network(WNN) nonlinear generalized predictive control(ngpc) auto-leveling system
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基于ISMDO的高超声速再入机动预测控制
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作者 孟亦真 都延丽 孙冬阳 《飞行力学》 CSCD 北大核心 2015年第2期134-139,共6页
首先,针对高超声速飞行器(Hypersonic Vehicle,HSV)再入过程中的横侧向机动控制问题,参考BTT控制方式,通过对航迹和姿态角回路的控制,实现了HSV的无侧滑横向机动转弯;其次,针对机动飞行中的不确定控制问题,提出了改进滑模干扰观测器(Imp... 首先,针对高超声速飞行器(Hypersonic Vehicle,HSV)再入过程中的横侧向机动控制问题,参考BTT控制方式,通过对航迹和姿态角回路的控制,实现了HSV的无侧滑横向机动转弯;其次,针对机动飞行中的不确定控制问题,提出了改进滑模干扰观测器(Improved Sliding Mode Disturbance Observer,ISMDO)来对参数不确定及外界干扰进行估计。在此基础上,提出了基于ISMDO的非线性广义预测控制方法作为HSV的机动飞行控制算法。仿真结果表明,该控制策略对再入横向机动具有良好的控制和干扰抑制能力。 展开更多
关键词 高超声速飞行器 再入机动 非线性广义预测控制 改进滑模干扰观测器
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