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自主水下航行器网络化控制系统事件触发鲁棒控制 被引量:3
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作者 王敏 《探测与控制学报》 CSCD 北大核心 2019年第1期119-124,共6页
随着自主水下航行器(AUV)功能的日益复杂,基于现场总线的(如CAN总线)的网络化控制系统(NCS)已经广泛应用于国内外的大中型AUV中。AUV系统中网络带宽等计算资源一般是有限的,需要在保证控制性能下进行合理分配。提出了一种考虑网络延迟的... 随着自主水下航行器(AUV)功能的日益复杂,基于现场总线的(如CAN总线)的网络化控制系统(NCS)已经广泛应用于国内外的大中型AUV中。AUV系统中网络带宽等计算资源一般是有限的,需要在保证控制性能下进行合理分配。提出了一种考虑网络延迟的AUV空间运动事件触发控制策略设计方法。首先,基于不确定离散切换模型对事件触发传输且具有时变传输延迟的AUV纵向、侧向运动系统进行建模;然后,基于线性矩阵不等式对事件触发机制、控制律进行联合设计;最后,通过仿真实验,评估控制策略性能。结果表明,与基于时间触发的控制策略相比,提出的方法能够使AUV控制系统在满足控制性能要求的同时减少带宽占用率。 展开更多
关键词 自主水下航行器 事件触发控制 不确定系统鲁棒控制 网络化控制系统
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Fuzzy robust sliding mode control of a class of uncertain systems 被引量:7
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作者 REN Li-tong 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2296-2304,共9页
Aiming at a class of systems under parameter perturbations and unknown external disturbances, a method of fuzzy robust sliding mode control was proposed. Firstly, an integral sliding mode surface containing state feed... Aiming at a class of systems under parameter perturbations and unknown external disturbances, a method of fuzzy robust sliding mode control was proposed. Firstly, an integral sliding mode surface containing state feedback item was designed based on robust H∞ control theory. The robust state feedback control was utilized to substitute for the equivalent control of the traditional sliding mode control. Thus the robustness of systems sliding mode motion was improved even the initial states were unknown. Furthermore, when the upper bound of disturbance was unknown, the switching control logic was difficult to design, and the drawbacks of chattering in sliding mode control should also be considered simultaneously. To solve the above-mentioned problems, the fuzzy nonlinear method was applied to approximate the switching control term. Based on the Lyapunov stability theory, the parameter adaptive law which could guarantee the system stability was devised. The proposed control strategy could reduce the system chattering effectively. And the control input would not switch sharply, which improved the practicality of the sliding mode controller. Finally, simulation was conducted on system with parameter perturbations and unknown external disturbances. The result shows that the proposed method could enhance the approaching motion performance effectively. The chattering phenomenon is weakened, and the system possesses stronger robustness against parameter perturbations and external disturbances. 展开更多
关键词 uncertain systems robust control fuzzy sliding mode control CHATTERING
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Robust adaptive control for a class of uncertain non-affine nonlinear systems using neural state feedback compensation 被引量:1
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作者 赵石铁 高宪文 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期636-643,共8页
A robust adaptive control is proposed for a class of uncertain nonlinear non-affine SISO systems. In order to approximate the unknown nonlinear function, an affine type neural network(ATNN) and neural state feedback c... A robust adaptive control is proposed for a class of uncertain nonlinear non-affine SISO systems. In order to approximate the unknown nonlinear function, an affine type neural network(ATNN) and neural state feedback compensation are used, and then to compensate the approximation error and external disturbance, a robust control term is employed. By Lyapunov stability analysis for the closed-loop system, it is proven that tracking errors asymptotically converge to zero. Moreover, an observer is designed to estimate the system states because all the states may not be available for measurements. Furthermore, the adaptation laws of neural networks and the robust controller are given based on the Lyapunov stability theory. Finally, two simulation examples are presented to demonstrate the effectiveness of the proposed control method. Finally, two simulation examples show that the proposed method exhibits strong robustness, fast response and small tracking error, even for the non-affine nonlinear system with external disturbance, which confirms the effectiveness of the proposed approach. 展开更多
关键词 adaptive control neural networks uncertain non-affine systems state feedback Lyapunov stability
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