• 제목/요약/키워드: Noise Reflection

검색결과 290건 처리시간 0.027초

콘크리트 벽의 비파괴검사를 위한 초광대역 레이더의 2차원 FDTD 시뮬레이션에서 안테나 모델링의 영향 (Effects of Antenna Modeling in 2-D FDTD Simulation of an Ultra-Wide Band Radar for Nondestructive Testing of a Concrete Wall)

  • 주정명;홍진영;신상진;김동현;오이석
    • 한국전자파학회논문지
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    • 제24권1호
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    • pp.98-105
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    • 2013
  • 본 논문에서는 초광대역 벽 투과 레이더를 이용한 벽 내부 진단에 대한 유한차분 시간영역(finite-difference time-domain, FDTD) 시뮬레이션과 데이터 처리 기술에 대한 연구를 소개한다. 본 연구에서는 2차원 FDTD 기법을 이용하여 실제 측정과 유사한 조건으로 시뮬레이션을 수행하기 위해 우선 전파의 감쇄, 투과 특성, 해상도 등을 고려하여 0.3~7 GHz의 초광대역을 갖는 반대 극성 비발디 안테나(anti-podal vivaldi antenna)를 설계/제작하였다. 다음으로 제작된 안테나의 방사 패턴을 측정한 후 이것을 FDTD 시뮬레이션의 소스로 사용하여 콘크리트 벽 경계면과 벽 내부의 금속으로부터 반사된 데이터를 얻었다. 다음으로 이 데이터를 처리하고 레이더 영상을 생성하여 벽 내부를 관찰하였다. FDTD 시뮬레이션에서는 일반적으로 사용되고 있는 등방성 점 소스와 다항식으로 측정된 방사 패턴을 근사화하여 소스로 적용한 2가지 경우에 대해 비교하였으며, 그 결과, 안테나 패턴을 적용했을 경우 등방성 점 소스를 사용한 경우에 비해 최대 약 2.5 dB 높은 신호 대 잡음비를 얻을 수 있었다.

오목거울을 이용한 3차원 형상측정을 위한 모아레 영상 획득 방법 (Image Enhancement for 3D Shape Measurement Using Large Aperture Projection System)

  • 윤두현;김학일
    • 한국광학회지
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    • 제19권4호
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    • pp.327-333
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    • 2008
  • 일반적으로 NA(Numerical aperture)가 큰 렌즈를 사용하면 획득된 영상의 품질이 좋아진다. 오목거울은 NA가 크면서 직경이 크게 제작하는 비용이 저렴하다. 본 논문에서는3차원 형상 측정용 모아레 영상의 품질향상을 위해 NA가 큰 대구경 오목거울을 이용한 방법을 제안하고 구현하였다.오목거울은 빛을 반사하는 면이 오목한 거울로써, 가까운 거리에 있는 물체를 볼 때, 물체와 모양은 같고 크게 보이는 것이 특징이다. 보통의 경우, 작은 것을 크게 보거나 빛을 모으는데 이용한다. 오목거울의 집광 특징은 볼록거울과 방향만 다를 뿐 동일한 역할을 하고, 수 미터 직경의 대구경으로 제작하기 용이하며, 대구경이면서 $0.8{\sim}2$의 높은 NA를 갖는 오목거울을 구현하기 용이하다. 오목거울의 볼록 렌즈와 동일한 집광 특징을 이용하여 망원경 등의 반사경으로 많이 이용하고 있다. 3차원 영상획득 방법을 위해 필요한 장치는 광을 출사하는 광원,광원으로부터 출사된 광을 집광하기 위한 집광렌즈,집광렌즈를 통해 집광되어 입사되는 광을 투과시키는 격자,격자로부터의 출사 광을 평행광으로 출사하는 영사렌즈,영사렌즈의 평행광을 반사시켜 전량의 광을 측정대상물 쪽으로 출사하는 오목거울 그리고 측정 제품으로부터 반사된 반사광을 획득하는 CCD 카메라를 포함한다. 대구경 오목거울로 NA값을 변화시켜서 표면의 굴곡이 심한 납볼의 영상을 획득하여 품질향상 정도를 평가하였다. NA가 $0.15{\sim}0.8$까지 변화했을 때 영상 내 밝은 부분과 어두운 부분의 차이가 $46{\sim}1.33$배로 변화하여 NA를 높이면 영상의 품질이 향상됨을 알 수 있었다.

교사환경기준에 관한 연구 (A Study on Environmental Standards of School Building)

  • 홍석표;박영수
    • 한국학교ㆍ지역보건교육학회지
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    • 제1권1호
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    • pp.11-43
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    • 2000
  • The purpose of this study was, through analyzing the previous researches, to grasp the present status of environment of school building(ESB), research the sundry records of each element and, through comparative analysis of the standard of ESB in Korea, the United States, and Japan, select the normative standard of ESB, to clarify the point at issue presented in Regulation of Construction & facility Management for Elementary and and Secondary School in Korea, and to suggest an alternative preliminary standard of ESB. To carry out a research for this purpose, these were required: 1. to investigate the existing present status of ESB, 2. to make a comparative analysis of the standard of ESB in each country, 3. to suggest the normative standard of preliminary standard of ESB, 4. to analyze the controversial points of the standard of ESB in Korea, 5. to suggest an alternative preliminary standard of ESB. The conclusions were as follows: 1. Putting, through analyzing the previous researches, the existing present status of ESB together, it seemed that lighting environment, indoor air environment and noise environment were all in poor conditions. 2. In the result of a comparative analysis of the standard of ESB in Korea, Japan and the United States, in Korea the factors of each lighting and indoor air environment were not presented properly, in Japan, in lighting environment aspect, the standard on natural lighting and the factors on brightness were not presented., and in the USA the essential factors of each environment were throughly presented. In the comparison of the standards on each factor, Korea showed that the standard level presented was less properly prescribed than those of the USA and Japan but it also showed that the standard levels prescribed in the USA and in Japan were mostly similar to the standard levels in records investigated. 3. With the result of the normative standard selection on School Builiding environment factor of prescribed in this study, the controversial points of the standard of ESB in Korea were analyzed and the result was utilized to suggest new preliminary standard of ESB. 4. As the result of the analysis of the controversial points of the standard of ESB in Korea, it was found that the standard of ESB in Korea should be established on a basis of School Health Act and be concretely presented in School Health Regulation and School Health Rule. The factors of each environment was improperly presented in the existing standard of ESB in Korea. Moreover the standard of them was inferior to that of the records investigated and those of in the USA and in Japan and it also showed that the standard of it in Korea was improper to maintain Comfortable Learning Environment. 5. A suggested preliminary standard of ESB acquired through above study as follows: 1) In this study a new kind of preliminary standard of ESB is divided into lighting environment, indoor air environment, noise environment, odor environment and for above classification, reasonable factor and standard should be established and the controling way on each standard and countermeasures against it should be considered. 2) In lighting environment, the factors of natural lighting are divided into daylight rate, brightness, glare. In the standard on each factor, daylight rate should secure 5% of a mean daylight rate and 2% of a minimum daylight rate, brightness ratio of maximum illumination to minimum illumination should be under 10:1, and in glare there should not be an occurrence factor from a reflector outside of the classroom. And the factors of unnatural lighting are illumination, brightness, and glare. In the standard on each factor, illumination should be 750 lux or more, brightness ratio should be under 3 to 1, and glare should not occur. And Optimal reflection rate(%) of Colors and Facilities of Classroom which influences lighting environment should be considered. 3) In indoor air environment factors, thermal factors are divided into (1) room temperature, (2) relative humidity, (3) room air movement, (4) radiation heat, and harmful gases (5) CO, (6) $CO_2$ that are proceeded from using the heating fuel such as oval briquettes, firewood, charcoal being used in most of the classroom, and finally (7) dust. In the standard on each factor, the next are necessary; room temperature: $16^{\circ}C{\sim}26^{\circ}C$(summer : $E.T18.9{\sim}23.8^{\circ}C$, winter: $E.T16.7{\sim}21.7^{\circ}C$), relative humidity: $30{\sim}80%$, room air movement: under 0.5m/sec, radiation heat: under $5^{\circ}C$ gap between dry-bulb temperature and wet-bulb temperature, below 1000 ppm of ca and below 10ppm of $CO_2$, dust: below 0.10 $mg/m^3$ of Volume of dust in indoor air, and ventilation standard($CO_2$) for purification of indoor air : once/6 min.(about 7 times/40 min.) in an airtight classroom. 4) In the standard on noise environment, noise level should be under 40 dB(A) and the noise measuring way and the countermeasures against it should be considered. 5) In the standard on odor environment, odor level under Physical Method should be under 2 degrees, and the inspecting way and the countermeasures against it should be considered.

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판독용 모니터 정도관리 항목 및 시행기준안 개발 연구 (A Study on Quality Assurance(QA) Guideline for Diagnostic Monitor)

  • 손기경;성동욱;정해조;정재호;강희두;신진호;이순근;김용환
    • 대한디지털의료영상학회논문지
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    • 제9권1호
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    • pp.53-65
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    • 2007
  • PACS has been run at the Kyung Hee University Medical Center(KHMC) since 2001, and the installation and operation of PACS have contributed to automation and quantification of KHMC's medical environment During these five years our greatest concern is how to make our own guiding principle of diagnostic monitor QA which is adapted to international standards. In accordance with the terms of 'KHMC QA Guideline', 'AAPM TG18', 'SMPTE RP133', 'DICOM Part14', 'DIN V 6868-57', 'JESRA X-0093', 'JIS Z4752-2-5' and 'KCARE', concern about quality assurance of medical images are on the increase. With the investigation of acceptance testing and quality control of international standards for medical display devices, and data collection and analysis for recommended guideline, it is reported that acceptance testing(quality control), including geometrical distortion, display reflection, luminance response, luminance uniformity, display resolution, display noise, veiling glare and color chromaticity being adequate and effective to domestic hospital environments for medical display devices and assessment methods according to each performance. Accordingly, KHMC classified the checkpoint items by period, at the time of monitor setting, monthly, quarterly, half-yearly and annually. Periodic classification of checkpoint items for monitor QA makes a good guideline for image QA/QC and useful guideline for persistent good quality of monitor.

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가스 하이드레이트 부존층의 구조 파악을 위한 탄성파 전산처리 및 AVO 분석 (Seismic Pre-processing and AVO analysis for understanding the gas-hydrate structure)

  • 정부흥
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.634-637
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    • 2005
  • Multichannel seismic data acquired in Ulleung Basin of East Sea for gas hydrate exploration. The seismic sections of this area show strong BSR(bottom simulating reflections) associated with methane hydrate occurrence in deep marine sediments. Very limited information is available from deep sea drilling as the risk of heating and destabilizing the initial hydrate conditions during the processing of drilling is considerably high. Not so many advanced status of gas hydrate exploration in Korea, the most of information of gas hydrate characteristics and properties are inferred from seismic reflection data. In this study, The AVO analysis using the long offset seismic data acquired in Ulleung Basin used to explain the characteristics and structure of gas hydrate. It is used primarily P-wave velocity accessible from seismic data. To make a good quality of AVO analysis input data, seismic preprocessing including 'true gain correction', 'source signature deconvolution', twice velocity analysis and some kinds of multiple rejection and enhancing the signal to noise ratio processes is carried out very carefully. The results of AVO analysis, the eight kinds of AVO attributes are estimated basically and some others of AVO attributes are evaluated for interpretation of AVO analysis additionally. The impedance variation at the boundary of gas hydrate and free gas is estimated for investing the BSR characteristics and properties. The complex analysis is performed also to verifying the amplitude variation and phase shift occurrence at BSR. Type III AVO anomaly appearance at saturated free gas area is detected on BSR. It can be an important evidence of gas hydrate deposition upper the BSR.

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Detecting of Periodic Fasciculations of Avian Muscles Using Magnetic and Other Multimedia Devices

  • Nakajima, Isao;Tanaka, Sachie;Mitsuhashi, Kokuryo;Hata, Jun-ichi;Nakajima, Tomo
    • Journal of Multimedia Information System
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    • 제6권4호
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    • pp.293-302
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    • 2019
  • In the past, there was a theory that influenza wasn't transmitted directly from birds but was infected to humans via swains. Recently, molecular level research has progressed, and it was confirmed that the avian influenza virus can directly infected to human lung and intestinal epithelial cells. Three pandemicsin the past 100 years were also infected to humans directly from birds. In view of such scientific background, we are developing a method for screening sick birds by monitoring the physiological characteristics of birds in a contactless manner with sensors. Here, the movement of respiratory muscles and abdominal muscles under autonomic innervation was monitored using a magnet and Hall sensor sewn on the thoracic wall, and other multimedia devices. This paper presents and discusses the results of experiments involving continuous periodic noise discovered during flight experiments with a data logger mounted on a Japanese pheasant from 2012 to 2015. A brief summary is given as the below: 1. Magnet and Hall sensor sewn to the left and right chest walls, bipolar electrocardiograms between the thoracic walls, posterior thoracic air sac pressure, angular velocity sensors sewn on the back and hips, and optical reflection of LEDs (blue and green) from the skin of the hips allow observation of periodic vibrations(fasciculations) in the waves. No such analysis has been reported before. 2. These fasciculations are presumed to be derived from muscle to maintain and control air sac pressure. 3. Since each muscle fiber is spatially Gaussian distributed from the sympathetic nerve, the envelope is assumed to plot a Gaussian curve. 4. Since avian trunk muscles contract periodically at all time, we assume that the sympathetic nerve dominates in their control. 5. The technique of sewing a magnet to the thoracic wall and measuring the strength of the magnetic field with a Hall sensor can be applied to screen for early stage of avian influenza, with a sensor attached to the chicken enclosure.

NVIS 통신을 활용한 HF 도약지대 극복가능성 검증 (Verification of the Possibility for Overcoming HF Skip Zone through NVIS communications)

  • 이명노;유재영;이종명
    • 한국통신학회논문지
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    • 제36권5A호
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    • pp.529-535
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    • 2011
  • HF 통신은 별도의 중계 없이 근거리 및 장거리 통신이 가능한 방법으로 해외에서는 주/부 통신수단으로 활용되고 있으나, 국내에서는 도약지대 극복 문제와 전리층 변화에 따라 사용가능한 주파수가 변한다는 이유로 사용자 기피 현상이 심화된 상태였다. NVIS 통신은 일반적인 전리층 반사 통신에 비해 잡음이 적고 도약지대를 포함한 근거리내에서도 통신이 가능한 방법으로써, 이번 연구를 통해 HF 통신의 기존 단점들을 극복하고 HF 통신의 활성화를 위해 외국의 NVIS 통신방법에 대해서 실험을 통해 검증해 보았다. 본 논문에서는 NVIS 통신의 개념을 설명하고, 실제 국내의 HF 통신운용 현황을 확인하였다. 이를 바탕으로 NVIS 통신의 도약지대 극복가능성을 검증하였으며, 효율적인 HF 통신을 위한 예측프로그램의 적용가능성도 판단해보았다.

열형 적외선 센싱소자용 Mn-Ni-Co계 써미스터 박막 특성 평가 (Evaluations of Mn-Ni-Co type thermistor thin film for thermal infrared sensing element)

  • 전민석;최덕균
    • 한국결정성장학회지
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    • 제13권6호
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    • pp.297-303
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    • 2003
  • rf magnetron sputtering법을 이용하여 Mn-Ni-Co계 써미스터 박막을 증착하였다. $300^{\circ}C$$Ar/O_2$ = 10/0에서, cubic spinel 상형성이 이루어졌으며 공정가스에 산소 첨가 시, cubic spinel 상은 열처리를 통해서도 형성되지 않았다. 써미스터 박막은 Mn, Ni, Co 성분 외 다른 이종 성분은 포함되어 있지 않았다. 써미스터 박막에 대한 적외선 반사 특성을 분석으로 증착된 박막은 일정 각도로 입사되는 적외선에 대해 비교적 높은 반사율을 가짐을 관찰할 수 있었다. DI water : $HNO_3$: HCI=60 : 30 : 10 vo1%에서 써미스터 박막의 식각 속도는 약 63 nm/min였다. 박막 써미스터의 B상수는 약 3500 K였으며 TCR은 약 -3.95%/K였다 전압감도는 약 108.5 V/W였으며 NEP와 specific detectivity는 각각 $5.1\times 10^{-7}$ W/$Hz^{-1/2}$ $0.2\times 10^6$cm $Hz^{1/2}$/W였다.

이중 현미경 구조를 이용한 마이크로 렌즈 및 핀홀 어레이 기반 병렬 공초점 시스템 (A Parallel Mode Confocal System using a Micro-Lens and Pinhole Array in a Dual Microscope Configuration)

  • 배상우;김민영;고국원;고경철
    • 제어로봇시스템학회논문지
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    • 제19권11호
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    • pp.979-983
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    • 2013
  • The three-dimensional measurement method of confocal systems is a spot scanning method which has a high resolution and good illumination efficiency. However, conventional confocal systems had a weak point in that it has to perform XY axis scanning to achieve FOV (Field of View) vision through spot scanning. There are some methods to improve this problem involving the use of a galvano mirror [1], pin-hole array, etc. Therefore, in this paper we propose a method to improve a parallel mode confocal system using a micro-lens and pin-hole array in a dual microscope configuration. We made an area scan possible by using a combination MLA (Micro Lens Array) and pin-hole array, and used an objective lens to improve the light transmittance and signal-to-noise ratio. Additionally, we made it possible to change the objective lens so that it is possible to select a lens considering the reflection characteristic of the measuring object and proper magnification. We did an experiment using 5X, 2.3X objective lens, and did a calibration of height using a VLSI calibration target.

다수의 고유 공간을 이용한 주화 표면 품질 진단 (Inspection of Coin Surface Defects using Multiple Eigen Spaces)

  • 김재민;류호진
    • 한국콘텐츠학회논문지
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    • 제11권3호
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    • pp.18-25
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    • 2011
  • 현재 주화의 제조 공정에서는 주화의 표면 품질 진단을 사람이 눈으로 직접 확인하여 수행하고 있다. 본 논문은 컨베이어 벨트에 놓이어 이동하는 주화로부터 획득한 영상을 이용하여 주화 표면의 결함을 검출하는 영상처리 방법을 제시한다. 결함 검출 방법은 영상에서 주화 영역을 분할하고, 분할된 동전을 비교할 모델에 정렬하며, 정렬된 영상을 최적의 고유 영상 공간으로 투영, 투영 오차와 학습된 가변 임계값과 비교하여 결함 부위를 검출한다. 본 논문에서는 이러한 일련의 영상처리 과정 중에서 주화 표면 진단과 관련하여 특화된 새로운 방법을 제시한다. 주화의 정렬을 위하여 분할된 주화의 히스토그램을 사용한다. 이 방법은 2차원 영상의 정렬을 일차원 히스토그램의 정렬로 변환하는 것이다. 다음으로 정렬된 영상을 고유 영상공간에 투영시켜 주화 방향에 따른 휘도 변화를 보정한다. 이 방법은 소수의 고유 영상 벡터들로 구성된 고유 영상 공간을 여러 개 생성하고, 최적의 고유 영상 공간에 정렬된 영상을 투영하여 실시간 구현이 가능하게 한다.