• 제목/요약/키워드: Maximum audible frequency

검색결과 15건 처리시간 0.025초

가청 수중음에 대한 오징어 어군의 위집 (The Thronging of Shoals of Squid to Audible underwater Sound)

  • 서두옥
    • 수산해양기술연구
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    • 제31권3호
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    • pp.220-227
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    • 1995
  • 제주도 연안에서 조업하는 오징어 채낚이 어업에서 수중 음향집어법을 개발하기 위하여 제작한 수중확성기의 주파수 특성실험을 행하고, 또한 이 확성기로 수중 가청음을 수중에서 방성하였을 때 오징어 어군이 유집 반응을 조사.분석한 결과를 요약하면 다음과 같다. 1. 제작한 수중 확성기의 측정 주파수는 500Hz 측정에서 높은 음압을 나타내었다. 2. 제작한 수중 확성기의 육상 수조 및 해중 실험에서 측정 주파수 250~600Hz의 입력 파형과 츨력 파형은 거의 일치하였다. 3. 야간에 집어등으로 유집된 오징어 어군의 수중 소음의 중심 주파수는 300~400Hz 정도이었다. 4. 제작한 수중 확성기로 주파수 300Hz와 400Hz의 수중 가청 단속음을 수심 10m에서 방성하였을 때 오징어 어군은 유집 반응을 보였다.

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A Study on the healing factors of Forest Sound

  • Yi, Eun-Young;Bae, Myung-Jin
    • International Journal of Internet, Broadcasting and Communication
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    • 제9권2호
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    • pp.70-77
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    • 2017
  • Where there are all the flowers, the songs of all kinds of insects and birds are put in, the sunshine and shadows flicker The forest through which the water sound flows is an optimum resting space. All living creatures in these spaces will awaken the five senses of humans and perhaps turn the sensibility index (EQ). The forest meditation in the forest, which can be an optimal shelter for the people who need it, needs to feel the reverence of nature, to refine emotions, to be a self-reflection, to have a mind to respect, Have an important meaning. In this paper, we tried to consider the cause of the influence of forest sounds on human hearing from the acoustical aspect. The type of sound source of forest was divided into four seasons of spring, summer, autumn, winter. And the change in the duration of the sound during the four seasons, so that the general characteristics of the sounds of the four seasons are as follows: It can be seen that the change in the ratio of sub-band energy is almost equal to the change in dB in frequency of the equal-light curve. To compare this phenomenon, the criterion for changing the sound duration of each forest is natural The main forms of the luminance curve, such as the change in the duration of the white signal in the sound, are determined by the minimum, maximum audible frequency and the most sensitive frequency band, and the auditory characteristics of the other three inflection points Determines the overall shape of the equal-light curve.

환경특성에 따른 안주애기박쥐(Vespertilio sinensis)의 반향정위 특징 (Characteristics of Echolocation Calls of the Parti-coloured Bat, Vespertilio sinensis, in Relation to Environment Type)

  • 정철운;한상훈
    • 한국환경과학회지
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    • 제24권3호
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    • pp.353-358
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    • 2015
  • In this study, we analyzed two types of echolocation calls used by the parti-coloured bat, Vespertilio sinensis. Bats were captured in the Naejangsan National Park in October 2013. Call sounds of hand-released bats were recorded at the location of capture within the National Park. We analyzed pulse duration (PD), pulse interval (PI), peak frequency (PF), maximum frequency ($F_{MAX}$), minimum frequency ($F_{MIN}$), and bandwidth (BW). V. sinensis emitted the different types of the echolocation calls depending on the surrounding environment. Frequency modulated-constant frequency (FM-CF) signal of audible range was emitted when they flew in the uncluttered space over the canopy. However, when flying in the cluttered space below the canopy, they only emitted FM signal. FM-CF signal is in the audible range (e.g., low frequency), and FM signal has a harmonic broadband frequency range of two. There were significant differences in PD, PI, PF, FMAX, FMIN, and BW between the calls emitted over and below the canopy. Considering the functional characteristics of FM and CF signals, we conclude that the foraging activity of V. sinensis was observed below the canopy, and recommend the use of FM signal and broadband as echolocation signals.

Flow Actuation by DC Surface Discharge Plasma Actuator in Different Discharge Modes

  • Kim, Yeon-Sung;Shin, Jichul
    • International Journal of Aeronautical and Space Sciences
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    • 제16권3호
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    • pp.339-346
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    • 2015
  • Aerodynamic flow control phenomena were investigated with a low-current DC surface discharge plasma actuator. The plasma actuator was found to operate in three different discharge modes with similar discharge currents of about 1 mA or less. Stable continuous DC discharge without audible noise was obtained at higher ballast resistances and lower discharge currents. However, even with continuous DC power input, a low-frequency self-pulsed discharge was obtained at lower ballast resistances, and a high-frequency self-pulsed discharge was obtained at higher set-point currents and higher ballast resistances, both with audible noise. The Schlieren image reveals that the low-frequency self-pulsed mode produces a synthetic jet-like flow implying that a gas heating effect plays a role, even though the discharge current is small. The high-frequency self-pulsed mode produces pulsed jets in a tangent direction, and the continuous DC mode produces a steady straight pressure wave. Particle image velocimetry (PIV) images reveal that the induced flow field by the low-frequency self-pulsed mode has flow propagating in the radial direction and centered between the electrodes. The high-frequency self-pulsed mode and continuous DC mode produce flow from the anode to the cathode. The perturbed region downstream of the cathode is larger in the high-frequency self-pulsed mode with similar maximum speeds.

제주 연안에서 어획된 두툽상어의 청각 특성 (Auditory Characteristics of Tiger shark Scyliorhinus torazame caught in the Coast of jeju Island)

  • 안장영;최찬문;이창헌
    • 수산해양기술연구
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    • 제47권3호
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    • pp.234-240
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    • 2011
  • In order to obtain the fundamental data about the behavior of sharks by underwater audible sound, this experiment was carried out to investigate the auditory characteristics of tiger shark Scyliorhinus torazame which was caught in the coast of Jeju Island by heart rate conditioning method using pure tones coupled with a delayed electric shock. The audible range of tiger shark extended from 80Hz to 300Hz with a peak sensitivity at 80Hz including less sensitivity at 300Hz. The mean auditory thresholds of tiger shark at the frequencies of 80Hz, 100Hz, 200Hz and 300Hz were 90dB, 103dB, 94dB and 115dB, respectively. The positive response of tiger shark was not evident after the sound projection of over 300Hz. At the results, the sensitive frequency range of tiger shark is narrower than that of fish that has swim bladder. In addition, it is assumed that the most sensitive frequency in auditory thresholds of Chondrichthyes is lower than that of Osteichthyes. Critical ratios of tiger shark measured in the presence of masking noise in the spectrum level range of about 60-70dB (0dB re $1{\mu}Pa/\sqrt{Hz}$) increased from minimum 27dB to maximum 39dB at test frequencies of 80-200Hz. The noise spectrum level at the start of masking was distributed at the range of about 65dB within 80-200Hz.

제주 연안에서 어획된 붕장어의 청각 능력 (Hearing Ability of Conger eel Conger myriaster caught in the Coast of jeju Island)

  • 안장영;박용석;최찬문;김석종;이창헌
    • 수산해양기술연구
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    • 제48권4호
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    • pp.479-486
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    • 2012
  • In order to obtain the fundamental data about the behavior of conger by underwater audible sound, this experiment was carried out to investigate the hearing ability of Conger eel Conger myriaster which was in the coast of Jeju Island by heartbeat conditioning method using pure tones coupled with a delayed electric shock. The audible range of conger eel extended from 50Hz to 300Hz with a peak sensitivity at 80Hz including less sensitivity over 200Hz. The mean auditory thresholds of conger eel at the frequencies of 50Hz, 80Hz, 100Hz, 200Hz and 300Hz were 105dB, 92dB, 96dB, 128dB and 140dB, respectively. The positive response of conger eel was not evident after the sound projection of over 200Hz. At the results, the sensitive frequency range of conger eel is narrow in spite of swim bladder. Auditory masking was determined for Conger eel by using masking stimuli with the spectrum level range of about 60~70dB (0dB re $1{\mu}Pa/\sqrt{Hz}$). According to white noise level, the auditory thresholds increased as compared with thresholds in a quiet background noise including critical ratio at 68dB of white noise from minimum 26dB to maximum 30dB at test frequencies of 80Hz and 100Hz. The noise spectrum level at the start of masking was distributed at the range of about 68dB within 80~100Hz.

산업장 소음의 강도 및 주파수 특성에 관한 조사연구 (The Study on the Characteristic Sound Intensity and Frequency of Noise Exposure at Occupational Sites)

  • 김광종;차철환
    • 한국산업보건학회지
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    • 제1권2호
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    • pp.181-191
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    • 1991
  • The present study determined the overall noise level and the distribution of sound pressure level over audible frequency range of noise produced at various work sites. Work-related noise greater than 80dBA produced from 98 separate work sites at 37 manufacturing companies and machine shops were analysed for the overall sound level (dBA) and frequency distribution. In addition, to determine the possible hearing loss related to work site noise, a hearing test was also conducted on 1,374 workers in these work sites. The results of the study were as follows ; 1. Of the total 98 work sites, 57 work sites(58.2%) produced noise exceeding threshold limit value (${\geq}90dBA$) set by the Ministry 01 Labor. In terms of different manufacturing industries the proportion of work sites which exceeded 90dBA was the highest for the cut-stone products industry with 6/6 work sites and lowest for the commercial printing industry with 1/13 work sites. 2. The percentage of workers who were exposed to noise greater than 90dBA was 19.8% (1,040 workers) 01 the total 5,261 workers. In terms of different industries, cut-stone products industry had the most workers exposed to noise exceeding 90dBA with 82.8%, textile bleaching and dyeing industry was next at 30.6% followed by fabricated metal products industry with 27.9%, plastic products manufacturing industry had the lowest percentage of workers exposed to 90dBA exceeding noise with 4.5%. 3. There was a statistically significant correlation between the frequency of noise-induced hearing loss and the percentage of workers exposed to noise exceeding 90dBA (P<0.05). 4. The frequency analysis of noise produced at the 98 work sites revealed that 44 work sites (44.9%) had the maximum sound pressure level at high-frequencies greater than 2KHz. In addition, significantly higher sound pressure level was detected at the high-frequencies at 90dBA exceeding work sites as compared to below 90dBA work sites (P<0.01). 5. The differences in sound level meter's A-and C-weighted sound pressure levels were analysed by frequencies. Of the 28 work sites which showed 0-1 dB difference in the two weighted sound levels, 20 work sites (71.4%) had significantly higher sound pressure levels at high-frequencies greater than 2KHz (P<0.01). Furthermore, there was a tendency for higher sound pressure levels to occur in the high-frequency range as the differences in the two weighted sound levels decreased.

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디지털 SSB 모뎀 개발에 관한 연구 (A Study on the Development of SSB Modem)

  • 진형두;최조천
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2007년도 추계종합학술대회
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    • pp.693-697
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    • 2007
  • SSB 무선모뎀은 데이터의 디지털 전압레벨을 가청주파수로 변환하는 변조와 역으로 가청주파수를 데이터의 디지털 전압레벨로 변환하는 복조과정을 거치는데 변${\cdot}$복조기는 하나의 DSP 칩을 이용하여 구현하였다. SSB의 특성상 주파수가 변할 때 인접한 두 주기에서 왜곡이 발생하는데 이것은 음성통신방식에는 아무런 영향을 주지 않으나 데이터 전송할 때는 심각한 영향을 준다. 다시 말하면 인접해 있는 2주기는 데이터 전송을 할 수 없다. 그래서 2-tone FSK방식을 사용하는 경우, 1비트를 보내기 위해 최소 3주기 이상을 보내야 한다. 그러므로, 고속전송을 위해서는 1개의 tone 신호를 보내는 변형된 위상지연 방식을 사용하여 모뎀을 구현하였다. 1200bps를 전송모드에서는 1.3kHz 심볼주파수에 지연시간 0과 $187{\mu}s$을 발생시켰고 2400bps 모드에서는 1.5kHz 심볼주파수에 0, $70{\mu}s$, $130{\mu}s$, 및 $200{\mu}s$의 지연시간을 두어 구현하였다. 최고전송속도 3600bps 모드에서 는 2.0kHz 심볼주파수에 0, $100{\mu}s$, $160{\mu}s$$250{\mu}s$의 지연시간을 두어 구현하였다. 이상의 방법으로 SSB 모뎀을 구현하였으며 기존 독일의 PACTOR와 미국의 CLOVER계열의 스펙트럼과 비교했을때 SSB 통과대역폭은 거의 비슷하였고 대역폭내의 신호대잡음비를 비교한 결과 본 연구 구현한 모뎀의 파형이 20dB정도 높은 이득으로 전송되는 우수한 특성을 보였다. 실제 전송시험결과에서도 송수신 Platform에 데이터가 정확하게 수신되고 있음을 확인하였다.

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디지털 SSB 모뎀 개발에 관한 연구 (A Study on the Development of SSB Modem)

  • 김정년
    • 한국정보통신학회논문지
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    • 제11권10호
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    • pp.1852-1857
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    • 2007
  • SSB 무선모뎀은 데이터의 디지털 전압레벨을 가청주파수로 변환하는 변조와 역으로 가청주파수를 데이터의 디지털 전압레벨로 변환하는 복조과정을 거치는데 변 복조기는 하나의 DSP 칩을 이용하여 구현하였다. SSB의 특성상 주파수가 변할 때 인접한 두 주기에서 왜곡이 발생하는데 이것은 음성통신방식에는 아무런 영향을 주지 않으나 데이터 전송할 때는 심각한 영향을 준다. 다시 말하면 인접해 있는 2주기는 데이터 전송을 할 수 없다. 그래서 2-tone FSK방식을 사용하는 경우, 1비트를 보내기 위해 최소 3주기 이상을 보내야 한다. 그러므로, 고속전송을 위해서는 1개의 tone 신호를 보내는 변형된 위상지연 방식을 사용하여 모뎀을 구현하였다. 1200bps를 전송모드에서는 1.3kHz 심볼주파수에 지연시간 0과 $187{\mu}s$을 발생시켰고 2400bps 모드에서는 1.5kHz 심볼주파수에 0, $70{\mu}s,\;130{\mu}s$$200{\mu}s$의 지연시간을 두어 구현하였다. 최고전송속도 3600bps 모드에서는 2.0kHz 심볼주파수에 0, $100{\mu}s,\;160{\mu}s$$250{\mu}s$의 지연시간을 두어 구현하였다. 이상의 방법으로 SSB 모뎀을 구현하였으며 기존 독일의 PACTOR와 미국의 CLOVER계열의 스펙트럼과 비교했을 때 SSB 통과대역폭은 거의 비슷하였고 대역폭내의 신호대잡음비를 비교한 결과 본 연구 구현한 모뎀의 파형이 20dB정도 높은 이득으로 전송되는 우수한 특성을 보였다. 실제 전송시험 결과에서도 송수신 Platform에 데이터가 정확하게 수신되고 있음을 확인하였다.

음원주파수 판별을 위한 PVDF 음향센서 (A PVDF Acoustic Sensor for Identifying Sound Source Frequencies)

  • 이용국;최용일;송유리;안형근;한득영
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1995년도 추계학술대회 논문집
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    • pp.202-204
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    • 1995
  • An acoustic sensor using PVDF film is proposed in this paper. And its properties, such as sensitivity level, identification of sound source frequencies. and directivity, were experimented. Sensitivity level measured at the distance of 1[m] was limited in the range of ${\pm}$10dB. Adjacent three frequencies were also tested to identify the frequency of sound sources. In the range of audible frequencies, it could distinguish the frequencies of a complex sound. In addition, it was found that the sensor outputs were maximum in the coincided direction with a source, when directivity was experimented with three sound sources and FFT. The proposed PVDF film sensor has good characteristics of directivity and identifying ability as an acoustic sensor.

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