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A comparison of multirate robust track-following control synthesis techniques for dual-stage and multi-sensing servo systems in hard disk drives

机译:硬盘驱动器中双级和多传感伺服系统的多型鲁棒轨道跟踪控制合成技术的比较

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This paper presents the design and analysis of multirate robust track-following controllers for a dual-stage servo system with a MEMS microactuator (MA) and an instrumented suspension. Two major categories of controller design methodologies are considered. The first is based on sequential single-input single-output (SISO) design techniques, and includes the sensitivity decoupling (SD) method and the PQ method. High rate inner loop damping control is implemented followed by a low rate outer loop controller. The second category is based on multirate, multi-input multi-output (MIMO) design techniques, including mixed H/sub 2//H/sub /spl infin//, mixed H/sub 2///sub /spl mu// and robust H/sub 2/ synthesis. In this case, a set of controllers are designed all at once by explicitly considering plant uncertainty and hence robust stability. Comparisons are made between these design techniques in terms of nominal H/sub 2/ performance, robust stability, and robust performance. The advantages and disadvantages of each of these methods are discussed, as well as the guidelines for practical implementation.
机译:本文介绍了具有MEMS微致动器(MA)和仪表悬架的双级伺服系统的多级伺服系统的设计和分析。考虑了两种主要类别的控制器设计方法。第一种基于顺序单输入单输出(SISO)设计技术,包括灵敏度去耦(SD)方法和PQ方法。高速速率内环阻尼控制接着是低速率外环控制器。第二类是基于多速率,多输入多输出(MIMO)设计技术,包括混合H / sub 2 // h / selm / scm / scm / spr in //,混合h / sub 2 ///子/ spl mu / /和鲁棒H / sub 2 /合成。在这种情况下,通过明确考虑植物不确定性并因此通过稳定的稳定性地设计了一组控制器。在标称H / SUB 2 /性能,强大稳定性和稳健性性能方面,在这些设计技术之间进行比较。讨论了每种方法的优点和缺点,以及实际实施的指导。

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