• 제목/요약/키워드: Multi-Microphones

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디지털 보청기를 위한 다중 마이크로폰을 이용한 잡음제거 성능 연구 (A Study on the Performance of Noise Reduction using Multi-Microphones for Digital Hearing Aids)

  • 강현덕;송영록;이상민
    • 전기전자학회논문지
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    • 제14권1호
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    • pp.47-54
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    • 2010
  • 본 연구에서는 잡음환경에서 디지털 보청기의 잡음제거를 위해 2,3,4,5개의 마이크로폰을 이용해 잡음제거를 하고 비교 분석 하였다. 실제 디지털 보청기에서 사용할 수 있게 하기 위해 귀걸이형 (behind-the-ear type, BTE) 보청기의 형태와 유사하게 마이크로폰을 배열한 실험 세트를 구성하여 각각의 조건에 따라 신호녹음을 하였고, 녹음된 각각의 신호들을 멀티 마이크로폰을 이용한 잡음제거 알고리즘으로 잡음 제거하였다. 평가 방법에 따라 잡음제거 전과 후의 SNR (Signal to Noise Ratio)과 PESQ (Perceptual Evaluation of Speech ) 측정 분석 결과 마이크로폰 3개와 4개를 사용하였을 때 가장 높은 성능 향상을 보였으며 대부분의 경우에서 마이크로폰의 개수가 늘어남에 따라 성능이 향상된 것을 확인하였다.

A Spatial Audio System Using Multiple Microphones on a Rigid Sphere

  • Lee, Tae-Jin;Jang, Dae-Young;Kang, Kyeong-Ok;Kim, Jin-Woong;Jeong, Dae-Gwon;Hamada, Hareo
    • ETRI Journal
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    • 제27권2호
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    • pp.153-165
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    • 2005
  • The main purpose of a spatial audio system is to give a listener the same impression as if he/she were present in a recorded environment. A dummy head microphone is generally used for such purposes. Because of its human-like shape, we can obtain good spatial sound images. However, its shape is a restriction on its public use and it is difficult to convert a 2-channel recording into multi-channel signals for an efficient rendering over a multi-speaker arrangement. In order to solve the problems mentioned above, a spatial audio system is proposed that uses multiple microphones on a rigid sphere. The system has five microphones placed on special points of the rigid sphere, and it generates audio signals for headphone, stereo, stereo dipole, 4-channel, and 5-channel reproduction environments. Subjective localization experiments show that front/back confusion, which is a common limitation of spatial audio systems using the dummy head microphone, can be reduced dramatically in 4-channel and 5-channel reproduction environments and can be reduced slightly in a headphone reproduction.

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스캐닝 평면 음향 홀로그래피에서의 스펙트럴 분산 보정 (Compensation for Spectral Variance in Scan-Based Planar Acoustical Holography)

  • 권휴상;김용조;;서재갑;박준홍;서상준
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2002년도 춘계학술대회논문집
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    • pp.520-524
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    • 2002
  • Multi-reference, scan-based Acoustical Holography is a useful measurement technique when insufficient microphones are available to measure a complete hologram at once. When the sound sources are stationary, the whole hologram can be constructed by joining together sub-holograms captured using a relatively small scan array. Here that approach is extended by the development of a formulation that explicitly includes the acoustical transfer functions between the reference microphones and the scanning microphones. Based on those expressions, a compensation procedure of spectral variance due to source-non-stationarity is proposed. It has been verified both numerically and experimentally that this procedure can help suppress spatially distributed noise caused by the source level non-stationarity that is always present in a measurement.

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마이크로폰 어레이 신호의 잡음 제거를 위한 강인한 다채널 위너 필터 (Robust Multi-channel Wiener Filter for Suppressing Noise in Microphone Array Signal)

  • 정준영;김기백
    • 방송공학회논문지
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    • 제23권4호
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    • pp.519-525
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    • 2018
  • 본 논문에서는 다채널 위너 필터를 이용하여 마이크로폰 어레이에서 취득된 신호의 잡음을 제거하는 방법을 다룬다. 다채널 위너 필터는 음성 신호의 방향에 대한 정보를 필요로 하지 않는 필터로서 단일 음성 음원의 경우, 음성 왜곡을 발생시키지 않는 MVDR (Minimum Variance Distortionless Response) 공간 필터와 단일 채널 스펙트럼 필터로 분리될 수 있다. MVDR의 방향벡터에 해당하는 단일 음성 음원과 마이크로폰 어레이 간의 음향 전달 함수는 다채널 위너 필터의 부공간 분해 (subspace decomposition)를 이용하여 추정할 수 있다. 이 때 상관 행렬 추정 과정에서 발생하는 오차로 인해 추정되는 음향 전달 함수에도 오차가 발생하게 되며 이에 따라 다채널 위너 필터를 구성하는 MVDR은 음성 왜곡을 발생시키게 된다. 이러한 음성 왜곡을 완화시키기 위해 diagonal loading을 적용하고 실험을 통해 그 효과를 검증한다. 실험에서는 7개의 선형 마이크로폰으로 수집된 데이터를 이용하였으며 잡음을 섞기 전 신호와 잡음을 섞은 후 필터를 통과시킨 신호 간의 MFCC 오차를 측정한다. 실험 결과, diagonal loading을 통해 MFCC 오차를 줄일 수 있음을 확인하였다.

MICROPHONE-BASED WIND VELOCITY SENSORS AND THEIR APPLICATION TO INTERACTIVE ANIMATION

  • Kanno, Ken-ichi;Chiba, Norishige
    • 한국방송∙미디어공학회:학술대회논문집
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    • 한국방송공학회 2009년도 IWAIT
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    • pp.596-600
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    • 2009
  • We are developing a simple low-cost wind velocity sensor based on small microphones. The sensor system consists of 4 microphones covered with specially shaped wind screens, 4 pre-amplifiers that respond to low frequency, and a commercial sound interface with multi channel inputs. In this paper, we first present the principle of the sensor, i.e., technique to successfully suppress the influence of external noise existing in the environment in order to determine the wind velocity and the wind direction from the output from a microphone. Then, we present an application for generating realistic motions of a virtual tree swaying in real wind. Although the current sensor outputs significant leaps in a measured sequence of directions, the interactive animations demonstrate that it is usable for such applications, if we could reduce the leaps to some degree.

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다채널 마이크로폰 음향장치에 관한 연구 (A Study on the Multi-Channel Microphone)

  • 김철운
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2003년도 춘계학술대회 논문집 기술교육전문연구회
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    • pp.96-102
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    • 2003
  • Today, stage technology is developing highly by application of digital computer. Performance is composed of audio/video and acoustic technology takes very important position in field of stage technology. Generally speaking, four factors of sound are loudness, pitch, sound timbre and duration. Loudness depends on sound pressure level, yet partly related with spectrum and dulation. Pitch depends mainly on frequence and have a relation with sound pressure and duration. sound timbre depends strongly on spectrum and have a relation with frequence. In this paper, I designed a multi-microphone system which can used in broadcasting and performance stage with vicboss 200MHz-VHF wireless microphone and vicboss 900MHz-VHF wireless microphone. I also studied about multi-microphone which can use conveniently in the super play that needs many microphones. If this multi-microphone is prodused, we could expect better sound quality and a big progress in stereo recording technology.

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변압기 소음제어를 위한 다중채널 능동소음제어 시스템 (A Multi-Channel Active Noise Control System for Controlling Humming Noise Generated by a Transformer)

  • 이혁재;박영철;윤대희;차일환
    • 소음진동
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    • 제9권6호
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    • pp.1137-1144
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    • 1999
  • Most of ANC(active noise control) researches are focused on adaptive algorithms, computer simulations and implementations of single-channel system in experimental environments. In this paper, a multi-channel ANC system based on DSP's was developed to obtain global attenuations over wide region and applied to the active control of the humming noise generated by a transformer. The developed ANC system including 24 microphones and 12 spearkers was applied to the real transformer noise reduction problem. Results showed that the control system could successfully control the humming noise over the region of interest.

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디지털 오디오 위조검출을 위한 마이크로폰 타입 인식 (Microphone Type Classification for Digital Audio Forgery Detection)

  • 석종원
    • 한국멀티미디어학회논문지
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    • 제18권3호
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    • pp.323-329
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    • 2015
  • In this paper we applied pattern recognition approach to detect audio forgery. Classification of the microphone types and models can help determining the authenticity of the recordings. Canonical correlation analysis was applied to extract feature for microphone classification. We utilized the linear dependence between two near-silence regions. To utilize the advantage of multi-feature based canonical correlation analysis, we selected three commonly used features to capture the temporal and spectral characteristics. Using three different microphones, we tested the usefulness of multi-feature based characteristics of canonical correlation analysis and compared the results with single feature based method. The performance of classification rate was carried out using the backpropagation neural network. Experimental results show the promise of canonical correlation features for microphone classification.

협소 공간 생존자 탐색을 위한 뱀형 로봇의 다중 센서 모듈 (A Multi-Sensor Module of Snake Robot for Searching Survivors in Narrow Space)

  • 김성재;신동관;표주현;신주성;김무림;서진호
    • 로봇학회논문지
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    • 제16권4호
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    • pp.291-298
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    • 2021
  • In this study, we present a multi-sensor module for snake robot searching survivors in a narrow space. To this end, we integrated five sensor systems by considering the opinions of the first responders: a gas sensor to detect CO2 gases from the exhalation of survivors, a CMOS camera to provide the image of survivors, an IR camera to see in the dark & smoky environment, two microphones to detect the voice of survivors, and an IMU to recognize the approximate location and direction of the robot and survivors. Furthermore, we integrated a speaker into the sensor module system to provide a communication channel between the first responders and survivors. To integrated all these mechatronics systems in a small, compact snake head, we optimized the positions of the sensors and designed a stacked structure for the whole system. We also developed a user-friendly GUI to show the information from the proposed sensor systems visually. Experimental results verified the searching function of the proposed sensor module system.

공간좌표로 사상된 GCC 함수를 이용한 음원 위치 추정 방법 (Sound Source Localization Method Using Spatially Mapped GCC Functions)

  • 권병호;박영진;박윤식
    • 한국소음진동공학회논문집
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    • 제19권4호
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    • pp.355-362
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    • 2009
  • Sound source localization method based on the time delay of arrival(TDOA) is applied to many research fields such as a robot auditory system, teleconferencing and so on. When multi-microphones are utilized to localize the source in 3 dimensional space, the conventional localization methods based on TDOA decide the actual source position using the TDOAs from all microphone arrays and the detection measure, which represents the errors between the actual source position and the estimated ones. Performance of these methods usually depends on the number of microphones because it determines the resolution of an estimated position. In this paper, we proposed the localization method using spatially mapped GCC functions. The proposed method does not use just TDOA for localization such as previous ones but it uses spatially mapped GCC functions which is the cross correlation function mapped by an appropriate mapping function over the spatial coordinate. A number of the spatially mapped GCC functions are summed to a single function over the global coordinate and then the actual source position is determined based on the summed GCC function. Performance of the proposed method for the noise effect and estimation resolution is verified with the real environmental experiment. The mean value of estimation error of the proposed method is much smaller than the one based on the conventional ones and the percentage of correct estimation is improved by 30% when the error bound is ${\pm}20^{\circ}$.