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首页> 外文期刊>日本機械学会論文集. C編 >Using a Friction Observer to Compensate Friction Force at Head Actuator Bearings of Magnetic Disk Drives
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Using a Friction Observer to Compensate Friction Force at Head Actuator Bearings of Magnetic Disk Drives

机译:使用摩擦观察器补偿磁盘驱动器磁头执行器轴承上的摩擦力

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摘要

Under micro-displacement, pre-rolling friction at the head actuator bearings of magnetic disk drives has spring and damper characteristics. To compensate this friction, a force observer designed on the basis of a friction model of spring and damper characteristics has been developed. This observer enables precise estimation of the friction force at head actuator bearings and eliminates the influence of pre-rolling friction. Hence the dynamic property of the head actuator recovers its pure inertia property, which is represented by 1/s~2 in the frequency region below 100 Hz. To compensate the friction force and recover its pure inertia property is important to apply a feed--forward control because it is designed on the basis of the model of the head actuator. By simulation and experiment, it is confirmed that this control method enables the head actuator to recover the inertia property in the low-frequency region.
机译:在微位移下,磁盘驱动器的磁头致动器轴承上的预滚动摩擦具有弹簧和阻尼特性。为了补偿这种摩擦,已经开发了基于弹簧和阻尼器特性的摩擦模型设计的力观察器。该观察者能够精确估算头部执行器轴承处的摩擦力,并消除了预滚动摩擦的影响。因此,磁头致动器的动态特性恢复了其纯惯性特性,该特性在100 Hz以下的频率区域中以1 / s〜2表示。为了补偿摩擦力并恢复其纯惯性,应用前馈控制非常重要,因为前馈控制是基于磁头执行器的模型设计的。通过仿真和实验,证实了该控制方法使头部致动器能够恢复低频区域中的惯性特性。

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