Narrowband performance of active control on flow-induced vibrations inside hard disk drives

This paper presents an experimental study of digital narrowband active control on the flow-induced vibrations (FIV) on the head gimbals assembly (HGA) in a working hard disk drive (HDD). Firstly, the modal testing on the HDD was carried out, in which the disk modes were analyzed with a 1-D lase...

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Main Authors: Min, Hequn, Huang, Xiaoyang, Zhang, Qide, Xia, Xin
Other Authors: School of Mechanical and Aerospace Engineering
Format: Conference or Workshop Item
Language:English
Published: 2013
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Online Access:https://hdl.handle.net/10356/96916
http://hdl.handle.net/10220/17078
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-969162019-12-06T19:36:37Z Narrowband performance of active control on flow-induced vibrations inside hard disk drives Min, Hequn Huang, Xiaoyang Zhang, Qide Xia, Xin School of Mechanical and Aerospace Engineering Annual Conference on Information Storage and Process Systems (23rd : 2013) DRNTU::Engineering::Computer science and engineering::Information systems::Information storage and retrieval This paper presents an experimental study of digital narrowband active control on the flow-induced vibrations (FIV) on the head gimbals assembly (HGA) in a working hard disk drive (HDD). Firstly, the modal testing on the HDD was carried out, in which the disk modes were analyzed with a 1-D laser Doppler vibrometer (LDV) and the HGA vibration modes with a 3-D LDV. Secondly, a digital feedback control closeloop was implemented in experiments to suppress the FIV spectrum peaks on the HGA. In this close-loop, the HGA vibrations detected by the LDV were used as feedback error signals, then the signals was passed through a digital controller to generate feedback signals to drive a piezoelectric disk to actuate feedback acoustic pressure around the HGA. Active control experiments were conducted in narrow bands on five principal peaks in the HGA off-plate vibration spectrum, around 1256Hz, 1428Hz, 2141Hz, 2519Hz and 3469Hz, respectively. It is shown that distinct suppression of at least 10 dB can be achieved on all these HGA vibration peaks. 2013-10-30T08:34:40Z 2019-12-06T19:36:37Z 2013-10-30T08:34:40Z 2019-12-06T19:36:37Z 2013 2013 Conference Paper Min, H., Huang, X., Zhang, Q., & Xia, X. (2013). Narrowband performance of active control on flow-induced vibrations inside hard disk drives. 23rd ASME Annual Conference on Information Storage and Process Systems. https://hdl.handle.net/10356/96916 http://hdl.handle.net/10220/17078 172088 en © 2013 ASME.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Engineering::Computer science and engineering::Information systems::Information storage and retrieval
spellingShingle DRNTU::Engineering::Computer science and engineering::Information systems::Information storage and retrieval
Min, Hequn
Huang, Xiaoyang
Zhang, Qide
Xia, Xin
Narrowband performance of active control on flow-induced vibrations inside hard disk drives
description This paper presents an experimental study of digital narrowband active control on the flow-induced vibrations (FIV) on the head gimbals assembly (HGA) in a working hard disk drive (HDD). Firstly, the modal testing on the HDD was carried out, in which the disk modes were analyzed with a 1-D laser Doppler vibrometer (LDV) and the HGA vibration modes with a 3-D LDV. Secondly, a digital feedback control closeloop was implemented in experiments to suppress the FIV spectrum peaks on the HGA. In this close-loop, the HGA vibrations detected by the LDV were used as feedback error signals, then the signals was passed through a digital controller to generate feedback signals to drive a piezoelectric disk to actuate feedback acoustic pressure around the HGA. Active control experiments were conducted in narrow bands on five principal peaks in the HGA off-plate vibration spectrum, around 1256Hz, 1428Hz, 2141Hz, 2519Hz and 3469Hz, respectively. It is shown that distinct suppression of at least 10 dB can be achieved on all these HGA vibration peaks.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Min, Hequn
Huang, Xiaoyang
Zhang, Qide
Xia, Xin
format Conference or Workshop Item
author Min, Hequn
Huang, Xiaoyang
Zhang, Qide
Xia, Xin
author_sort Min, Hequn
title Narrowband performance of active control on flow-induced vibrations inside hard disk drives
title_short Narrowband performance of active control on flow-induced vibrations inside hard disk drives
title_full Narrowband performance of active control on flow-induced vibrations inside hard disk drives
title_fullStr Narrowband performance of active control on flow-induced vibrations inside hard disk drives
title_full_unstemmed Narrowband performance of active control on flow-induced vibrations inside hard disk drives
title_sort narrowband performance of active control on flow-induced vibrations inside hard disk drives
publishDate 2013
url https://hdl.handle.net/10356/96916
http://hdl.handle.net/10220/17078
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