具有迟滞执行器非线性和故障的非线性系统自适应模糊预设性能控制

Adaptive Fuzzy Prescribed Performance Control of Nonlinear Systems With Hysteretic Actuator Nonlinearity and Faults

IEEE Transactions on Systems, Man, and Cybernetics: Systems · 2017
被引 107
ABS 3

中文导读

针对同时存在执行器迟滞和未知故障的不确定非线性系统,提出一种自适应预设性能控制方法,通过指令滤波反步法保证跟踪误差的瞬态和稳态性能,仿真验证了有效性。

Abstract

An adaptive prescribed performance control method is presented through the use of command filter theory for a class of uncertain systems with actuator hysteretic nonlinearity and unknown failures. The maximum overshoot and convergence rate of the tracking error can be guaranteed by the prescribed performance theory, especially when the unknown actuator failures and backlash nonlinearity occur at the same time. In addition, command filters are introduced to the backstepping design to address a modification that obviates the requirement to compute virtual control derivatives, meanwhile the errors caused by dynamic surface control technique can be compensated. From the Lyapunov stability analysis, it turns out that the proposed control method can guarantee all the signals of the resulting closed-loop system are bounded and better tracking performance can be obtained by adjusting design parameters of prescribed performance in the presence of unknown actuator hysteresis and failures. The simulation results indicate the effectiveness of the proposed method.

控制理论非线性系统自适应控制模糊逻辑执行器故障