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首页> 外文期刊>IEEE / ASME Transactions on Mechatronics >Learning of Hybrid Fuzzy Controller for the Optical Data Storage Device
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Learning of Hybrid Fuzzy Controller for the Optical Data Storage Device

机译:光学数据存储设备的混合模糊控制器的学习

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摘要

A hybrid track-seeking fuzzy controller for an optical disk drive (ODD) is proposed in this paper. The proposed hybrid fuzzy controller (HFC) smoothes the voltage applied to the sled motor and improves the track-seeking efficiency. The HFC consists of two subsystems including an intelligent time switch and a driving force controller. Both subsystems are designed based on fuzzy logic inferences. The main functions of the proposed HFC are to drive the optical head unit (OHU) to the target track neighborhood as fast as possible and smoothly park the OHU in the least time in the target track neighborhood. An automatic learning approach based on genetic algorithms (GAs) is proposed for learning the fuzzy rules for both the intelligent time switch and driving force controller. Modulated orthogonal membership functions are utilized in both fuzzy controllers to improve the GA learning efficiency. The number of parameters needed to parameterize the fuzzy rule base is greatly reduced with the modulated orthogonal membership functions. Compared to the conventional track-seeking controller currently utilized in most ODDs that employ a speed profile as the reference signal for the track-seeking feedback control system, the proposed HFC outperforms the conventional track-seeking control schemes. Experiments are performed to justify the performance comparison.
机译:本文提出了一种用于光盘驱动器(ODD)的混合寻迹模糊控制器。提出的混合模糊控制器(HFC)可以平滑施加到滑车电机的电压并提高寻轨效率。 HFC由两个子系统组成,包括智能时间开关和驱动力控制器。这两个子系统都是基于模糊逻辑推理设计的。所提出的HFC的主要功能是将光头单元(OHU)尽可能快地驱动到目标轨道附近,并在最少的时间内将OHU平稳地停放在目标轨道附近。提出了一种基于遗传算法的自动学习方法,用于学习智能时间切换和驱动力控制器的模糊规则。在两个模糊控制器中都使用了调制的正交隶属度函数,以提高GA学习效率。使用调制的正交隶属度函数可以大大减少参数化模糊规则库所需的参数数量。与目前大多数采用速度曲线作为寻轨反馈控制系统的参考信号的ODD中使用的常规寻轨控制器相比,所提出的HFC优于常规寻轨控制方案。进行实验以证明性能比较的合理性。

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