• Title/Summary/Keyword: 파수-주파수 분석

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Sound Signal Analysis Using the Time-Frequency Representations (시주파수 표현법을 이용한 소리신호의 분석)

  • Iem, Byeong-Gwan
    • Journal of IKEEE
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    • v.23 no.3
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    • pp.893-898
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    • 2019
  • Time-frequency representations are methods to display the magnitude or energy density of a signal on the two dimensional plane of both time and frequency. They are useful in analyzing the characteristics of time-varying signals. Music is a typical time-varying signal, and it can be analyzed by time-frequency representations. Recently, it is popular to change the sound quality by attaching a safety sounder to an instrument. It is performed to improve perception subjectively by spending little cost and modifying sound quality. In time domain, it is difficult to notify the difference between music signals with and without the sounder. But, it is easy to find the difference in frequency domain or in time-frequency domain. In this paper, the music signal from a flute with sounder is analyzed both in the frequency domain and in the time-frequency domain. It is confirmed that the frequency components in the mid-frequency range of 500~2500 are reinforced.

UnderFrequency Load Shedding Standards Comparison and Analysis (저주파수 부하차단 국내외 규정 비교 및 분석)

  • Choi, Mi-Gon;Ahn, Seon-Ju;Choi, Joon-Ho;Go, Seok-il
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.261-262
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    • 2015
  • 전력계통의 주파수 변화는 부하와 발전력 간 불균형에 의해 발생한다. 발전력 부족에 의해 수급 불균형이 발생한다면 계통 주파수는 부하와 발전력 간의 균형이 다시 이루어지는 점까지 저하하게 되며, 부하와 발전력 간의 수급균형이 이루어지지 않으면 계통은 붕괴된다. 저주파수 부하차단은 일정 시간 내에 부하와 발전력의 균형을 맞춤으로써 계통 붕괴를 방지하기 위한 것이다. 국내의 전력계통은 시간이 지날수록 점점 변화되고 있다. 예를 들어 태양광, 풍력 등의 신재생 에너지인 분산전원, 전력저장 장치 등이 계통의 한 부분이 되고 있는 것이 그 예이다. 이런 변화에 따라 저주파수 부하차단의 방식도 이런 변화를 염두에 두고 적용돼야 한다. 따라서 계통 변화에 따른 저주파수 부하차단 관련 규정 또한 변화가 필요하다.

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Low frequency critical bandwidths of Korean normal hearing adults (한국 정상 성인의 저주파수 임계 주파수 대역 특성에 관한 연구)

  • Moon, Jihyun;Jeon, Kyongeon;Lim, Dukhwan
    • The Journal of the Acoustical Society of Korea
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    • v.41 no.1
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    • pp.70-75
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    • 2022
  • The critical bandwidth represents response interactions with respect to a signal tone and their neighboring bands. This study was to analyze the critical bandwidths of a clinically important 500 Hz tone in Korean young male and female subjects (male = 10, female = 10) at a conversational level (60 dB HL). Data were measured with notched band noise and two alternative forced choice methods. Results showed that the critical bandwidth was slightly greater (95 Hz) than the previous Western measures. There were no statistically significant differences in gender, nor were there any significant differences in lateralization of the ear (p > 0.05). These results may have implications in optimizing effective tinnitus masking or the related clinical applications.

Numerical investigation into flow noise source of a convergent-divergent nozzle in high pressure pipe system using wavenumber-frequency analysis (파수-주파수 분석을 통한 고압 배관 내 수축 확장 노즐의 유동 소음원에 대한 수치적 연구)

  • Ku, Garam;Lee, Songjune;Kim, Kuksu;Cheong, Cheolung
    • The Journal of the Acoustical Society of Korea
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    • v.36 no.5
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    • pp.314-320
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    • 2017
  • A pressure relief valve is generally used to prevent piping systems from being broken due to high pressure gas flows. However, the sudden pressure drop caused by the pressure relief valve produces high acoustic energy which propagates in the form of compressible acoustic waves in the pipe and sometimes causes severe vibration of the pipe structure, thereby resulting in its failure. In this study, internal aerodynamic noise due to valve flow is estimated for a simple contraction-expansion pipe by combining the LES (Large-Eddy Simulation) technique with the wavenumber-frequency analysis, which allows the decomposition of fluctuating pressure into incompressible hydrodynamic pressure and compressible acoustic pressure. In order to increase the convergence, the steady Reynolds-Averaged Navier-Stokes equations are numerically solved. And then, for the unsteady flow analysis with high accuracy, the unsteady LES is performed with the steady result as the initial value. The wavenumber-frequency analysis is finally performed using the unsteady flow simulation results. The wavenumber-frequency analysis is shown to separate the compressible pressure fluctuation in the flow field from the incompressible one. This result can provide the accurate information for the source causing so-called acoustic-induced-vibration of a piping system.

Spectral Domain Analysis of Resonant Frequency in Rectangular Microstrip Patch Antenna on Uniaxial Substrates with Airgap and Superstrate (공기 갭과 덮개층을 갖는 이방성 매질 위의 사각 마이크로스트립 패치 안테나 공진 주파수의 파수 영역 해석)

  • Lee, Sang-Mok;Yoon, Joong-Han;Kim, Heung-Soo
    • Journal of IKEEE
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    • v.5 no.1 s.8
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    • pp.91-99
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    • 2001
  • Spectral domain of resonant frequency rectangular microstrip patch antenna on anisotropic substrates and superstrate with airgap are analyzed. First, we derive dyadic Green function for selected anisotropic material by constitutive relation and then formulate integral equations of electric fields using Fourier transform in space region. Using Galerkin's moment method, we discretize the electric field integral equations Into the matrix form and select sinusoidal functions as basis functions. We verify the validity of numerical results and compare the results with existing ones in showing a good agreement between them. The resonant frequencies in the variation of air gap, patch length and permittivity of superstrate anisotrpy ratio of anisotrpic superstrate are presented and analyzed.

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Frequency Analysis According to Priming Location (기폭위치에 따른 주파수 분석)

  • Son, Seok-Bum;Kang, Choo-Won;Noh, Young-Bae;Go, Chin-Surk
    • Explosives and Blasting
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    • v.29 no.2
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    • pp.51-58
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    • 2011
  • Frequency is a very important factor in discussing the effect on facilities such as precision instruments and therefore, in evaluating the effect of blasting vibration, it is necessary to identity information on frequency in addition to maximum amplitude of vibration. This study collected rock samples in gneiss area to perform an indoor rock test and to identify frequency of blasting vibration according to priming location, performed of single hole test blasting. Then the study decided dominant frequency through FFT and analysed changes according to priming locations. Consequently frequency range according to priming location is indicated top priming is distributed high range, bottom priming is distributed high range, middle priming is distributed evenly range. Frequency trend according to priming location is indicated distance increase with frequency discrease in top priming, distance increase with frequency increase in bottom priming.

Optimal non-audible frequency band research for sonic communication implementation (소닉 커뮤니케이션 구현을 위한 최적의 비가청주파수 대역 연구)

  • Lee, Daeyeon;Lee, Joohyun;Choo, Hyunseung
    • Proceedings of the Korea Information Processing Society Conference
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    • 2018.05a
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    • pp.60-61
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    • 2018
  • 본 연구는 일반적으로 인간이 듣지 못하는 비가청주파수 통신에 대해 분석한다. 대표적인 무선 통신방식으로는 NFC(Near Field Communication), Bluetooth, Wi-Fi 기술 등이 있다. 하지만 이 통신방식들은 통신 모듈이 따로 필요하다는 단점이 있다. 이러한 단점을 보완하기 위해, 본 연구에서는 마이크 및 스피커가 기본적으로 탑재된 스마트폰을 기반으로 한 비가청주파수 통신을 제안한다. 더 나아가 주파수 제어 코드를 최적화하여 비가청주파수를 이용한 통신 거리를 기존의 기술보다 확장하고 높은 인식률을 가지는 것을 목표로 한다.

Frequency-Wave Number Method for the Automated Calculation of the Phase Velocities from the SASW Measurements (SASW실험 분산곡선의 자동화 계산을 위한 주파수-파수 기법)

  • 조성호;강태호
    • Journal of the Korean Geotechnical Society
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    • v.19 no.4
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    • pp.299-310
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    • 2003
  • In the evaluation of the subgrade stiffness structure by the SASW method, the calculation of the phase velocities is the important task controlling the reliability of the result. The interpretation of the phase spectrum should precede the phase-velocity calculation in the current practice of the SASW method. The difficulty involved in the interpretation prohibited the SASW method from being spread over to the industry. This study proposed a new method called the frequency-wave number technique, which is based on the frequency-wave number relationship of the surface wave in the multi-layered system. The frequency-wave number technique eliminates the expertise in the interpretation of the phase spectrum, automates the phase-velocity calculation and expedites the determination of the phase-velocity dispersion curve. To verify the validity of the proposed frequency-wave number method, the transfer function determined from the numerical simulation of the SASW measurements was used fir the calculation of the automatic calculation of the phase velocities and compared with the phase velocities by WinSASW employing the phase-unwrapping method. Also, the proposed method was applied to the real SASW measurements performed at$\bigcirc$$\bigcirc$area in GyeongGi-Do to see how the proposed method works with the real measurements.

Numerical investigation on the flow noise reduction due to curved pipe based on wavenumber-frequency analysis in pressure relief valve pipe system (감압 밸브 배관 시스템 내 파수-주파수 분석을 통한 곡관의 유동소음 저감에 대한 수치적 연구)

  • Garam, Ku;Cheolung, Cheong
    • The Journal of the Acoustical Society of Korea
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    • v.41 no.6
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    • pp.705-712
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    • 2022
  • A sudden pressure drop caused by the pressure relief valve acts as a strong noise source and propagates the compressible pressure fluctuation along the pipe wall, which becomes a excitation source of Acoustic Induced Vibration (AIV). Therefore, in this study, the numerical methodology is developed to evaluate the reduction effect of compressible pressure fluctuation due to curved pipe in the pressure relief valve system. To describe the acoustic wave caused by density fluctuation, unsteady compressible Large Eddy Simulation (LES) technique, which is high accuracy numerical method, Smagorinsky-Lilly subgrid scale model is applied. Wavenumber-frequency analysis is performed to extract the compressible pressure fluctuation component, which is propagated along the pipe, from the flow field, and it is based on the wall pressure on the upstream and downstream pipe from the curved pipe. It is shown that the plane wave and the 1st mode component in radial direction are dominant along the downstream direction, and the overall acoustic power was reduced by 3 dB through the curved pipe. From these results, the noise reduction effect caused by curved pipe is confirmed.

A Study of Comparison with Free Wave Number Between a New Cylinderical Wave Equation and the Wave Equation by Junger and Feit (자유파수를 이용한 새로운 실린더 운동방정식과 Junger and Feit의 실린더 운동방정식의 비교연구)

  • Jo, Heung-Kuk
    • The Journal of the Acoustical Society of Korea
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    • v.15 no.6
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    • pp.47-51
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    • 1996
  • The Cylindrical Shell Equation is one of the fundamental tools in the study of the noise analysis in the cylindrical shell. Therefore, lot of the acousticians induced many cylindrical shell motion equations.[1] In the Reference[6], we introduced the newly induced cylindrical Shell Equation and Junger and Feit's shell equation[5], and computed the free wave number with the linear Equation with the supposed solution, in the case of the free motion of the shell. In this paper, we compared above cylindrical shell equations by using dispersion curve of free wave number and we describe the physical mean for the dispersion curve with ring-frequency and ring-extention-frequency. With this result, we proves the useful of a newly induced cylindrical shell equation and we can analyse the Structure-Borne Sound of the shell with this equation in the application.

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