Stretchable and Conventional Input Constraints in VSC of the Third Order Systems

A. Nowacka, A. Bartoszewicz
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引用次数: 1

Abstract

In this paper a new sliding mode control algorithm for the third order uncertain, nonlinear and time-varying dynamic system subject to unknown disturbance and input constraint is proposed. The algorithm employs a time-varying switching plane. At the initial time the plane passes through the point determined by the system initial conditions in the error state space. Afterwards, the plane moves with a constant velocity to the origin of the space. In order to select the switching plane parameters, the integral of the time multiplied by the absolute error (ITAE) is minimized. Two types of the input signal constraints, i.e. a conventional constraint expressed by an inequality and an elastic constraint which allows the threshold value of the input signal to be slightly exceeded are considered. In both cases the switching plane is chosen in such a way that the reaching phase is eliminated, insensitivity of the system to the external disturbance and the model uncertainty is guaranteed from the very beginning of the proposed control action and fast, monotonic error convergence to zero is achieved
三阶系统VSC中的可伸缩和常规输入约束
针对具有未知干扰和输入约束的三阶不确定非线性时变动态系统,提出了一种新的滑模控制算法。该算法采用时变交换平面。在初始时刻,平面经过误差状态空间中由系统初始条件决定的点。然后,飞机以恒定的速度移动到空间的原点。为了选择开关平面参数,将时间乘以绝对误差(ITAE)的积分最小化。考虑了两种类型的输入信号约束,即由不等式表示的常规约束和允许略超过输入信号阈值的弹性约束。在这两种情况下,切换平面的选择都是这样的,即消除了到达相位,从所提出的控制动作的一开始就保证了系统对外部干扰的不敏感性和模型的不确定性,并实现了快速单调误差收敛到零
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