Position error predictions of a hard disk drive undergoing a large seeking motion with shock excitations

Tsung-Liang Wu, I. Shen
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引用次数: 1

Abstract

In this digest, we present a numerical simulation to predict position errors of a hard disk drive undergoing a long seeking-and-settling process while experiencing a shock excitation. The seeking-and-settling process consists of four segments: acceleration, coasting, deceleration, and settling. A 2-ms shock excitation is applied to each segment of the seeking-and-settling process respectively to evaluate the severity of the shock excitations to position errors. Simulation results lead to two significant conclusions. First, shock excitations occurring near the end of the seeking-and-settling process are more detrimental causing larger position errors. Second, the ability to rapidly reduce the position errors relies on performance and properties of fluid-dynamic spindle motors.
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在激波激励下进行大寻道运动的硬盘驱动器位置误差预测
在这个摘要中,我们提出了一个数值模拟来预测一个硬盘驱动器在经历一个长时间的寻找和稳定过程时,在经历一个冲击激励的位置误差。寻找和沉降过程包括四个阶段:加速、滑行、减速和沉降。在定位和定位过程的每个环节分别施加2ms的激波激励,以评估激波激励对定位误差的影响程度。仿真结果得出了两个重要结论。首先,在寻找和定位过程结束时发生的激波激励更有害,导致更大的位置误差。其次,快速减小位置误差的能力依赖于流体动力主轴电机的性能和特性。
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