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Control Design of Hard Disk Drive Concentric Self-Servo Track Writing via $H_{2}$ and $H_{infty}$ Synthesis

机译:通过 $ H_ {2} $ $ H_ {infty} $ 综合

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摘要

This paper considers two novel controller synthesis methodologies using a feedforward control structure for performing concentric self-servo track writing in hard disk drives. In the first methodology, it is assumed that a conventional causal track-following controller has been designed and a non-causal feedforward controller, which utilizes the stored error signal from writing the previous track, is designed using standard $H_{infty}$ control synthesis techniques, in order to prevent the track errors from propagating and to achieve good disturbance attenuation. In the second methodology, both the track-following feedback controller and the feedforward controller are simultaneously designed via a mixed $H_{2}/H_{infty}$ control scheme, which involves the solution of a set of linear matrix inequalities and achieves good disturbance attenuation while preventing the propagation of track errors from the previous tracks. Simulation results confirm that the two proposed control synthesis methodologies prevent error propagation from the previously written tracks and significantly improve concentric self-servo track writing performance.
机译:本文考虑了使用前馈控制结构在硬盘驱动器中执行同心自伺服磁道写入的两种新颖的控制器综合方法。在第一种方法中,假定已设计了常规的因果跟踪控制器,并且使用标准 $ H_ {infty} $ 控制合成技术,以防止跟踪误差传播并实现良好的干扰衰减。在第二种方法中,跟踪跟踪反馈控制器和前馈控制器都是通过混合的 $ H_ {2} / H_ {infty} $ < / tex> 控制方案,该方案涉及一组线性矩阵不等式的解,并实现了良好的干扰衰减,同时防止了先前轨道的轨道误差传播。仿真结果证实了两种提出的控制综合方法可防止错误从先前写入的磁道传播,并显着提高了同心自伺服磁道的写入性能。

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