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Automated Multiple Robust Track-Following Control System Design in Hard Disk Drives

机译:硬盘驱动器中的自动多重鲁棒跟踪控制系统设计

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摘要

This brief proposes a new design procedure for track-following control systems in hard disk drives. The procedure is automated, in the sense that, for given experimental frequency response data of the suspension arm dynamics and a model structure, it automatically derives a transfer function set with uncorrelated parametric uncertainties. Subsequently, for the transfer function set, a given controller structure, and closed-loop performance specifications in the frequency domain, it automatically designs a partition of the uncertainties and corresponding multiple robust controllers. For the transfer function set derivation, nonlinear principal component analysis is utilized to determine correlations among coefficient parameter variations. For multiple robust controller design, a nonsmooth optimization approach is taken to deal with complex multiobjective control problems, as well as to reduce the computational cost, which is often an issue in multiple robust controller design. Simulations and experiments on actual hard disk drives demonstrate the usefulness and efficiency of the proposed procedure.
机译:本简介为硬盘驱动器中的跟踪控制系统提出了一种新的设计过程。就给定的悬架动力学特性和模型结构的实验频率响应数据而言,该过程是自动化的,它会自动得出具有不相关参数不确定性的传递函数集。随后,对于传递函数集,给定的控制器结构和频域中的闭环性能规格,它会自动设计不确定性的分区以及相应的多个鲁棒控制器。对于传递函数集推导,非线性主成分分析用于确定系数参数变化之间的相关性。对于多鲁棒控制器设计,采用非平滑优化方法来处理复杂的多目标控制问题,并降低计算成本,这在多鲁棒控制器设计中通常是一个问题。在实际硬盘驱动器上的仿真和实验证明了所提出程序的有用性和效率。

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