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Reset Control for Midfrequency Narrowband Disturbance Rejection With an Application in Hard Disk Drives

机译:中频窄带干扰抑制的复位控制及其在硬盘驱动器中的应用

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A reset disturbance compensation scheme is developed to reject midfrequency narrowband disturbances, with an application to the hard disk drives (HDDs). Generally, disturbance at the midfrequency band is not effective to reject through the feedback control based on the internal-model principle or high gain control due to phase stability. This paper investigates a reset control scheme and its favorable approximate frequency response using the describing function. The reset control makes its gain-phase frequency response break through the fundamental Bode's constraint of linear time-invariant system and provides a maximal phase lead at desired frequencies without affecting gain's characteristic. With additional phase lead, the issue of phase stability can be solved. A reset midfrequency narrowband compensator is designed by incorporating the reset controller and a narrowband filter. The implementation on a real HDD servo system shows the removal of midfrequency disturbance due to disk vibration is improved by 50% compared with the linear control scheme, resulting in a track misregistration (TMR) reduction of 32%.
机译:开发了一种复位干扰补偿方案,以拒绝中频窄带干扰,并将其应用于硬盘驱动器(HDD)。通常,由于基于相位稳定性,基于内部模型原理的反馈控制或高增益控制无法有效地抑制中频带的干扰。本文利用描述函数研究了一种复位控制方案及其有利的近似频率响应。复位控制使其增益相位频率响应突破线性时不变系统的基本波德约束,并在不影响增益特性的情况下在所需频率下提供最​​大相位超前。通过增加相线,可以解决相稳定性问题。通过结合复位控制器和窄带滤波器来设计复位中频窄带补偿器。在真正的HDD伺服系统上的实现显示,与线性控制方案相比,磁盘振动所引起的中频干扰的消除提高了50%,磁道对准误差(TMR)降低了32%。

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