基于命令滤波自适应反步的VCM驱动指向镜伺服控制

Ziyin Chen, Zhe Lin, Chunyu Yue, Fei Yu, Heming Jia
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引用次数: 3

摘要

针对具有参数不确定性的音圈电机驱动的指向镜,提出了一种自适应伺服控制器。基于VCM的数学模型,将设计过程分为位置环、角速度环和电流环三部分,针对参数的不确定性,采用自适应反步法进行控制器设计。设计过程利用滤波器生成命令控制变量及其导数,避免了每次迭代都需要计算虚拟控制变量导数所带来的复杂性,特别是当系统阶数较高时,计算量会急剧增加。为了减小滤波误差,基于跟踪误差动态构造了补偿回路。通过李雅普诺夫稳定性分析,设计了参数自适应律和鲁棒项,保证了闭环的渐近稳定。最后给出了仿真结果,验证了所提控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Servo control of VCM driven pointing mirror based on command filtered adaptive backstepping
In this paper, we present an adaptive servo controller for the voice coil motor (VCM) driven pointing mirror with parameters uncertainties. Based on the mathematical model of the VCM, the design procedure is divided into three parts, namely the position loop, angular velocity loop and the current loop, an adaptive backstepping method is applied for the controller design against the parameter uncertainties, the design procedure utilizes the filters to generate the command control variables and their derivatives which can avoid the complexity caused by the needs for computing the derivatives of virtual control variables at each iterative step, especially when the order of the system goes high, the computing burden will increase explosively. So as to reduce the filtered error, a compensation loop is constructed based on the tracking error dynamic. The parameter adaption laws and robust terms are designed through Lyapunov stability analysis to guarantee asymptotic stability for the close-loop. Finally, the simulation results are presented to illustrate the effectiveness of the proposed control scheme.
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