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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Fractional-Order Proportional Derivative Controller Synthesis and Implementation for Hard-Disk-Drive Servo System
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Fractional-Order Proportional Derivative Controller Synthesis and Implementation for Hard-Disk-Drive Servo System

机译:硬盘伺服系统的分数阶比例微分控制器综合与实现

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摘要

In this brief, a fractional-order (FO) proportional derivative (PD) controller is designed in a systematic way based on the frequency responses data model for the hard-disk-drive (HDD) servo system. The open-loop system using the designed FO controller is with a flat-phase feature around the gain crossover frequency, which obtains the robustness to loop-gain variations. Thus, the control performance can be made uniform with more consistency than the optimized traditional integer-order controller when the loop gain changes. The theoretical foundation of the FO controller design is presented first. Thereafter, the implementation details of the designed controller in the real-time HDD servo system are introduced, which are important for the real applications of the FO controllers in practice. From the experimental validation, the presented FO-PD controller and the design synthesis are found to be efficient in improving the track-following control performance for the HDD servo system.
机译:在本文中,基于硬盘驱动器(HDD)伺服系统的频率响应数据模型,系统地设计了分数阶(FO)比例微分(PD)控制器。使用设计的FO控制器的开环系统具有围绕增益交叉频率的平坦相位特性,从而获得了环路增益变化的鲁棒性。因此,当环路增益改变时,与优化的传统整数阶控制器相比,可以使控制性能更均匀,更一致。首先介绍了FO控制器设计的理论基础。此后,介绍了实时HDD伺服系统中设计的控制器的实现细节,这对于FO控制器的实际应用非常重要。通过实验验证,发现所提出的FO-PD控制器和设计综合可以有效地改善HDD伺服系统的跟踪控制性能。

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