• 제목/요약/키워드: MLT

검색결과 51건 처리시간 0.025초

음성 및 음악을 위한 저 전송률 다중모드 하모닉 변환 여기 부호화기 (Low Bit Rate Multi Mode Harmonic Transform Excitation Coding for Speech and Music)

  • 김종학;이인성
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 제14회 신호처리 합동 학술대회 논문집
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    • pp.525-528
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    • 2001
  • 본 논문은 음성 및 음악을 위한 새로운 4kbps 다중 모드 하모닉 변환 여기 부호화 방법을 제안한다. 제안된 부호화방법은 음성/음악 분류기에 의해 분류된 신호를 각각 하모닉-잡음 여기모델과 MLT 여기모델로 부호화한다. 하모닉-잡음 여기모델에서는 전이구간과 유/무성음 혼합신호의 모델링오차 개선을 위해 MP(Matching Pursuit)방법과 혼합된 잡음스펙트럴을 표현하기 위한 캡스트럽 LPC 잡음 모델, 빠른 정현파 합성법을 제안한다. 음악에서는 비트할당 효율을 높이기위한 LP 적응 피크 분석을 적용한 MLT(Modulated Lapped Transform) 부호화 방법을 제안한다. 제안된 방법을 적용한 4kbps 음성부호화 방법은 전이구간에서의 향상된 모델링 구조를 보여주었으며, 주관적음질 평가 8kbps QCELP 보다 MOS 0.2 정도 향상된 결과를 얻었다.

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뽕잎발효차 제조에 따른 항산화 및 in vitro 항암활성 (Antioxidant Activity and in vitro for Anticancer Effects of Manufactured Fermented Mulberry Leaf Tea)

  • 배만종;예은주
    • 한국식품영양과학회지
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    • 제39권6호
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    • pp.796-804
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    • 2010
  • 본 연구는 식용식물로의 가치뿐만 아니라 약용으로 가치가 인정되는 뽕잎에 미생물 생균제를 이용한 뽕잎발효차 개발을 통하여 기능성 소재 개발 및 새로운 제품개발의 방안을 제시하고자 뽕잎차 및 뽕잎발효차의 여러 추출물의 항산화성 및 in vitro에서의 항암활성을 비교분석 하였다. 뽕잎차 및 뽕잎발효차의 각 추출물에 있어 항산화 효과를 조사한 결과 각 추출물의 농도와 비례하여 전자공여활성이 증가하였고 대체로 뽕잎발효차 추출물이 뽕잎차의 추출물보다 전자공여활성이 더 높은 것으로 나타났으며, 각 추출물의 종류 중 에탄올 추출물의 전자공여능이 가장 높은 것으로 분석되었다. SOD 유사활성도를 조사한 결과 각 추출물의 농도와 비례하여 SOD 유사활성도는 증가하는 경향이었고, 추출물중 에탄올 추출물군의 활성도가 가장 높았으며 두 시료의 SOD 유사활성도는 비슷하였다. 각 pH별 아질산염 분해 작용을 분석한 결과 pH 1.2에서 아질산염 분해 작용이 가장 컸으며, 추출물 군 중에서 에탄올 추출물 군이 아질산염 소거능이 가장 높았다. 뽕잎차 및 뽕잎발효차 각 추출물의 in vitro 상에서 항암효과를 분석한 결과 HeLa cell과 MCF-7 cell 모두 뽕잎발효차가 뽕잎차보다 암세포 증식 억제율이 더 높았다. 추출물 군에서는 에탄올 추출물군이 암세포 성장을 가장 많이 억제하였고 MCF-7 cell이 HeLa cell에서 보다 더 효과적인 것으로 나타났다. 따라서 본 연구의 결과를 종합해 보면 식용식물로서 뿐만 아니라 약용으로도 가치가 있는 뽕잎에 생균제를 이용하여 개발한 뽕잎발효차를 뽕잎차와 비교하였을 때 항산화성, in vitro에서의 항암활성을 검증한 결과 생균제를 이용한 뽕잎발효차가 뽕잎차보다 우수한 것으로 나타났으며 뽕잎발효차 추출물의 기능성이 더 우수한 것은 발효를 통해 생리활성 물질이 생성된 것이 원인으로 사료되며 이 점에 있어 구체적인 연구가 필요하다고 판단된다. 이러한 점을 보완하여 제품개발에 응용하고 대중적인 면을 좀 더 개선한다면 새로운 기능성소재 및 제품이 될 것 이라 사료된다.

Geosynchronous Magnetic Field Response to Solar Wind Dynamic Pressure

  • Park, Jong-Sun;Kim, Khan-Hyuk;Lee, Dong-Hun;Lee, En-Sang;Jin, Ho
    • Journal of Astronomy and Space Sciences
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    • 제28권1호
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    • pp.27-36
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    • 2011
  • The present study examines the morning-afternoon asymmetry of the geosynchronous magnetic field strength on the dayside (magnetic local time [MLT] = 06:00~18:00) using observations by the Geostationary Operational Environmental Satellites (GOES) over a period of 9 years from February 1998 to January 2007. During geomagnetically quiet time (Kp < 3), we observed that a peak of the magnetic field strength is skewed toward the earlier local times (11:07~11:37 MLT) with respect to local noon and that the geosynchronous field strength is larger in the morning sector than in the afternoon sector. That is, there is the morning-afternoon asymmetry of the geosynchronous magnetic field strength. Using solar wind data, it is confirmed that the morning-afternoon asymmetry is not associated with the aberration effect due to the orbital motion of the Earth about the Sun. We found that the peak location of the magnetic field strength is shifted toward the earlier local times as the ratio of the magnetic field strength at MLT = 18 (B-dusk) to the magnetic field strength at MLT = 06 (B-dawn) is decreasing. It is also found that the dawn-dusk magnetic field median ratio, B-dusk/B-dawn, is decreasing as the solar wind dynamic pressure is increasing. The morning-afternoon asymmetry of the magnetic field strength appears in Tsyganenko geomagnetic field model (TS-04 model) when the partial ring current is included in TS-04 model. Unlike our observations, however, TS-04 model shows that the peak location of the magnetic field strength is shifted toward local noon as the solar wind dynamic pressure grows in magnitude. This may be due to that the symmetric magnetic field associated with the magnetopause current, strongly affected by the solar wind dynamic pressure, increases. However, the partial ring current is not affected as much as the magnetopause current by the solar wind dynamic pressure in TS-04 model. Thus, our observations suggest that the contribution of the partial ring current at geosynchronous orbit is much larger than that expected from TS-04 model as the solar wind dynamic pressure increases.

CNN-based Fast Split Mode Decision Algorithm for Versatile Video Coding (VVC) Inter Prediction

  • Yeo, Woon-Ha;Kim, Byung-Gyu
    • Journal of Multimedia Information System
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    • 제8권3호
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    • pp.147-158
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    • 2021
  • Versatile Video Coding (VVC) is the latest video coding standard developed by Joint Video Exploration Team (JVET). In VVC, the quadtree plus multi-type tree (QT+MTT) structure of coding unit (CU) partition is adopted, and its computational complexity is considerably high due to the brute-force search for recursive rate-distortion (RD) optimization. In this paper, we aim to reduce the time complexity of inter-picture prediction mode since the inter prediction accounts for a large portion of the total encoding time. The problem can be defined as classifying the split mode of each CU. To classify the split mode effectively, a novel convolutional neural network (CNN) called multi-level tree (MLT-CNN) architecture is introduced. For boosting classification performance, we utilize additional information including inter-picture information while training the CNN. The overall algorithm including the MLT-CNN inference process is implemented on VVC Test Model (VTM) 11.0. The CUs of size 128×128 can be the inputs of the CNN. The sequences are encoded at the random access (RA) configuration with five QP values {22, 27, 32, 37, 42}. The experimental results show that the proposed algorithm can reduce the computational complexity by 11.53% on average, and 26.14% for the maximum with an average 1.01% of the increase in Bjøntegaard delta bit rate (BDBR). Especially, the proposed method shows higher performance on the sequences of the A and B classes, reducing 9.81%~26.14% of encoding time with 0.95%~3.28% of the BDBR increase.

Storm-Time Behaviour of Meso-Scale Field-Aligned Currents: Case Study with Three Geomagnetic Storm Events

  • Awuor, Adero Ochieng;Baki, Paul;Olwendo, Joseph;Kotze, Pieter
    • Journal of Astronomy and Space Sciences
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    • 제36권3호
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    • pp.133-147
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    • 2019
  • Challenging Minisatellite Payload (CHAMP) satellite magnetic data are used to investigate the latitudinal variation of the storm-time meso-scale field-aligned currents by defining a new metric called the FAC range. Three major geomagnetic storm events are considered. Alongside SymH, the possible contributions from solar wind dynamic pressure and interplanetary magnetic field (IMF) $B_Z$ are also investigated. The results show that the new metric predicts the latitudinal variation of FACs better than previous studies. As expected, the equatorward expansion and poleward retreat are observed during the storm main phase and recovery phase respectively. The equatorward shift is prominent on the northern duskside, at ${\sim}58^{\circ}$ coinciding with the minimum SymH and dayside at ${\sim}59^{\circ}$ compared to dawnside and nightside respectively. The latitudinal shift of FAC range is better correlated to IMF $B_Z$ in northern hemisphere dusk-dawn magnetic local time (MLT) sectors than in southern hemisphere. The FAC range latitudinal shifts responds better to dynamic pressure in the duskside northern hemisphere and dawnside southern hemisphere than in southern hemisphere dusk sector and northern hemisphere dawn sector respectively. FAC range exhibits a good correlation with dynamic pressure in the dayside (nightside) southern (northern) hemispheres depicting possible electrodynamic similarity at day-night MLT sectors in the opposite hemispheres.

굽힘 하중을 받는 평직물 CFRP 직교 격자 쉘의 점진적 손상 해석 (Progressive Damage Analysis of Plain Weave Fabric CFRP Orthogonal Grid Shell Under Bending Load)

  • 임성준;백상민;김민성;박민영;박찬익
    • 한국항공우주학회지
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    • 제47권4호
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    • pp.256-265
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    • 2019
  • 본 논문에서는 평직물 CFRP로 제작한 직교 격자 쉘의 굽힘 하중에 의한 점진적 손상 연구를 수행하였다. 직교 격자는 복합재 바닥면과 함께 경화하여 제작하였다. 굽힘을 받는 직교 격자 쉘의 점진적 손상 해석은 Hashin-Rotem 파손 기준과 Matzenmiller-Lubliner-Taylor (MLT) 모델으로 비선형 유한요소법을 이용하여 수행하였다. 또한, 직교 격자 쉘에 대한 3점 굽힘 시험을 수행하였으며, 시험 결과와 해석 결과를 비교하였다. 변형률과 변위에 대한 시험과 해석 결과는 유사하게 나타났다. 손상 영역은 점진적 손상 해석으로 예측하였으며, 육안 검사와 초음파 비파괴 검사를 통해 측정한 결과와 비교하였다.

Empirical Modeling of the Global Distribution of Magnetosonic Waves with Ambient Plasma Environment using Van Allen Probes

  • Kim, Kyung-Chan
    • Journal of Astronomy and Space Sciences
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    • 제39권1호
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    • pp.11-22
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    • 2022
  • It is suggested that magnetosonic waves (also known as equatorial noise) can scatter radiation belt electrons in the Earth's magnetosphere. Therefore, it is important to understand the global distribution of these waves between the proton cyclotron frequency and the lower hybrid resonance frequency. In this study, we developed an empirical model for estimating the global distribution of magnetosonic wave amplitudes and wave normal angles. The model is based on the entire mission period (approximately 2012-2019) of observations of Van Allen Probes A and B as a function of the distance from the Earth (denoted by L*), magnetic local time (MLT), magnetic latitude (λ), and geomagnetic activity (denoted by the Kp index). In previous studies the wave distribution inside and outside the plasmasphere were separately investigated and modeled. Our model, on the other hand, identifies the wave distribution along with the ambient plasma environment-defined by the ratio of the plasma frequency (fpe) to the electron cyclotron frequency (fce)-without separately determining the wave distribution according to the plasmapause location. The model results show that, as Kp increases, the dayside wave amplitude in the equatorial region intensifies. It thereby propagates the intense region towards the wider MLT and inward to L* < 4. In contrast, the fpe/fce ratio decreases with increasing Kp for all regions. Nevertheless, the decreasing aspect differs between regions above and below L* = 4. This finding implies that the particle energy and pitch angle that magnetosonic waves can effectively scatter vary depending on the locations and geomagnetic activity. Our model agrees with the statistically observed wave distribution and ambient plasma environment with a coefficient of determination of > 0.9. The model is valid in all MLTs, 2 ≤ L* < 6, |λ| < 20°, and Kp ≤ 6.

Observations of the Aurora by Visible All-Sky Camera at Jang Bogo Station, Antarctica

  • Jee, Geonhwa;Ham, Young-Bae;Choi, Yoonseung;Kim, Eunsol;Lee, Changsup;Kwon, Hyuckjin;Trondsen, Trond S.;Kim, Ji Eun;Kim, Jeong-Han
    • Journal of Astronomy and Space Sciences
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    • 제38권4호
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    • pp.203-215
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    • 2021
  • The auroral observation has been started at Jang Bogo Station (JBS), Antarctica by using a visible All-sky camera (v-ASC) in 2018 to routinely monitor the aurora in association with the simultaneous observations of the ionosphere, thermosphere and magnetosphere at the station. In this article, the auroral observations are introduced with the analysis procedure to recognize the aurora from the v-ASC image data and to compute the auroral occurrences and the initial results on their spatial and temporal distributions are presented. The auroral occurrences are mostly confined to the northern horizon in the evening sector and extend to the zenith from the northwest to cover almost the entire sky disk over JBS at around 08 MLT (magnetic local time; 03 LT) and then retract to the northeast in the morning sector. At near the magnetic local noon, the occurrences are horizontally distributed in the northern sky disk, which shows the auroral occurrences in the cusp region. The results of the auroral occurrences indicate that JBS is located most of the time in the polar cap near the poleward boundary of the auroral oval in the nightside and approaches closer to the oval in the morning sector. At around 08 MLT (03 LT), JBS is located within the auroral oval and then moves away from it, finally being located in the cusp region at the magnetic local noon, which indicates that the location of JBS turns out to be ideal to investigate the variabilities of the poleward boundary of the auroral oval from long-term observations of the auroral occurrences. The future plan for the ground auroral observations near JBS is presented.

지자기교란시 극전리층의 전자기적인 특성 (THE ELECTROMAGNETIC CHARACTERISTICS OF THE POLAR IONOSPHERE DURING A MODERATELY DISTURBED PERIOD)

  • 안병호
    • Journal of Astronomy and Space Sciences
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    • 제12권2호
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    • pp.216-233
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    • 1995
  • Kamide et al.(1981)이 개발한 지자기기록 연전방법인 KRM 방법과 Ahn et al.(1995)이 개발한 전기전도도모델을 이용하여 지자기활동이 중간정도로 교란된 기간동안의 극전리층의 전기전도도, 전위, 수평전류, 연자기력선전류, Joule 열 발생, 오로라입자에 의한 에너지유입 등의 분포 및 하강오로라입자의 에너지스펙트럼상의 특성을 조사하였다. 지상지자기자료는 단일 자력계망(Alsaka meridian chain)에서 장기간 (1978년 3월 9일부터 4월 27일까지)에 걸쳐 얻어진 자료이므로 극전리층의 평균적인 전자기상태를 보여줄 것으로 기대되낟. 본연구에서 얻어진 몇가지 결론은 다음과 같다. (1) 전위분포는 소위 두개의 대류 cell이라 불리우는 형태를 나타내며 아침영역의 양의 전위 cell이 저녁영역의 음의 전위 cell로 깊숙히 진입된 모습을 보이고 있다. (2) 이 기간동안 오로라제트전류대가 잘 발달되어 있으며 DP-1 및 DP-2 전류계가 확인되었다. 아침영역의 서향제트전류대의 극쪽영역은 전기장이 전기전도도보다 전류의 밀도를 증가시키는데 더 중요한 구실을 하는 반면 적도쪽은 전기전도도가 상대적으로 중요한 역할을 담당하고 있다. (3) 전지구적인 규모의 연자기력선전류의 분포는 Iijima & Potemra(1976)가 구한 통계적인 분포와 유사했다. 그러나 이미 지적된 바(Kamide 1988)와 같이 영역 1의 전류밀도가 영역 2보다 현저하게 높았다. (4) Joule 열발생은 섬처럼 격리된 영역에 집중되어 나타났다. 하나는 서향제트전류대의 극쪽사면을 따라 나타나고 다른 하나는 오후영역의 동향전류대를 따라 나타났다. (5) 하강오로라입자의 최대 평균 에너지는 아침시간대(07~08 MLT)에 나타나는 반면 최대에너지유입은 02 MLT 시간대에 관측되었다. 그래서 지자기활동이 증가할 때 수반되는 오로라밝기의 증가와 전기전도도의 강화는 하강전자의 평균에너지의 증가보다는 에너지속의 증가와 더 밀접한 관계가 있는 것 같다.

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Prediction model for whistler chorus waves responsible for energetic electron acceleration and scattering

  • Kim, Jin-Hee;Lee, Dae-Young;Cho, Jung-Hee;Shin, Dae-Kyu
    • 천문학회보
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    • 제38권2호
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    • pp.94.1-94.1
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    • 2013
  • Whistler mode chorus waves, which are observed outside the plasmasphere of the Earth's magnetosphere, play a major role in accelerating and scattering energetic electrons in the radiation belts. In this study we developed a predicting scheme of the global distribution of chorus by using the Time History of Events and Macroscale Interactions during Substorms (THEMIS) satellite data. First, we determined global spatial distributions of chorus activity, and identified fit functions that best represent chorus intensities in specific L-MLT zones. Second, we determined the specific dependence of average chorus intensity on preceding solar wind conditions (e.g., solar wind speed, IMF Bz, energy coupling degree) as well as preceding geomagnetic states (as represented by AE, for example). Finally, we combined these two results to develop the predicting functions for the global distribution and intensity of chorus. Implementing these results in the radiation belt models should improve the local acceleration effect by chorus waves.

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