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CONTROL OF TIME-VARYING LATERAL TAPE MOTION IN A LINEAR-TAPE-OPEN DRIVE VIA ADAPTIVE REGULATION

机译:通过自适应调节控制线性带开式驱动器中随时间变化的横向带运动

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This extended abstract summarizes a methodology along with the experimental results to adaptively reduce time-varying lateral tape motion (LTM) in a Linear Tape-Open (LTO) drive. For the adaptive regulation, the LTO actuator dynamics is modeled with a Linear Time Invariant (LTI) model and control of time-varying LTM disturbances is done via an adaptable linear feedback controller. Adaptive regulation is done via the direct estimation of a perturbation on the feedback controller. By simultaneously minimizing the variance of the Position Error Signal (PES) and the control output signal the direct estimation of the controller perturbation is formulated as a weighted estimation problem that is implemented recursively for real-time implementation. The experimental results show a significant reduction of the variance of the PES over different tape cartridges and a constant PES variance during a complete reel-in/out operation of the tape drive.
机译:该扩展摘要总结了一种方法和实验结果,以自适应地减少线性开带(LTO)驱动器中随时间变化的横向磁带运动(LTM)。对于自适应调节,使用线性时不变(LTI)模型对LTO执行器动力学进行建模,并通过自适应线性反馈控制器对时变LTM干扰进行控制。自适应调节是通过直接估计反馈控制器上的扰动来完成的。通过同时最小化位置误差信号(PES)和控制输出信号的方差,将控制器扰动的直接估计公式化为加权估计问题,该问题递归实现用于实时实现。实验结果表明,在不同的盒式磁带上,PES的变化明显减小,并且在磁带驱动器的完整卷入/输出操作期间,PES的变化恒定。

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