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Discrete Robust Anti-Windup to Improve a Novel Dual-Stage Large-Span Track-Seek/Following Method

机译:离散鲁棒抗缠绕改进一种新型的双阶段大跨径寻道/跟踪方法

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An application of an advanced anti-windup compensation scheme to a recently developed large-span track-seeking and track-following method for dual-stage actuator systems in hard disk drives (HDDs) is presented. In the original dual-stage servo control approach, micro-actuator saturation was addressed using the Circle Criterion to guide the controller design. However, such an approach does not allow the fine-tuning of seeking and settling speeds and also limits the class of linear controllers for the secondary loop due to the Circle Criterion. Anti-windup compensation removes many of these limitations and improves settling duration, disturbance rejection, recovery from saturation in the secondary actuator loop, and design flexibility. A general anti-windup (AW) compensator is presented in discrete time bringing together a number of AW concepts and results previously given in continuous time. Robustness is taken into account and performance requirements are expressed via frequency weights. The robust performance design is based on an l 2-optimization approach using linear matrix inequalities (LMIs).
机译:提出了先进的抗饱和补偿方案在硬盘驱动器(HDD)中双级执行器系统的最新开发的大跨度寻迹和跟踪方法中的应用。在最初的双级伺服控制方法中,使用“圆准则”来解决微执行器饱和问题,以指导控制器设计。但是,这种方法不允许对寻道和建立速度进行微调,并且由于“圆准则”而限制了用于次级回路的线性控制器的类别。抗饱和补偿消除了许多这些限制,并改善了稳定时间,抗干扰能力,从次级执行器回路的饱和状态恢复的能力以及设计的灵活性。通用抗饱和(AW)补偿器以离散时间显示,汇集了许多AW概念和先前在连续时间内给出的结果。考虑了稳健性,并通过频率权重表示了性能要求。稳健的性能设计基于使用线性矩阵不等式(LMI)的1-2优化方法。

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