DocumentCode :
644132
Title :
A zoom drive noise reduction technique for digital cameras
Author :
Oku, Takanori ; Kunisa, Akiomi ; Yamanaka, Mitsuyuki ; Murata, Hidekazu
Author_Institution :
Xacti Corp., Osaka, Japan
fYear :
2013
fDate :
1-4 Oct. 2013
Firstpage :
192
Lastpage :
194
Abstract :
Sound recorded in compact digital cameras includes a zoom drive noise caused by motor driving, gear driving, and so on. The spectral subtraction (SS) method is suitable for removing these noises because it does not require any extra hardware, but the original signal is quite distorted. Therefore we have developed an advanced SS (A-SS) method suppressing the distortion of the original signal. It first subtracts the assumed noise spectrum from an input signal, and then processes the spectrum so as to keep the power constant. In addition, digital cameras have a unique problem that the ratio of noise against a recorded signal varies frequently, which is caused by the lens variability and recording environment difference. To counter this issue, we have developed the two algorithms: the statistically optimized algorithm to pre-compute the noise spectrum beforehand, and the feedback algorithm to automatically control the quantity of subtraction according to the noise ratio. We implement the A-SS method applying the proposed algorithms into a prototype camera and verified the effectiveness on the noise reduction.
Keywords :
cameras; image sensors; lenses; optical distortion; optical feedback; optical noise; prototypes; statistical analysis; A-SS method; automatic control; compact digital cameras; feedback algorithm; gear driving; lens; motor driving; noise ratio; noise spectrum; power constant; prototype camera; signal distortion; sound recording; spectral subtraction method; statistically optimized algorithm; zoom drive noise reduction technique; Digital cameras; Distortion; Noise; Noise measurement; Noise reduction; Speech recognition; digital cameras; spectral subtraction; zoom drive noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Consumer Electronics (GCCE), 2013 IEEE 2nd Global Conference on
Conference_Location :
Tokyo
Print_ISBN :
978-1-4799-0890-5
Type :
conf
DOI :
10.1109/GCCE.2013.6664796
Filename :
6664796
Link To Document :
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