• 제목/요약/키워드: Improvement of Measuring Accuracy

검색결과 142건 처리시간 0.024초

공리적 기법에 의한 품질 향상 방안 (Product's quality improvement plane of parts for Injection Molding using Axiomatic approach)

  • 배진우;박홍석
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.355-356
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    • 2006
  • This paper proposes an Molding error compensation method that improves accuracy with geometry information of injected parts using three-dimensional measuring instrument. a traditional mold design has been conducted by an experience-based trial and error, whereby generally the mold designer would decide the gate location and processing conditions. as a natural consequence, almost all creats inferior goods. It's just a process of trial and error and caught in a vicious circle. Due to this reason, this paper uses a three-dimensional measuring instrument, a commercial analysis package of injection molding(Moldflow, MPI) to analysis a state of flux. In addition to that axiomatic approach.

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원형구멍 정밀 내경측정을 위한 영상처리 개선에 관한 연구 (A Study on Improvement of Image Processing for Precision Inner Diameter Measurement of Circular Hole)

  • 박창용;권현규;이정화;장화신
    • 반도체디스플레이기술학회지
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    • 제16권3호
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    • pp.8-13
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    • 2017
  • In this paper, the measurement of the inner diameter dimension of the circular hole by using a machine vision system was studied. This paper was focused on the theory and key technologies of machine vision inspection technology for the improvement of measurement accuracy and speed of the micro circular holes. A new method was proposed and was verified through the experiments on Gray conversion, binarization, edge extraction and Hough transform in machine vision system processes. Firstly, the Hough transform was proposed in order to improve the speed increase and implementation ease, it demonstrated the superiority of Hough transform and improvement through a comparative experiment. Secondly, we propose a calibration method of the system in order to obtain exactly the inner diameter of the circular hole. Finally, we demonstrate the reliability of the entire system as a MATLAB-based implementation of the GUI program, measuring the inner diameter of the circular hole through the circular holes of different dimensions measuring experiment.

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레이저간섭계의 위치결정정밀도 측정오차 개선 (Improvement of the Laser Interferometer Error in the Positioning Accuracy Measurement)

  • 황주호;박천홍;이찬홍;김승우
    • 한국정밀공학회지
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    • 제21권9호
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    • pp.167-173
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    • 2004
  • The heterodyne He-Ne laser interferometer is the most widely used sensing unit to measure the position error. It measures the positioning error from the displacement of a moving reflector in terms of the wave length. But, the wave length is affected by the variation of atmospheric temperature. Temperature variation of 1$^\circ C$ results in the measuring error of 1ppm. In this paper, for measuring more accurately the position error of the ultra precision stage, the refractive index compensation method is introduced. The wave length of the laser interferometer is compensated using the simultaneously measured room temperature variations in the method. In order to investigate the limit of compensation, the stationary test against two fixed reflectors mounted on the zerodur$\circledR$ plate is performed firstly. From the experiment, it is confirmed that the measuring error of the laser interferometer can be improved from 0.34${\mu}m$ to 0.11${\mu}m$ by the application of the method. Secondly, for the verification of the compensating effect, it is applied to estimate the positioning accuracy of an ultra precision aerostatic stage. Two times of the refractive index compensation are performed to acquire the positioning error of the stage from the initially measured data, that is, to the initially measured positioning error and to the measured positioning error profile after the NC compensation. Although the positioning error of an aerostatic stage cannot be clarified perfectly, it is known that by the compensation method, the measuring error by the laser interferometer can be improved to within 0.1${\mu}m$.

Improvement of Intermittent Advancing Accuracy of Pneumatic Cylinder-Driven Roll Feeder

  • So, Jung Duck
    • 한국생산제조학회지
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    • 제25권3호
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    • pp.164-170
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    • 2016
  • A proposed pneumatic cylinder-driven roll feeder and an air press were designed to be operated automatically by a PLC. The accuracy of the intermittent feed pitch of the roll feeder was evaluated by measuring lengths of cut-offs of a strip stock by a digimatic vernier caliper. At each predetermined feed pitch, the proposed roll feeder was tested 100 times by varying the feed/cut intervals as 2.0/1.5, 3.0/2.0, and 3.5/2.5 s as test sets. The lengths of the cutoffs of the strip stock ranged from 9.89-10.34, 12.1-12.65, and 15.21-15.67 mm at the predetermined 10, 12, and 15 mm feed pitch, respectively, among the total of 300 samples in each feed pitch, regardless of the feed/shear interval. Therefore, the feed/cut interval at each selected feed pitch was found to have no effect on the accuracy of the intermittent advancing of the strip stock.

광조형 시스템의 리코팅 공정 개선 (Improvement for Recoating Process of Stereolithography System)

  • 이은덕;심재형;안규환;백인환
    • 한국공작기계학회논문집
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    • 제12권1호
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    • pp.16-23
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    • 2003
  • Keeping the layer thickness constant is very essential for improving the shape accuracy in the stereolithography process. The layer thickness is created by recoating process, and also affected by recoating parameters such as blade speed and thickness. The created layer in this process can determine the whole accuracy of the entire parts. The aim of this paper is to improve the accuracy of the layer thickness by adjusting the recoating process parameters. Several experiments with different recoating conditions are Performed to find the optimal recoating parameters that produce the most accurate layer thickness. The effective recoating method is suggested by measuring and analyzing the cured layer thickness.

개선 구산 계측함수에 의한 디지털 계측시스템의 정밀도 향상 (Accuracy Improvement of Digital Measurement System by Modified Piecewise Measuring Functions)

  • 홍성훈;강문성
    • 제어로봇시스템학회논문지
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    • 제7권2호
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    • pp.138-145
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    • 2001
  • Measurement errors in a digital measurement systems are mainly due to the consisting elements accuracies and the circuit parameters changes following the environment variations such as temperature. Further, systems non-linearity makes the measurement accuracy worse, and accordingly a linearization method should be considered to avoid this worsening. In this study, a temperature error-correction method and linearization methods are proposed and a digital temperature measurement system utilizing these methods is realized. And the proposed measurement methods are observed to increase the measurement accuracy of the digital measurement system.

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거리·시간 측정에 의한 고정도 타행시험법 : I. 관련이론 및 정밀도 향상방법 고찰 (High-Accuracy Coastdown Test Method by Distance-Time Measurement: I. Theoretical Background and Discussions on Accuracy Improvements)

  • 허남건;안이기
    • 한국자동차공학회논문집
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    • 제3권2호
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    • pp.51-61
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    • 1995
  • A coast down test mothod has been used to determine the resistance forces on running vehicle due to the aerodynamic drag, rolling resistance and driveline resistance. Most of the tests, however, are based on the Velocity-Time measurements, which require a sophisticated velocity measuring device and contain much error by nature. In the present study a coast down test method based on Distance-Time measurements is introduced, which contains the original idea of Russian scientist Prof. Petrushov along with the suggestions for improvement of the accuracy.

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Measurement of 3D Spreader Position Information using the CCD Cameras and a Laser Distance Measuring Unit

  • Lee, Jung-Jae;Nam, Gi-Gun;Lee, Bong-Ki;Lee, Jang-Myung
    • 한국항해항만학회지
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    • 제28권4호
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    • pp.323-331
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    • 2004
  • This paper introduces a novel approach that can provide the three dimensional information about the movement of a spreader by using two CCD cameras and a laser distance measuring unit in order to derive ALS (Automatic Landing System) in the crane used at a harbor. So far a kind of 2D Laser scanner sensor or laser distance measuring units are used as comer detectors for the geometrical matching between the spreader and a container. Such systems provide only two dimensional information which is not enough for an accurate and fast ALS. In addition to this deficiency in performance, the price of the system is too high to adapt to the ALS. Therefore, to overcome these defects, we proposed a novel method to acquire the three dimensional spreader information using two CCD cameras and a laser distance measuring unit. To show the efficiency of proposed method, real experiments are performed to show the improvement of accuracy in distance measurement by fusing the sensory information of the CCD cameras and a laser distance measuring unit.

가변 람다값을 이용한 EWC에서의 치명적 망각현상 개선 (Improvement of Catastrophic Forgetting using variable Lambda value in EWC)

  • 박성현;강석훈
    • 한국정보통신학회논문지
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    • 제25권1호
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    • pp.27-35
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    • 2021
  • 본 논문에서는 인공 신경망이 과거 학습 데이터의 정보를 망각하는 치명적 망각(Catastrophic Forgetting) 현상을 개선하기 위해, 학습할 데이터에 따라서 가변적으로 정규화 강도를 조절하는 방법을 제안한다. 이를 위하여 과거에 학습된 데이터와 현재 학습할 데이터들의 관계를 측정하는 방법을 사용하였다. 성능 평가를 위해 MNIST, EMNIST 데이터를 사용하였다. 3가지 시나리오에서 실험한 결과, 같은 도메인을 갖는 데이터의 경우, 이전 태스크의 정확도가 0.1~3%, 다른 도메인을 갖는 데이터의 경우 이전 태스크(Task)의 정확도가 10~13% 향상 시킬 수 있었다. 이는 본 논문의 방법으로, 도메인이 다른 경우, 망각률이 줄어든 것을 의미한다. 다양한 도메인을 가진 데이터를 연속적으로 학습할 경우, 이전 태스크들의 정확도가 모두 50% 이상을 달성하였고 평균 정확도가 약 7% 향상되었다.

다중 생체 신호를 통한 손목 혈압 측정의 정확도 향상 (Improvement of the Accuracy of Wrist Noninvasive Blood Pressure Measurement Using Multiple Bio-signals)

  • 정운모;심명헌;정상오;김민용;윤찬솔;정인철;윤형로
    • 전기학회논문지
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    • 제60권8호
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    • pp.1606-1616
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    • 2011
  • The blood pressure measuring equipment, which is being supplied and used most widely by being recognized convenience and accuracy now generally, is oscillometric blood pressure monitor. However, a change in blood pressure is basically influenced by diverse elements such as each individual's physiological status and physical condition. Thus, the measurement of blood pressure, which used single element called oscillation in blood pressure of being conveyed to cuff, is not considered on physiological elements such as cardiovascular system status and blood vessel stiffness index, and on external elements, thereby being quite in error. Accordingly, this study detected diverse bio-signals and body informations in each individual as the measurement subject such as ECG, PPG, and Korotkoff Sound in order to enhance convenience and accuracy of measuring blood pressure in the complex measurement equipment, thereby having extracted regression method for compensation in error of oscillometric blood pressure measurement on the wrist, and having improved accuracy of measuring blood pressure. To verify a method of improving accuracy, the blood pressure value in each of SBP, DBP, MAP was acquired through 4-stage experimental procedure targeting totally 51 subjects. Prior to experiment, the subjects were divided into two groups such as the experimental group for extracting regression method and the control group for verifying regression method. Its error was analyzed by comparing the reference blood pressure value, which was obtained through the auscultatory method, and the oscillometric blood pressure value on the wrist. To reduce the detected error, the blood pressure compensation regression method was calculated through multiple linear regression analysis on elements of blood pressure, individual body information, PTT, HR, K-Sound PSD change. Verification was carried out on improving significance and accuracy by applying the regression method to the data of control group. In the experimental results, as a result of confirming error on the reference blood pressure value in SBP, DBP, and MAP, which were acquired through applying regression method, the results of $-0.47{\pm}7.45$ mmHg, $-0.23{\pm}7.13$ mmHg, $0.06{\pm}6.39$ mmHg could be obtained. This is not only the numerical value of satisfying the sphygmomanometer reference of AAMI, but also shows the lower result than the numerical value in SBP : $-2.5{\pm}12.2$ mmHg, DBP : $-7.5{\pm}8.4$ mmHg, which is the mean error in the experimental results of Brram's research for verifying accuracy of Omron RX-M, which shows relatively high accuracy among wrist sphygmomanometers. Thus, the blood pressure compensation could be confirmed to be made within significant level.