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利用有益非线性因素的主动式悬架系统饱和PD-SMC跟踪方法
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作者 张梦华 刘强 +2 位作者 陈纪旸 鹿全礼 张建成 《广东工业大学学报》 CAS 2022年第5期29-37,共9页
针对具有输入饱和的主动式悬架系统,通过利用所构建的仿生参考模型的非线性刚度和阻尼,设计了一种新颖的饱和PD-滑模控制方法(饱和PD-SMC方法)。所设计的控制方法具有以下几个优点:具有PD控制方法的简单结构;具有SMC方法针对模型不确定... 针对具有输入饱和的主动式悬架系统,通过利用所构建的仿生参考模型的非线性刚度和阻尼,设计了一种新颖的饱和PD-滑模控制方法(饱和PD-SMC方法)。所设计的控制方法具有以下几个优点:具有PD控制方法的简单结构;具有SMC方法针对模型不确定性和外部干扰的强鲁棒性;不需要传统SMC方法所要求的精确系统参数;同时充分考虑输入饱和的影响。在所设计的控制方法中,PD部分用于保证主动式悬架系统的稳定,SMC部分用于提供强鲁棒性,并引入饱和函数防止控制输入超过约束范围。利用李雅普诺夫方法保证了相应的稳定性分析。从多个实验结果可以看出,与现有的控制方法相比,所设计的控制方法显著提高了暂态性能,并节省了30.65%的控制能量。 展开更多
关键词 主动式悬架 pd-smc 饱和 仿生参考模型
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适用于仿生眼的与模型无关的滑模阻抗控制 被引量:1
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作者 刘斌 张梦华 李贻斌 《控制理论与应用》 EI CAS CSCD 北大核心 2018年第12期1820-1825,共6页
本文针对仿生眼系统,提出一种PD型的滑模控制方法(proportion differential control with sliding mode cont-rol, PD–SMC).该方法与模型无关,并将传统阻抗控制(PD控制)与滑模控制(sliding mode control, SMC)结合在一起,具有类似PD控... 本文针对仿生眼系统,提出一种PD型的滑模控制方法(proportion differential control with sliding mode cont-rol, PD–SMC).该方法与模型无关,并将传统阻抗控制(PD控制)与滑模控制(sliding mode control, SMC)结合在一起,具有类似PD控制方法结构简单、易于实现的优点,并且针对系统参数的不确定性以及当系统存在外部扰动时,具有滑模控制方法(SMC)本身固有的强鲁棒性.文中设计的PD–SMC控制器中, PD控制环节使仿生眼系统实现稳定的运动控制, SMC控制环节用于补偿不确定的系统参数以及系统受到的外部扰动.利用Lyapunov方法以及拉塞尔不变性原理证明了闭环系统的稳定性与收敛性.仿真结果表明所提控制方法具有很好的跟踪控制性能. 展开更多
关键词 仿生眼系统 轨迹跟踪 李雅普诺夫函数 拉萨尔不变原理 滑模阻抗控制
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A Robust Fuzzy Tracking Control Scheme for Robotic Manipulators with Experimental Verification 被引量:1
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作者 Abdel Badie Sharkawy Mahmoud M. Othman Abouel Makarem A. Khalil 《Intelligent Control and Automation》 2011年第2期100-111,共12页
The performance of any fuzzy logic controller (FLC) is greatly dependent on its inference rules. In most cases, the closed-loop control performance and stability are enhanced if more rules are added to the rule base o... The performance of any fuzzy logic controller (FLC) is greatly dependent on its inference rules. In most cases, the closed-loop control performance and stability are enhanced if more rules are added to the rule base of the FLC. However, a large set of rules requires more on-line computational time and more parameters need to be adjusted. In this paper, a robust PD-type FLC is driven for a class of MIMO second order nonlin- ear systems with application to robotic manipulators. The rule base consists of only four rules per each de- gree of freedom (DOF). The approach implements fuzzy partition to the state variables based on Lyapunov synthesis. The resulting control law is stable and able to exploit the dynamic variables of the system in a lin- guistic manner. The presented methodology enables the designer to systematically derive the rule base of the control. Furthermore, the controller is decoupled and the procedure is simplified leading to a computationally efficient FLC. The methodology is model free approach and does not require any information about the sys- tem nonlinearities, uncertainties, time varying parameters, etc. Here, we present experimental results for the following controllers: the conventional PD controller, computed torque controller (CTC), sliding mode con- troller (SMC) and the proposed FLC. The four controllers are tested and compared with respect to ease of design, implementation, and performance of the closed-loop system. Results show that the proposed FLC has outperformed the other controllers. 展开更多
关键词 Fuzzy Logic CONTROL (FLC) PD CONTROL COMPUTED-TORQUE CONTROL (CTC) SLIDING Mode CONTROL (SMC) LYAPUNOV Synthesis Test Rig
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