• Title/Summary/Keyword: 음향반응

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Human Response to Infrasound (초저주파음에 대한 인간의 반응)

  • 이정권;이병호
    • Journal of the Ergonomics Society of Korea
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    • v.1 no.2
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    • pp.33-37
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    • 1982
  • 인간의 가청 영역은 어린이의 경우에 20 Hz-20KHz로 알려져 있다. 그러나, 20Hz 이하의 초저주파 영역에서도 그 음압 레벨이 높은 경우에는 인간이 감지할 수 있다는 사실이 알려졌는데, 그것은 듣느다기 보다는 느낀다는 것으로 표현되고 있다. 초저주파 음이 인간에게 미친다고 생각되는 좋지않은 영향 때문에, 60년대말 이후에 새로운 종류의 연구 과제로서, 음향학자, 심리학자, 의학자 등에 의해 활발히 연구되고 있다. 게다가 경제의 고도성장 및 환경 개선의 노력에 따라, 대기 오염, 가청 소음, 진동 등의 전형적인 환경 공해 외의 초저주파음 공해에 대한 사람들의 인식과 불평이 문제시 되고 있다. 즉, 고주파수의 음이 잘 소음된 곳에서, 소리가 잘 들리지는 않으나 항상 사람들을 불안하게 하는 그 무엇이 있다는 것이다. 이에따라 지난 몇 년간 인간의 산업 활동과 관계 있는 높은 레벨의 초조주파 소음의 발생원이 확인되었고, 그에 따른 대책 및 설계 단계에서의 고려가 요구되고 있다.

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A Study on the Relations between Psychological Reactions and Evaluation Indexes for Environmental Noises (환경소음의 심리반응과 평가지표의 관계)

  • 정광용;김선우
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2001.11b
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    • pp.910-915
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    • 2001
  • For the environmental noises has various frequency spectrums and fluctuation characteristics. the dimensions of psychological influencing on persons IS also complex. Analyzing this complex-dimensional psychological factors and characteristics of them then developing the evaluation indexes which have a good correspondence are important for improvement of noise environment. To develop the effective evaluation procedures which reflect the psychological respects of persons, this study firstly we drove the psychological factors and classified the noises into several groups by their psychological response characteristics through the psycho-acoustical experiments using environmental noises. In addition, we analyzed the relationship between the various evaluation indexes, psychological factors and the noise groups, and then suggested several indexes for the simple and efficient psycho-acoustic evaluation.

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Control of Acoustic Response of A/C Rectangular Plate Using Piezo Electric Material (압전 소자를 이용한 항공기용 사각박판에 대한 음향 반응제어)

  • Jung, Do-Hee;Park, Seen-Ok
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2004.11a
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    • pp.633-636
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    • 2004
  • Acoustic response control of a corner-pinned plate using piezoelectric wafers was studied, both theoretically and experimentally. Three different sizes of aluminum alloy plates were used and available ball joints were employed to hold the plate at the four comers. The plate with the largest aspect ratio showed the largest and most clear responses to the acoustic excitation in the range of frequencies $(0\sim200Hz)$, and sound pressure levels $(80\sim100dB)$ as predicted. The reduction of the acoustic response of the plate by piezoelectric actuator was very significant, more than expected, but abatement of the sound transmission through the plate was only slightly altered by the piezoelectric actuator. This work is an original work extending earlier work with doors excited by acoustic fields. The important difference is the used of ball joints to simulate the joints.

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An Experimental Study on the Flame Appearance and Heat Transfer Characteristics of Acoustically Excited Impinging Inverse Diffusion Flames (음향 가진된 충돌 역 확산화염의 화염형상과 열전달 특성에 관한 실험적 연구)

  • Kang, Ki-Joong;Lee, Kee-Man
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.10
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    • pp.3647-3653
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    • 2010
  • An experimental investigation of the flame appearance and heat transfer characteristics in both unexcited and excited impinging inverse diffusion flames with a loud speaker has been performed. The flame is found to become broader and shorter (in length) with acoustic excitation. The heat flux at the stagnation point is increased with the acoustic excitation. The acoustic excitation is more effective in lean conditions than in rich conditions. The reasons for these behaviors are that acoustic excitation improves the entrainment of surrounding air into the jet. From this study, it is found that the maximum increase of 57% in the total heat flux is obtained at the stagnation point of $\Phi$=0.8. Therefore, it is ascertained that the excitation combustion can be adopted with effective instruments as a method for improving heat transfer in impinging jet flames.

Korean Word Recognition using the Transition Matrix of VQ-Code and DHMM (VQ코드의 천이 행렬과 이산 HMM을 이용한 한국어 단어인식)

  • Chung, Kwang-Woo;Hong, Kwang-Seok;Park, Byung-Chul
    • The Journal of the Acoustical Society of Korea
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    • v.13 no.4
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    • pp.40-49
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    • 1994
  • In this paper, we propose methods for improving the performance of word recognition system. The ray stratey of the first method is to apply the inertia to the feature vector sequences of speech signal to stabilize the transitions between VQ cdoes. The second method is generating the new observation probabilities using the transition matrix of VQ codes as weights at the observation probability of the output symbol, so as to take into account the time relation between neighboring frames in DHMM. By applying the inertia to the feature vector sequences, we can reduce the overlapping of probability distribution of the response paths for each word and stabilize state transitions in the HMM. By using the transition matrix of VQ codes as weights in conventional DHMM. we can divide the probability distribution of feature vectors more and more, and restrict the feature distribution to a suitable region so that the performance of recognition system can improve. To evaluate the performance of the proposed methods, we carried out experiments for 50 DDD area names. As a result, the proposed methods improved the recognition rate by $4.2\%$ in the speaker-dependent test and $12.45\%$ in the speaker-independent test, respectively, compared with the conventional DHMM.

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Acoustothermal Heating of Polydimethylsiloxane Microfluidic Systems and its Applications (Polydimethylsiloxane 기반 미세유체시스템의 음향열적 가열 및 응용)

  • Sung, Hyung Jin;Ha, Byunghang;Park, Jinsoo;Destgeer, Ghulam;Jung, Jin Ho
    • Journal of the Korean Society of Visualization
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    • v.14 no.1
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    • pp.57-61
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    • 2016
  • We report a finding of fast(exceeding 2,000 K/s) heating of polydimethylsiloxane(PDMS), one of the most commonly-used microchannel materials, under cyclic loadings at high(~MHz) frequencies. A microheater was created based on the finding. The heating mechanism utilized vibration damping of sound waves, which were generated and precisely manipulated using a conventional surface acoustic wave(SAW) microfluidic system, in PDMS. The penetration depths were measured to range from $210{\mu}m$ to $1290{\mu}m$, enough to cover most microchannel heights in microfluidic systems. The energy conversion efficiency was SAW frequency-dependent and measured to be the highest at around 30 MHz. Independent actuation of each interdigital transducer(IDT) enabled independent manipulation of SAWs, permitting spatiotemporal control of temperature on the microchip. All the advantages of this microheater facilitated a two-step continuous flow polymerase chain reaction(CFPCR) to achieve the billion-fold amplification of a 134 bp DNA amplicon in less than 3 min. In addition, a technique was developed for establishing dynamic free-form temperature gradients(TGs) in PDMS as well as in gases in contact with the PDMS.

The Prosodic Changes of Korean English Learners in Robot Assisted Learning (로봇보조언어교육을 통한 초등 영어 학습자의 운율 변화)

  • In, Jiyoung;Han, JeongHye
    • Journal of The Korean Association of Information Education
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    • v.20 no.4
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    • pp.323-332
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    • 2016
  • A robot's recognition and diagnosis of pronunciation and its speech are the most important interactions in RALL(Robot Assisted Language Learning). This study is to verify the effectiveness of robot TTS(Text to Sound) technology in assisting Korean English language learners to acquire a native-like accent by correcting the prosodic errors they commonly make. The child English language learners' F0 range and speaking rate in the 4th grade, a prosodic variable, will be measured and analyzed for any changes in accent. We compare whether robot with the currently available TTS technology appeared to be effective for the 4th graders and 1st graders who were not under the formal English learning with native speaker from the acoustic phonetic viewpoint. Two groups by repeating TTS of RALL responded to the speaking rate rather than F0 range.

The role background noise intensity on Physiological activity during performance of mental task (인지과제 수행시 배경 소음의 크기에 따른 생리적 반응차)

  • Sohn Jin-Hun;Sokhadze Estate M.;Min Yoon-Ki;Lee Kyung-Hwa;Choi Sangsup
    • Proceedings of the Acoustical Society of Korea Conference
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    • spring
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    • pp.269-273
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    • 1999
  • Combination of mental stress task with noise background is a traditional tool employed in psychophysiology. However, intensity of background noise is a factor affecting both performance on test and psychophysiological responses associated with stress evoked by mental load in noisy environment. In the current study on 7 subjects we analyzed the influence of white noise (WN) intensity (55, 70, and 85 dB[A] ) on psychophysiological responses during word recognition test performed on noise background. There were recorded following physiological variables: electrodermal activity (EDA) , namely, skin conductance level (SCL), skin conductance response (SCR) amplitude (SCR-A), rise time and total number of SCRs (N-SCR); cardiovascular activity, e.g., heart rate (HR), respiratory sinus arrhythmia (RSA) index, pulse transit time (PTT), finger pulse volume (PV), skin temperature (SKT) and respiratory activity, such as respiration rate (RESP-R) and inspiration wane amplitude (RESP-A) during baseline resting state and 40 s long performance on 3 similar Korean word recognition tests with different WN intensity (55, 70, and 85 dB). Electrodermal responses (SCR-A, SCL, N-SCR) demonstrated gradual increment with increased intensity of noise, and this increase of response magnitude with higher intensity of noise was typical also for r skin temperature (phasic SKT decrease) and pulse volume (phasic and tonic PV decrease). However, some cardiovascular and respiratory responses did not exhibit same tendency of gradual increase of reactivity , namely HR, as well as RESP-R and RESP-A showed decrement of response magnitudes. Important finding in terms of cardiovascular reactivity was that 55 and 70dB evoked similar profiles, while 85dB WN resulted in significantly different profile of reactions, suggesting that there exists a threshold level after which intensive auditory stimulation elicits psychophyslological responses pattern of different quality. There are discussed potential autonomic mechanism involved in mediation of observed physiological responses.

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Development of a Dual Axial Gyroscope with Piezoelectric Ceramics (압전세라믹을 이용한 2축형 회전센서 개발)

  • Ryoo, Hye-Ok;Lee, Young-Jin;Roh, Yong-Rae
    • The Journal of the Acoustical Society of Korea
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    • v.16 no.6
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    • pp.61-67
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    • 1997
  • Piezoelectric gyroscopes are the devices to measure angular rotational velocity of a system with respect to an inertial frame of reference means of the Coriolis principle. Most of current piezoelectric gyroscopes detect rotational velocity about a single axis of rotation. This paper describes development of a new dual axial gyroscope made out of the piezoelectric ceramic, PZT, which can overcome the limitation of the current single axial type. The validity of the new structure is checked through finite element analysis. Based on the design, an experimental sample of the sensor is fabricated and its performance is discussed in comparison with the theoretical expectation. The resutls show that the present gyroscope is capable of measuring the rotational velocity over two orthogonal axes simultaneously with good enough sensitivity and distinction between the two axial components of the rotation.

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Calculation Model of Time Varying Loudness by Using the Critical-banded Filters (임계 대역 필터를 이용한 과도음의 라우드니스 계산 모델)

  • Jeong, Hyuk;Ih, Jeong-Guon
    • The Journal of the Acoustical Society of Korea
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    • v.19 no.5
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    • pp.65-70
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    • 2000
  • It is blown that the loudness is one of the most important metrics in assessing the sound quality and a calculation method for loudness has been standardized for steady sounds. In this study, a new loudness model is suggested for dealing with the transient sound for a unified analysis of various practical sounds. A signal processing technique is introduced for this purpose, which is required for the band subdivision and the prediction of band-level change of transient sounds. In addition, models for the post-masking and the temporal integration are adopted in the analysis of the loudness of transient sounds. In order to solve the problem of the conventional loudness model in the pure-tone signal processing, a critical band filter is employed in the analysis, which consists of 47 critical filters having a filter spacing of a half of the critical bandwidth. For testing the effectiveness of the present model, the predicted responses are compared with the experimental data and it is observed that they are in good agreements.

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