• Title/Summary/Keyword: Angle Measurement

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레이저 슬릿 빔의 경사각과 카메라 자세 추정 알고리듬을 이용한 벽면결함 길이측정 (Defects Length Measurement Using an Estimation Agorithm of the Camera Orientation and an Inclination Angle of a Laser Slit Beam)

  • 김영환;윤지섭;강이석
    • 제어로봇시스템학회논문지
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    • 제8권1호
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    • pp.37-45
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    • 2002
  • A method of measuring the length of defects on the wall and restructuring the defect image is proposed based on the estimation algorithm of a camera orientation, which uses the declination angle of a laser slit beam. The estimation algorithm of the horizontally inclined angle of CCD camera adopts a 3-dimensional coordinate transformation of the image plane where both the laser beam and the original image of the defects exist. The estimation equation is obtained by using the information of the beam projected on the wall and the parameters of this equation are experimentally obtained. With this algorithm, the original image of the defect can be reconstructed as an image normal to the wall. From the result of a series of experiments, the measuring accuracy of the defect is measured within 0.5% error bound of real defect size under 30 degree of the horizontally inclined angle. The proposed algorithm provides the method of reconstructing the image taken at any arbitrary horizontally inclined angle as the image normal as the wall and thus, it enables the accurate measurement of the defect lengths by using a single camera and a laser slit beam.

무지 외반증 각변형에 대한 디지털영상의 전산화 계측: 100%와 150% 확대영상에서의 계측비교 (Computerized Measurement on Angular Parameters for Hallux Valgus: Comparison of 100% and 150% Magnified Digital Radiography)

  • 성일훈;이두연;성창호;서우영
    • 대한족부족관절학회지
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    • 제16권1호
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    • pp.53-57
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    • 2012
  • Purpose: To study computerized measurements of angular parameters on 100% and 150% resized digital radiography of hallux valgus deformity Materials and Methods: 30 digital radiography of standing foot anteroposterior view of hallux valgus patients were included. Two observers(A, B) independently measured hallux valgus angle (HVA), 1-2 intermetatarsal angle (IMA), and distal metatarsal articular angle (DMAA) in two times on both 100%-size and 150% magnified images respectively, using computerized measurement software tools. The results were interpreted with the statistical software program, Statistical Analysis System, version 9.2. Results: In repeated measurements of each observer, measurements on 150% magnified image showed no differences of all three parameters and with 100%-size image, there were differences of HVA (observer A) and 1-2 IMA (observer B) (p>0.05). When testing interobserver reliability, both observers showed differences in measurement of HVA and DMAA (p<0.05), but no differences in measurement of 1-2 IMA in both images. Within the 95% confidence interval, limits of error of measurements between two observers on HVA, IMA and DMAA were $2.7^{\circ}$ $1.4^{\circ}$ and $5.0^{\circ}$ respectively in 100%-size images, and $2.6^{\circ}$, $1.6^{\circ}$ and $4.7^{\circ}$ respectively in 150% magnified images. Conclusion: In computerized measurements for angular parameters of hallux valgus with digital radiography, 150% magnified images showed intraobserver reliability. Both 100% and 150% magnified images failed to show interobserver reliability. Measurement of 1-2 IMA in both 100% and 150% images showed less interobserver error.

Kyphotic Angle Measurement Accuracy for Vertebral Osteoporotic Compression Fracture; Reliable Method for Kyphotic Angle Measurement

  • Hong, Jae-Taek;Lee, Sang-Won;Son, Byung-Chul;Sung, Jae-Hoon;Park, Choon-Keun;Kim, Moon-Chan
    • Journal of Korean Neurosurgical Society
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    • 제39권4호
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    • pp.256-259
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    • 2006
  • Objective : Having a reliable and reproducible measurement technique to measure the sagittal contour in vertebral fractures is paramount to clinical decision making. This study is designed to determine the most reliable measurement technique in osteoporotic vertebral compression fracture. Methods : Fifteen lateral radiographs of thoracic and lumbar fractures were selected and measured on two separate occasions by three spine surgeons using six different measurement techniques [Centroid, Harrison Posterior Tangent Methods and 4 different types of modified Cobb method]. The radiograph quality was assessed and the center beam location was determined. Statistical analysis including ANOVA for repeated measures was carried out using the SAS software [v 8.0]. Results : The inter and intraobserver variance of the Cobb method 4 and Harrison posterior tangent method were significantly lower than the other four methods. The intraobserver correlation coefficients were the most consistent using the Cobb method 4 [0.982]. which was followed by the Harrison posterior tangent [0.953] and Cobb methods 1 [0.874]. The intraobserver agreement [% of repeated measures within 5 degrees of the original measurement] ranged from 42% to 98% for each technique for all three observers, with the Cobb method 4 showing the best agreement [97.8%] followed by the Harrison posterior tangent method [937%]. Conclusion : The Cobb method-4 and Harrison posterior tangent methods, when applied to measuring the kyphosis, are reliable and have a similar small error range. The Cobb method 4 shows the best overall reliability. However, the centroid method and Cobb method using a fractured endplate do not produce an accurate result due to inter and intraobserver differences in determining the baseline.

지상기반 라이다의 측정 오차에 영향을 미치는 요인 분석 (Analysis of Factors Influencing the Measurement Error of Ground-based LiDAR)

  • 강동범;허종철;고경남
    • 한국태양에너지학회 논문집
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    • 제37권6호
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    • pp.25-37
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    • 2017
  • A study on factors influencing measurement error of Ground-based LiDAR(Light Detection And Ranging) system was conducted in Kimnyeong wind turbine test site on Jeju Island. Three properties of wind including inclined angle, turbulence intensity and power law exponent were taken into account as factors influencing the measurement error of Ground-based LiDAR. In order to calculate LiDAR measurements error, 2.5-month wind speed data collected from LiDAR (WindCube v2) were compared with concurrent data from the anemometer on a nearby 120m-high meteorological mast. In addition, data filtering was performed and its filtering criteria was based on the findings at previous researches. As a result, at 100m above ground level, absolute LiDAR error rate with absolute inclined angle showed 4.58~13.40% and 0.77 of the coefficients of determination, $R^2$. That with turbulence intensity showed 3.58~23.94% and 0.93 of $R^2$ while that with power law exponent showed 4.71~9.53% and 0.41 of $R^2$. Therefore, it was confirmed that the LiDAR measurement error was highly affected by inclined angle and turbulence intensity, while that did not much depend on power law exponent.

Tailored Collar 패턴 제도법에 따른 시각적 이미지 연구 (A Study on the Visual Image by Pattern Drafting of Tailored Collar)

  • 이보나;서미아
    • 복식문화연구
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    • 제14권4호
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    • pp.609-624
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    • 2006
  • The purpose of this study is to give the guideline to the pattern designing by supplying various images of the transformed shape of tailored collar with the location and angle of gorge line and laying measurement of the tailored collar while designing the tailored collar. The results of this study are as follows : Images of the sample at the case of 1cm of laying measurement looks 'urban', 'light', 'sharp', 'young', 'fashionable' and 'narrow' than that at the case of 7cm. When the laying measurement increases, the image of the sample looks more 'classical' and 'boorish'. The image of the sample 'light', 'sensuous' and 'young' at the case of sample of which laying measurements of the collar was 3cm. Second, at the case of sample whose laying measurements of the collar was 5cm, it was shown that the low location of gorge line made the image of the sample 'soft' and 'short'. On the other hand the image of the sample looked 'hard', 'keen' and 'long' by the high location of gorge line. Third, at the case of sample of which laying measurements of the collar was 7cm, low location of gorge line made the image of the sample look short. However, normal location of gorge line made the image of the sample looked 'fashionable'. The images of the samples of which laying measurements of the collar were 3cm, 5cm and 7cm, respectively, had changed with the angle of gorge line. First, the high angle of gorge line made the image of the sample 'rigid' and 'keen' at the case of sample of which laying measurements of the collar was 3cm. The high angle of gorge line made the image of the sample looked 'boorish' and 'singular'.

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사진 영상을 이용한 머리척추각 자동 측정 프로그램 개발 (Development of an Automatic Measuring Program for the Craniovertebral Angle Using Photographic Image)

  • 예수영;김종순
    • PNF and Movement
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    • 제22권1호
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    • pp.1-11
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    • 2024
  • Purpose: The prevalent use of mobile devices may contribute to musculoskeletal disorders, such as forward head posture (FHP), among users. The measurement of the craniovertebral angle (CVA) using photographic images is frequently employed in assessing FHP. Although manual CVA measurement using photographic images is reliable in clinical settings, computer programs or mobile applications to support tele-physical therapy are not yet fully developed. Therefore, in the current study, we propose an automatic method for extracting CVA from photographic images of FHP subjects to facilitate tele-physical therapy. Methods: To develop the automatic CVA measuring computer program, photographic images were obtained from 10 FHP participants. The location information obtained from the markers attached to the tragus and the spinous process of the seventh cervical vertebra were used as coordinates. Using these coordinates, straight line 1 was generated by connecting the seventh spinous process of the cervical vertebra and the tragus, while straight line 2 was drawn parallel to the coordinate obtained from the seventh spinous process of the cervical vertebra. The arc tangent function was used to calculate the angle between the two straight lines. The automatic CVA measurement computer program utilizing photographic images was developed using MATLAB (ver. 2016b). Results: The results showed that the automatic CVA measurement computer program demonstrated stable repeatability and high accuracy. Conclusion: The proposed approach was able to automatically estimate the CVA using photographic images. The developed computer program can potentially be used for easier and more reliable clinical assessment of FHP.

버터플라이 밸브의 유량측정 불확도에 대한 영향 (Effect of a Butterfly Valve on the Uncertainty of Flow Rate Measurement)

  • 윤석호;이정호;유청환;박상진;정장환
    • 한국유체기계학회 논문집
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    • 제13권4호
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    • pp.18-24
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    • 2010
  • For testing large-capacity pumps, the accurate flow rate measurement is needed in the test loop. As a measuring method of flow rate, venturi tube is recommended due to its low pressure loss. However, upstream disturbance of loop component such as a valve has an effect upon the accuracy of flow rate measurement. For controlling flow rate in case of high flow rate and large-scale piping system, a butterfly-type valve is generally used due to its compactness. However, a butterfly valve disturbs downstream flow by generating turbulence, cavities, or abrupt pressure change. In this study, the effect of downstream disturbance of butterfly valve on the flow rate measurement using a venturi tube is investigated. Test loop consists of circulation pump, reservoir, butterfly valve, venturi tube, and reference flow meter. The test is conducted with regard to a different valve opening angle of butterfly valve. According to the valve opening angle, the uncertainty of flow rate measurement is investigated.

초음속 비행체의 소닉붐 측정과 도래각 추정 (Measurement and Arrival Direction Estimation of Supersonic Flight Sonic Boom)

  • 하재현;정석영;이영환;진현
    • 한국항공우주학회지
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    • 제49권3호
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    • pp.175-183
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    • 2021
  • 초음속 비행체에서 발생하는 소닉붐은 일반적인 환경소음과 달리 초저주파 영역을 포함한 충격음으로 전파된다. 본 논문에서는 배열 음향센서를 이용하여 소닉붐의 특징을 왜곡 없이 측정하기 위한 계측방법과 소닉붐의 전파방향을 추정하기 위한 도래각 추정 방법에 대해 연구하였다. 음향센서의 배치에 따른 도래각 추정성능을 이론적인 방법으로 제시하였고 모의실험에서 얻은 통계값을 이용하여 본 연구에서 제안하는 도래각 추정 방법의 성능을 검증하였다. 또한 실제 초음속 비행체에서 발생한 소닉붐을 제안한 방법으로 측정하였고 그 결과를 분석하였다. 본 연구에서 얻은 결과로 소닉붐 측정을 위한 시스템 구성, 도래각 추정 방법과 그 성능에 대한 직관적인 개념을 제공하였다.

수학 교육과정 국제 비교·분석 연구 - 한국, 싱가포르, 영국, 호주, 미국의 각 관련 내용 중심으로 (An International Comparison study in Mathematics Curriculum - Contents for Angle among the Korea, Singapore U.K., Australia and U.S.)

  • 최은;김서영;권오남
    • 한국수학교육학회지시리즈E:수학교육논문집
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    • 제33권3호
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    • pp.295-317
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    • 2019
  • 각 개념은 교육과정 전반에 걸쳐 나타나는 개념이며, 기하 단원에서 기본적인 개념이다. 각은 다면적인 성격을 갖고 있으며 이후 학습에 영향을 주므로 학생들이 다양한 각 개념을 이해하는 것이 필요하다. 본 연구에서는 싱가포르, 영국, 호주, 미국을 비교 대상국가로 정하여 교육과정에서 나타나는 각 관련 내용 요소와 학습시기를 전체적으로 살펴 본 뒤 각에 대한 관점과 각의 크기 측면을 상세하게 살펴보고 이를 바탕으로 우리나라 교육과정에 시사점을 주고자 한다. 분석 결과 우리나라를 제외한 4개국은 보각, 여각, 직선 위의 각, 한 점에서의 각, 각도 구하기를 교육과정에 명시하여 다루고 있으며, 특정 학년에서 집중적으로 각 관련 내용을 학습하는 우리나라에 비해 대부분의 국가가 여러 학년에 걸쳐 점진적으로 각 관련 내용을 다루고 있었다. 대부분의 국가가 각의 정의는 정적인 관점에서, 각의 크기는 동적인 관점에서 서술하고 있었으며, 동적인 관점을 초등학교에서 도입하는 다른 국가에 비해 우리나라는 비교적 늦은 중학교에서 동적인 관점이 처음으로 나타났다. 교육과정에서 다루는 각의 크기의 범위는 우리나라가 다른 국가보다 좁았다. 이를 통해 우리나라 교육과정에 각의 성질과 관련된 다양한 내용 요소를 어떻게 배치하고 전개해 나갈지 논의할 것, 각의 다면적인 성격을 고려하여 정적인 관점뿐만 아니라 동적인 관점을 모두 활용하여 각을 다룰 것, 회전량으로서 각의 크기를 도입하여 우각 및 $180^{\circ}$, $360^{\circ}$ 크기의 각을 학습할 것을 제안한다.

컴퓨터 영상을 이용한 오염방지 친수성능 측정 시스템 개발 (Development of Hydrophilic Performance Measurement System for Anti-Condensation Using Computer Image)

  • 안병태;조성호;최선;김은국;박상수;황헌
    • Journal of Biosystems Engineering
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    • 제35권4호
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    • pp.257-261
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    • 2010
  • Surface energy is the principal factor of anti-condensation. High surface energy appears hydrophilic itself and low surface energy represents hydrophobic itself. The contact angle is widely being used for measurement of surface energy of materials, evaluation of coating performances, measurement of wettability, and so on. However, the existing contact angle measuring system is so expensive for purchasing and complicated, so it takes a lot of time and money to use. This study was conducted to develop the algorithm for evaluating hydrophilic performance through measuring the contact angle of water droplet automatically, and fabricate relatively simple measuring system using a low-cost monochrome camera and image processing. A constant amount of water was firstly allocated on a slide by a micropipette, and then the image of water droplet was captured by monochrome digital camera and sent to a computer. The image was binarized and then reduced noises by labeling. Finally, the contact angle of water droplet was computed by using three points (left, right, and top coordinates), simple linear mathematics, and trigonometric function. The experimental results demonstrated the accuracy and reproducibility of the developed system showing less deviations and deviation ratio.