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Improved track following in magnetic disk drives using a disturbance observer

机译:使用干扰观察器改善磁盘驱动器中的磁道跟踪

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摘要

Improving the position control of the disk drive read/write heads is an important step in increasing the storage capacity of a drive, especially in the presence of internal and external disturbances. To address this problem, the typical feedback loop of a disk drive servo system was augmented with a disturbance observer. The disturbance observer uses the position error signal and a nominal model of the plant to create an estimate of the disturbance. This estimate is then used to compensate for the disturbance effects. No additional sensors are required, which is particularly relevant in products such as disk drives where cost is a major concern. The effectiveness of the disturbance observer in rejecting shock and vibration disturbances is demonstrated in simulation and shake table experiments. The vibration experiments showed a decrease in the position error of 61%-96% at frequencies below 100 Hz. The maximum position error due to an experimental shock disturbance was decreased by 59%. The effects of noise in the position error signal are also discussed.
机译:改进磁盘驱动器读/写头的位置控制是增加驱动器存储容量的重要步骤,尤其是在存在内部和外部干扰的情况下。为了解决这个问题,磁盘驱动器伺服系统的典型反馈回路增加了干扰观测器。干扰观测器使用位置误差信号和设备的标称模型来创建干扰估计。该估计值然后用于补偿干扰影响。不需要额外的传感器,这在成本是主要考虑因素的产品(例如磁盘驱动器)中尤其重要。仿真和振动台实验证明了干扰观测器在抑制冲击和振动干扰方面的有效性。振动实验表明,在低于100 Hz的频率下,位置误差降低了61%-96%。由于实验性冲击干扰而导致的最大位置误差降低了59%。还讨论了噪声对位置误差信号的影响。

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