• 제목/요약/키워드: Depth measurement

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표면 모델링을 통한 깊이 영상 내 측정 실패 화소 보정 방법 (Correction Method for Measurement Failure Pixels in Depth Picture using Surface Modeling)

  • 이동석;권순각
    • 한국산업정보학회논문지
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    • 제24권5호
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    • pp.1-8
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    • 2019
  • 본 논문에서는 깊이 영상에서 깊이 카메라의 일시적인 오류로 인해 측정이 되지 않은 깊이 화소의 값을 보정하는 방법을 제안한다. 깊이 영상의 한 블록 내에서 측정이 정상적으로 된 화소의 좌표와 깊이 값을 이용하여, 해당 블록의 깊이 값과 제일 오차가 적은 평면과 곡면을 모델링한다. 그 후 각각의 모델링된 표면을 통해 추정된 깊이 값과 원래 측정된 깊이 값을 비교하여 오차를 계산한다. 그 후 오차가 제일 작게 계산된 표면을 선택한 후, 측정에 실패한 깊이 화소를 선택된 모델링 표면을 통해 깊이 값을 추정함으로써 보정한다. 모의실험 결과 제안된 방법을 통한 보정방법은 $5{\times}5$ 영역의 중간 값을 이용한 보정방법에 비해 보정 성능이 평균 20% 개선되었음을 확인하였다.

3-Dimensional Numerical Analysis of Deep Depletion Buried Channel MOSFETs and CCDs

  • Kim Man-Ho
    • Journal of Electrical Engineering and Technology
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    • 제1권3호
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    • pp.396-405
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    • 2006
  • The visual analysis of buried channel (Be) devices such as buried channel MOSFETs and CCDs (Charge Coupled Devices) is investigated to give better understanding and insight for their electrical behaviours using a 3-dimensional (3-D) numerical simulation. This paper clearly demonstrates the capability of the numerical simulation of 'EVEREST' for characterising the analysis of a depletion mode MOSFET and BC CCD, which is a simulation software package of the semiconductor device. The inverse threshold and punch-through voltages obtained from the simulations showed an excellent agreement with those from the measurement involving errors of within approximately 1.8% and 6%, respectively, leading to the channel implanted doping profile of only approximately $4{\sim}5%$ error. For simulation of a buried channel CCD an advanced adaptive discretising technique was used to provide more accurate analysis for the potential barrier height between two channels and depletion depth of a deep depletion CCD, thereby reducing the CPU running time and computer storage requirements. The simulated result for the depletion depth also showed good agreement with the measurement. Thus, the results obtained from this simulation can be employed as the input data of a circuit simulator.

수심적분법에 의한 유사량 추정연구 (A Study on Estimation by Depth Integrating Method of Sediment Discharge)

  • 서승덕;김활곤;우효섭
    • 한국농공학회지
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    • 제38권1호
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    • pp.90-97
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    • 1996
  • In Korea, total sediment discharge of a river has been estimated simply by using certain sediment transport formulas including, among others, Einstein's formula. Those formular, however, are known not to be reliable enough for the result calculated by them to be used directly to river planning and management. Therefore, the study used the Modified Einstein Procedure to the estimation of total sediment discharge, because this method is reliable estimated by measurement. Here, measurement of sediment discharge used depth integrating method. The major results obtained from the study for estimation by depth integrating method of sediment discharge in Naeseong stream are as follow; 1 The sedeiment characteristics of Naeseong stream are; The distribution of sediment grain size shows that silt and clay are 55% and sand is 45%. and the bed load sediment grain size is constituted that sand contained with the grain size from O.062mm to 2.0mm is 80% 2. The sediment rating formulas derived from the regression analysis between the sediment discharge and flow discharge are; Seogpo-Gyo : Qs=$0.017 \times 10^{-4} Q^{2.352}$, where discharge is l0cms $0.074 \times 10^{-4} Q^{2.066}$, where discharge is l0cms

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변전소 접지설계를 위한 대지고유저항의 측정과 해석 (Measurement and Analysis of Earth Resistivity for the Substation Grounding Design)

  • 한풍;김재이;최종기;정길조;김정부
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1997년도 하계학술대회 논문집 D
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    • pp.807-812
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    • 1997
  • For an equivalent uniform soil model to multiple-layered soil structure, ground depth, which is used in the calculation of equivalent resistivity, should be varied according to the size of grounding area. In case of 150 kV substation grounding design, 15 m of ground depth has been used and 25 m for 345 kV, But applying these ground depths can lead to errors in grounding resistance calculation, and these errors are coming from the poor representation of those depths to real soil resistivities. In this paper, the soil resistivity measurement techniques by Wenner method and grounding resistance calculation results by computer simulation were presented. Case studies contain the area from 3,000 to $30,000\;m^2$ and measuring space from of m to $100{\sim}250\;m$, Based of the computation results, 50 m, 60 m and 80 m of ground depth for less than 30, 40 and 70 m of equivalent hemispherical radius were proposed respectively.

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Complete and Incomplete Observability Analysis by Optimal PMU Placement Techniques of a Network

  • Krishna, K. Bala;Rosalina, K. Mercy;Ramaraj, N.
    • Journal of Electrical Engineering and Technology
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    • 제13권5호
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    • pp.1814-1820
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    • 2018
  • State estimation of power systems has become vital in recent days of power operation and control. SCADA and EMS are intended for the state estimation and to communicate and monitor the systems which are operated at specified time. Although various methods are used we can achieve the better results by using PMU technique. On placing the PMU, operating time is reduced and making the performance reliable. In this paper, PMU placement is done in two ways. Those are 'optimal technique with pruning operation' and 'depth of unobservability' considering incomplete and complete observability of a network. By Depth of Unobservability Number of PMUs are reduced to attain Observability of the network. Proposed methods are tested on IEEE 14, 30, 57, SR-system and Sub systems (1, 2) with bus size of 270 and 444 buses. Along with achieving complete observability analysis, single PMU loss condition is also achieved.

진동신호 분석을 통한 DPRMs의 성능평가 (Evaluation of Performance of a DPRMs by the Vibration Signal Analysis.)

  • 최영삼;신창호;정진태;한송수;이상헌;이계영
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.788-792
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    • 2004
  • In this study, the performance of the DPRMs is evaluated and the measurement precision for the pile driving is presented. The DPRMs is a visual-measurement system for the pile rebound and the penetration movement using a high speed line-scan camera. But the measurement errors of the DPRMs are caused by the strong impact for the pile driving. Therefore, the DPRMs should guarantee its measurement values for the pile driving. For this reason, the performance of the DPRMs by the vibration signal analysis is studied. It is found from this study that the measurement values of the DPRMs are reliable.

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마이크로 레이저 평면빔을 이용한 마이크로채널 내에서의 Micro-LIF 측정 (Micro-LIF Measurement in a Micro-channel Using an Micro Laser Light Sheet)

  • 윤상열;김재민;김수헌;김경천
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1540-1545
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    • 2004
  • Measurement of concentration fields in a micro-channel is the crucial technology in the area of Lab-on-a-chip to be used for various bio-chemical applications. It is wel-known that the only possible way to measure the concentration field in the micro-channel is using micro-LIF(Laser Induced Fluorescence) method. However, an accurate concentration field at a given cross plane in a micro-channel has not been made so far due to the limit of light illumination. The present study demonstrates a novel method to provide an ultra thin laser sheet beam having 5 microns thickness by a micro focus laser line generator. Nile Blue A was used as fluorescent dye for LIF measurement. The laser sheet beam illuminates an exact plane of concentration measurement in the micro-channel to increase the signal to noise ratio and reduce the depth uncertainty considerably.

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Point Cloud Measurement Using Improved Variance Focus Measure Operator

  • Yeni Li;Liang Hou;Yun Chen;Shaoqi Huang
    • Current Optics and Photonics
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    • 제8권2호
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    • pp.170-182
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    • 2024
  • The dimensional accuracy and consistency of a dual oil circuit centrifugal fuel nozzle are important for fuel distribution and combustion efficiency in an engine combustion chamber. A point cloud measurement method was proposed to solve the geometric accuracy detection problem for the fuel nozzle. An improved variance focus measure operator was used to extract the depth point cloud. Compared with other traditional sharpness evaluation functions, the improved operator can generate the best evaluation curve, and has the least noise and the shortest calculation time. The experimental results of point cloud slicing measurement show that the best window size is 24 × 24 pixels. In the height measurement experiment of the standard sample block, the relative error is 2.32%, and in the fuel nozzle cone angle measurement experiment, the relative error is 2.46%, which can meet the high precision requirements of a dual oil circuit centrifugal fuel nozzle.

ML-6M선형 가속기에서의 BEAM 특성에 대한 고찰

  • 문언철;윤병운;오양환
    • 대한방사선치료학회지
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    • 제5권1호
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    • pp.115-119
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    • 1992
  • The beam characteristics and dosimetric measurements of the 6MV X-ray and 6MeV electron beam from a ML-6M linear accelerator are examined. The Percent Depth Dose(PDD) table and the tissue Maximum Ratio(TMR) table are taken from measurement as a function of the field size and the depth. The calculated TMR table from PDD table is compared with those from measurement. Other beam characteristics such as output factor, beam profile(including flatness, symmetry and penumbra), wedge, and the variation of Dmax are presented. All of these dosimetric measurements sufficiently characterized the beam to permit safe clinical use.

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사이버 환경에서의 효과적인 경영 교육에 관한 탐색적 연구 (Effective Management Education in the Cyber Space: An Exploratory Investigation)

  • 박병진;염지환
    • Journal of Information Technology Applications and Management
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    • 제13권3호
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    • pp.89-105
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    • 2006
  • Information revolution shifted the meaning of education from traditional face-to-face education to technology integrated virtual one, namely cyber education. A new way of education, however, has not constituted its methodological standards either performance measurement scheme. The study probes the critical factors that influence students' achievement and satisfaction especially in the cyber education environment. Using hierarchical regression, important factors for students' achievement and satisfaction in the management education environment are presented. The results indicate that students' individual characteristics are relatively less influential for cyber education success. Rather, institutional supports including provision of in-depth interaction among students and with the instructor are more critical. We can infer that cyber education essentially requires three factors: in-depth interactions with instructor collaborative environment among peer students technical support from the institution.

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