• 제목/요약/키워드: Audible frequency band acoustic communication

검색결과 4건 처리시간 0.022초

음향 OFDM의 음질 저하 원인 분석 (An Analysis on Audio Quality Deterioration of Acoustic OFDM)

  • 조기호;윤환식;장준혁;김남수
    • 한국음향학회지
    • /
    • 제28권2호
    • /
    • pp.107-111
    • /
    • 2009
  • 음향 OFDM (Acoustic OFDM)은 스피커와 마이크를 이용한 가청주파수 대역에서 음향 통신을 하기 위해 제안된 것으로, 1600 Hz의 대역을 사용할 때 약 1 kbps로 데이터를 전송할 수 있다. 음악이나 음성 등의 오디오에 음향 OFDM 신호를 삽입하여 음향 통신을 하는데, 오디오에 음향 OFDM을 삽입하게 되면 OFDM 프레임의 보호 구간, 프레임 간의 중첩 구간 그리고 대역 저지 필터의 저지대역 성분 등에 의해 필연적으로 음질 저하의 문제점이 발생한다. 본 논문에서는 음향 OFDM 신호를 삽입한 오디오에서 발생하는 음질 저하의 원인을 체계적으로 분석하고, 음질 저하를 줄일 수 있는 방안에 대해 논의한다.

음성신호의 압축원리를 이용한 사운드 마스킹 효과로 음향 환경 최적화 (Optimize the Acoustic Environment Using a Sound Masking Effects of the Audio Signal Compression Principle)

  • 안숙향
    • 한국전기전자재료학회논문지
    • /
    • 제28권11호
    • /
    • pp.748-751
    • /
    • 2015
  • Sound Masking System technology as by sound the same on all bands and artificially generates a constant sound shield People want to hear or recognize the people with the noise generated from the interior of the way. Prevent hearing or prevent recognition by using the technology to control the audible frequency band Continue to emit constant and uniform shielding sound audible frequency band Even the security content of speech (20 Hz~20 KHz). That interception laser eavesdropping, internal solicitations, during recording Or delay the decoding was a result of the effect of interference calculated Experience noise disturbance index is applied around the Stress Index is the average index is 10.16 was a luxury for the average index is then applied to the index 3.07 Noise is significantly lower stress level has improved noise conditions.

스마트폰에서 보청기로의 음향 무선 통신 (Acoustic Wireless Communication from Smart Phone to Hearing Aid)

  • 장순석
    • 한국음향학회지
    • /
    • 제34권2호
    • /
    • pp.91-97
    • /
    • 2015
  • 본 논문은 스마트폰으로부터 디지털 보청기로 가청음 주파수 대역의 무선 통신을 수행한 내용을 다루었다. 반송주파수를 1 kHz 단일 채널을 사용하는 진폭편이방식에 의해 이진 데이터를 변조한 후, 정상적인 송수신 결과를 확인하였다. 전체적인 시스템 구현 과정을 상세히 설명하면서 실험 결과로 증빙해보였다. 스마트폰을 사용한 디지털 보청기 원격 제어가 가능한 실용화 제품을 실현하고자 한다.

A study on the Frequency Analysis Function of the Auricle Using A Notch Filter

  • Park, Dong-Cheol
    • International journal of advanced smart convergence
    • /
    • 제10권4호
    • /
    • pp.241-255
    • /
    • 2021
  • The human auricle is the first part to receive sound from the outside. In this part, the frequency range of human recognizable form is divided and organized. In this study, we propose modeling by applying a single sound source to the surface of the human auricle. This means that when the sound pressure of a low frequency (low frequency) sound enters the pinna, the impedance felt at the tip of a part of the non-linear surface of the pinna is mainly due to the tensile force at the end of the part of the non-linear surface of the pinna. By expressing the situation of moving at a very small speed, the characteristic impedance of the pinna was confirmed to be negative infinity, and it was also confirmed that the speed at the tip of a part of the non-linear surface of the pinna was 0 in the anti-resonance state. It was found that the wave propagation phenomenon that determines the characteristics of the filter is determined by how large the wavelength, kL, is compared to the length of the tip of a part of the non-straight surface of the pinna. Humans first receive sounds from outside through their ears. The auricle is non-linear and has a curved shape, and it is known that it analyzes frequencies while receiving external sounds. The human ear has an audible frequency range of 20Hz - 20,000Hz. Through the study, we applied the characteristics of the notch filter to hypothesize that the human audible frequency range is separated from the auricle, and applied filter theory to analyze it, and as a result, meaningful results were obtained. The curved part and the inner part of the auricle function as a trumpet, collecting sounds, and at the same time amplifying the weak sound of a specific band. The point was found and the shape of the envelope detected in the auricle was found. Selectivity for selecting sounds coming from the outside is the formula of the pinna that implements the function of Q. The function of distinguishing human-recognizable sound from the pinna from low to high through frequency analysis is performed in the pinna, and the 2-3kHz area, where human hearing threshold is the most sensitive, is also the acoustic impedance of the most recessed area of the pinna. It can be seen that starting from.