共查询到17条相似文献,搜索用时 68 毫秒
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针对离散时间系统的变结构控制问题,对常规离散变结构抖动产生原因的分析,结合全程滑态变结构算法,给出了改进的离散趋近律。仿真结构表明,该方法是可行的,减小了系统的抖动,并从一开始就保证了系统的稳定性。 相似文献
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针对周期参考信号下的不确定离散时间系统,提出一种离散重复控制方法,利用死区函数设计新型的吸引律,将干扰补偿、抑制措施“嵌入”吸引律,构造理想误差动态,并基于此导出重复控制器。为了进行具体的控制器参数整定和表征闭环系统的误差动态行为,推导出了稳态误差带、单调减区域和绝对吸引层边界的表达式。所设计的离散重复控制器能够完全抑制周期对称干扰信号,控制器设计方法也适用于常值调节问题的定位控制。数值仿真及在电机伺服系统上的实验结果验证了所提出控制方法的有效性。 相似文献
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针对周期参考信号下的离散时间系统, 引入吸引律构造理想误差动态特性, 并基于理想误差动态设计重复控制器. 重复控制能够实现周期性扰动的完全抑制, 从而提高控制能.为了消除颤振现象, 以饱和函数替换重复控制器中的符号函数. 分别推导了理想误差动态方程的单调减区域、吸引层和稳态误差带的边界, 用于刻画误差动态行为, 并给出了数值仿真结果. 在逆变器装置上完成的实验进一步表明了所提出的重复控制方法的有效性.
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This paper presents a novel design method for discrete-time repetitive control systems (RCS) based on two-dimensional (2D) discrete-time model. Firstly, the 2D model of an RCS is established by considering both the control action and the learning action in RCS. Then, through constructing a 2D state feedback controller, the design problem of the RCS is converted to the design problem of a 2D system. Then, using 2D system theory and linear matrix inequality (LMI) method, stability criterion is derived for the system without and with uncertainties, respectively. Parameters of the system can be determined by solving the LMI of the stability criterion. Finally, numerical simulations validate the effectiveness of the proposed method. 相似文献
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An adaptive reaching law of chattering-free discrete-time sliding mode control is proposed for the systems with external disturbance. An adaptive function is proposed in the reaching law which can increase reaching speed as sliding variable is far away from zero and avoid undesired chattering when sliding variable is close to origin. Moreover, a third-order backward difference of disturbance is added to obtain a narrower quasi-sliding mode band (QSMB). Both the closed-loop system performance and finite reaching steps to achieve the desired QSMB are theoretically analyzed. The simulation results verify the effectiveness of the proposed control strategy. 相似文献
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针对离散时间线性系统的周期跟踪问题, 提出一种能够约束控制输入变化速度的变速吸引律, 结合干扰抑制措施构造了理想误差动态, 并由此导出离散重复控制器. 分析表明, 该变速吸引律能使跟踪误差在有限时间内单调收敛至零, 且误差收敛速度可控. 为刻画误差动态行为, 推导了有界扰动下的误差单调收敛域、绝对值收敛域和稳态误差带, 并给出了收敛步数. 针对伺服电机系统的仿真与实验结果验证了所提出控制方案的有效性.
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Ramon Costa-Castelló 《Automatica》2006,42(9):1605-1610
This work proposes and studies a new repetitive controller for discrete-time systems which are required to track or to attenuate periodic signals. The main characteristic of the proposed controller is its passivity. This fact implies closed-loop stable behavior when it is used with discrete-time passive plants. The work also discusses the energetic structure, the frequency response and the time response of the proposed controller structure. A numerical example is included to illustrate its practical use. 相似文献