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Comparative Analysis among Single-Stage, Dual-Stage, and Triple-Stage Actuator Systems Applied to a Hard Disk Drive Servo System

机译:应用于硬盘驱动器伺服系统的单级,双级和三级执行器系统之间的比较分析

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In modern times, the design and optimization of different actuator systems for controlling a high-precision position control system represent a popular interdisciplinary research area. Initially, only single-stage actuator systems were used to control most of the motion control applications. Currently, dual-stage actuation systems are widely applied to high-precision position control systems such as hard disk drive (HDD) servo systems. In the dual-stage system, a voice coil motor (VCM) actuator is used as the primary stage and a piezoelectric micro-actuator is applied as the secondary stage. However, a dual-stage control architecture does not show significant performance improvements to achieve the next-generation high-capacity HDD servo system. Research continues on how to fabricate a tertiary actuator for a triple-stage HDD servo system. A thermal positioning controller (TPC) actuator is considered promising as the tertiary stage. The triple-stage system aims to achieve greater bandwidth, track density, and disk speed, with minimum sensitivity and greater error minimization. In this work, these three actuation systems with different combinations of proportional plus integral (PI), proportional plus derivative (PD), and proportional plus integral plus derivative (PID) controller, lag-lead controller, lag filter, and inverse lead plus a PI controller were designed and analyzed through simulation to achieve high-precision positioning. The comparative analyses were done on the MATLAB/Simulink simulation platform.
机译:在现代时代,用于控制高精度位置控制系统的不同致动器系统的设计和优化代表了流行的跨学科研究区。最初,只使用单级执行器系统来控制大多数运动控制应用。目前,双级致动系统广泛应用于高精度位置控制系统,例如硬盘驱动器(HDD)伺服系统。在双级系统中,语音线圈电机(VCM)致动器用作初级级,并且压电微致动器被施加为次级级。但是,双级控制架构没有显着的性能改进,以实现下一代高容量HDD伺服系统。研究继续如何为三级HDD伺服系统制造第三级执行器。热定位控制器(TPC)致动器被认为是主要的第三级。三级系统旨在实现更大的带宽,轨道密度和磁盘速度,具有最小灵敏度和更大的误差最小化。在这项工作中,这三种致动系统采用不同组合的比例加积分(PI),比例加衍生物(PD),以及比例加积分加上衍生物(PID)控制器,滞后控制器,滞后滤波器和逆铅加a通过模拟设计和分析PI控制器,以实现高精度定位。对比分析是在Matlab / Simulink仿真平台上进行的。

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