Determination of the pressure equivalent noise signal of vector sensors in a hybrid array

The advent of particle velocity sensors as a viable addition to traditional pressure-based sensors in acoustics has fueled considerable research into the additional capabilities they might bring. Previous thesis work performed at NPS successfully demonstrated a working acoustic beamformer using a hy...

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Main Author: Kok, Chuen Wah
Other Authors: Kapolka, Daphne
Published: Monterey, California. Naval Postgraduate School 2013
Online Access:http://hdl.handle.net/10945/27855
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-278552014-11-27T16:17:05Z Determination of the pressure equivalent noise signal of vector sensors in a hybrid array Kok, Chuen Wah Kapolka, Daphne Smith, Kevin B. Physics The advent of particle velocity sensors as a viable addition to traditional pressure-based sensors in acoustics has fueled considerable research into the additional capabilities they might bring. Previous thesis work performed at NPS successfully demonstrated a working acoustic beamformer using a hybrid array comprised of a single conventional omnidirectional microphone and two 3D Microflown Ultimate Sound Probes in an anechoic chamber. These Microflown sensors are vector sensors. They have integrated directionality through the inclusion of three orthogonal particle velocity sensors with a microphone. Unfortunately, the signals of the particle velocity sensors obtained outside in a light, gusting wind were unusable due to broadband noise. Since the fundamental limit to detecting quiet targets depends on the noise floor, the aim of this thesis was to perform an in situ measurement of the pressure equivalent noise floor of all sensors in the array and to minimize the wind noise. Noise levels measured in an anechoic chamber were 915 dB higher than the levels expected from the sensors alone. The additional noise is attributed to the data acquisition equipment. The use of an ACO WS7 windscreen was shown to be extremely effective in mitigating broadband wind noise. 2013-02-15T23:13:45Z 2013-02-15T23:13:45Z 2012-12 Thesis http://hdl.handle.net/10945/27855 Approved for public release; distribution is unlimited. Monterey, California. Naval Postgraduate School
collection NDLTD
sources NDLTD
description The advent of particle velocity sensors as a viable addition to traditional pressure-based sensors in acoustics has fueled considerable research into the additional capabilities they might bring. Previous thesis work performed at NPS successfully demonstrated a working acoustic beamformer using a hybrid array comprised of a single conventional omnidirectional microphone and two 3D Microflown Ultimate Sound Probes in an anechoic chamber. These Microflown sensors are vector sensors. They have integrated directionality through the inclusion of three orthogonal particle velocity sensors with a microphone. Unfortunately, the signals of the particle velocity sensors obtained outside in a light, gusting wind were unusable due to broadband noise. Since the fundamental limit to detecting quiet targets depends on the noise floor, the aim of this thesis was to perform an in situ measurement of the pressure equivalent noise floor of all sensors in the array and to minimize the wind noise. Noise levels measured in an anechoic chamber were 915 dB higher than the levels expected from the sensors alone. The additional noise is attributed to the data acquisition equipment. The use of an ACO WS7 windscreen was shown to be extremely effective in mitigating broadband wind noise.
author2 Kapolka, Daphne
author_facet Kapolka, Daphne
Kok, Chuen Wah
author Kok, Chuen Wah
spellingShingle Kok, Chuen Wah
Determination of the pressure equivalent noise signal of vector sensors in a hybrid array
author_sort Kok, Chuen Wah
title Determination of the pressure equivalent noise signal of vector sensors in a hybrid array
title_short Determination of the pressure equivalent noise signal of vector sensors in a hybrid array
title_full Determination of the pressure equivalent noise signal of vector sensors in a hybrid array
title_fullStr Determination of the pressure equivalent noise signal of vector sensors in a hybrid array
title_full_unstemmed Determination of the pressure equivalent noise signal of vector sensors in a hybrid array
title_sort determination of the pressure equivalent noise signal of vector sensors in a hybrid array
publisher Monterey, California. Naval Postgraduate School
publishDate 2013
url http://hdl.handle.net/10945/27855
work_keys_str_mv AT kokchuenwah determinationofthepressureequivalentnoisesignalofvectorsensorsinahybridarray
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