首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Event-triggered optimal reset control of hard disk drive head-positioning servo systems
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Event-triggered optimal reset control of hard disk drive head-positioning servo systems

机译:事件触发的硬盘驱动器磁头定位伺服系统的最佳复位控制

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摘要

This article proposes a state-feedback-based optimal law with reset control for two typical kinds of head-positioning systems with nonlinearities of hard disk drives which combine the improved event-triggering reset condition and an optimal reset law design problem. First, a reset control law is proposed to reset the state of the system at the instants or some reset surfaces which have been proved can overcome the linear limitations. The reset surface is considered as a function of event or it can be defined as an event-triggered system, in which some states of the controller are subjected to impulsive actions. Second, a model predictive optimal law is proposed to the design of the after-reset value which was finally calculated through series linear matrix inequalities. Finally, in comparison with recent linear or nonlinear control methods applied to hard disk drives, our proposed approach shows the simplicity in design process and the robustness to nonlinear uncertainties in plant.
机译:本文针对具有硬盘驱动器非线性的两种典型磁头定位系统,提出了一种基于状态反馈的带有复位控制的最优定律,该定律结合了改进的事件触发复位条件和最优复位定律设计问题。首先,提出了一种复位控制律,以在瞬间或某些已证明可以克服线性限制的复位表面上复位系统状态。复位表面被认为是事件的函数,或者可以定义为事件触发的系统,在该系统中,控制器的某些状态会受到脉冲作用。其次,针对后复位值的设计提出了模型预测最优定律,其最终通过串联线性矩阵不等式计算得出。最后,与最近应用于硬盘驱动器的线性或非线性控制方法相比,我们提出的方法显示了设计过程的简单性以及对工厂非线性不确定性的鲁棒性。

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