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Robust Control Synthesis Techniques for Multirate and Multisensing Track-Following Servo Systems in Hard Disk Drives

机译:硬盘驱动器中多速率和多传感跟踪伺服系统的鲁棒控制综合技术

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摘要

This paper proposes controller design methods, specially for track-following control of the magnetic read/write head in a hard disk drive (HDD). The servo system to be considered is a general dual-stage multisensing system, which encompasses most of the track-following configurations encountered in the HDD industry, including the traditional single-stage system. For the general system, a robust track-following problem is formulated as a time-varying version of the robust H_2 synthesis problem. Both dynamic and real parametric uncertainties, which are typical model uncertainties in track-following control, are taken into account in the formulation. Three optimal robust controller design techniques with different robustness guarantees are applied to solve the synthesis problem. These are mixed H_2/H_∞, mixed H_2/μ, and robust H_2 syntheses. Advantages and disadvantages of each method are presented. Multirate control, which is inherent to control problems in HDDs, is obtained by reducing multirate problems into linear time-invariant ones, for which there are many useful theories and algorithms available. Most of the techniques proposed in this paper heavily rely on efficient numerical tools for solving linear matrix inequalities.
机译:本文提出了一种控制器设计方法,专门用于硬盘驱动器(HDD)中磁头读写头的跟踪控制。要考虑的伺服系统是通用的双级多传感系统,它涵盖了HDD行业中遇到的大多数跟踪跟踪配置,包括传统的单级系统。对于一般系统,将鲁棒跟踪问题公式化为鲁棒H_2合成问题的时变版本。公式中考虑了动态和实际参数不确定性,这是跟踪控制中典型的模型不确定性。应用三种具有不同鲁棒性保证的最优鲁棒控制器设计技术来解决综合问题。它们是混合的H_2 /H_∞,混合的H_2 /μ和健壮的H_2合成。介绍了每种方法的优缺点。通过将多速率问题简化为线性时不变问题,可以实现HDD中控制问题固有的多速率控制,为此有许多有用的理论和算法可供使用。本文提出的大多数技术在很大程度上依赖于有效的数值工具来求解线性矩阵不等式。

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