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Active-passive hybrid piezoelectric actuators for high precision hard disk drive servo systems

机译:用于高精度硬盘驱动器伺服系统的主动无源混合压电致动器

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Positioning precision is crucial to today's increasingly high-speed, high-capacity, high data density, and miniaturized hard disk drives (HDDs). The demand for higher bandwidth servo systems that can quickly and precisely position the read/write head on a high track density becomes more pressing. Recently, the idea of applying dual-stage actuators to track servo systems has been studied. The push-pull piezoelectric actuated devices have been developed as micro actuators for fine and fast positioning, while the voice coil motor functions as a large but coarse seeking. However, the current dual-stage actuator design uses piezoelectric patches only without passive damping. In this paper, we propose a dual-stage servo system using enhanced active-passive hybrid piezoelectric actuators. The proposed actuators will improve the existing dual-stage actuators for higher precision and shock resistance, due to the incorporation of passive damping in the design. We aim to develop this hybrid servo system not only to increase speed of track seeking but also to improve precision of track following servos in HDDs. New piezoelectrically actuated suspensions with passive damping have been designed and fabricated. In order to evaluate positioning and track following performances for the dual-stage track servo systems, experimental efforts are carried out to implement the synthesized active-passive suspension structure with enhanced piezoelectric actuators using a composite nonlinear feedback controller.
机译:定位精度对于当今日益高速,高容量,高数据密度和小型化硬盘驱动器(HDD)至关重要。对高带宽伺服系统的需求可以快速且精确地定位高轨道密度的读/写头变得更加压制。最近,研究了应用双级执行器跟踪伺服系统的想法。推挽压电致动装置已被开发为微致致动器,用于精细和快速定位,而音圈电机用作大但粗糙的求取。然而,目前的双级执行器设计仅在没有被动阻尼的情况下使用压电贴片。在本文中,我们提出了一种使用增强的主动无源混合压电致动器的双级伺服系统。由于设计中的被动阻尼,所提出的执行器将改善现有的双级执行器,以获得更高的精度和抗冲击性。我们的目标是开发这种混合伺服系统,不仅可以提高轨道速度,而且还可以提高HDD中伺服伺服电视之后的轨道精度。设计和制造了具有无源阻尼的新型压电驱动的悬浮液。为了评估双级轨道伺服系统的性能后进行定位和追踪,进行实验努力,以实现具有使用复合非线性反馈控制器的增强压电致动器的合成有源被动悬架结构。

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