• 제목/요약/키워드: linear scanning method

검색결과 135건 처리시간 0.027초

3차원적 접근 방식을 통한 머리 부위 사진 측정법의 개발 (Development of the Photogrammetric Method of Head Through 3-Dimensional Approach)

  • 김웅;남윤자;김민효
    • 대한인간공학회지
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    • 제24권4호
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    • pp.7-13
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    • 2005
  • We developed an accurate and reliable photogrammetric method available instead of the direct measurement method and the three-dimensional scanning method. Our research was restricted to a head on the body. Approaching three-dimensionally, we calibrated a distorted image of a photograph and got linear equations of camera beams. Then we assigned z values of landmarks in the head and obtained three-dimensional coordinates for each landmark putting those z values in linear equations of camera beams and finally could calculate measurement results from those three-dimensional coordinates. When we compared results obtained by a program, 'Venus Face Measurement(VFM)' that we had developed applying our method with results obtained by the direct measurement method, VFM showed very accurate and reliable results. In conclusion the photogrammetric method developed in this study was testified to an outstanding measurement method as a substitute for the direct measurement method and the three-dimensional scanning method.

골다공증 진단을 위한 초음파 영상화 진단 기법 연구 (Study of Ultrasound Imaging Technique for Diagnosing Osteoporosis)

  • 김형준;한승무;이준현;이민래
    • 비파괴검사학회지
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    • 제22권4호
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    • pp.386-392
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    • 2002
  • 골다공골증은 해면골의 골소주 두께 감소 및 파단에 기인한 전체적인 골질이 저하되는 질병이다. 골다공증의 진단은 X-ray 및 초음파를 이용하는 방법이 있다. 그러나 X-ray 방법은 인체에 해로우며 단지 골밀도만을 평가한다. 대부분 골다공증 진단 초음파 시스템은 heel뼈를 통과하는 초음파 속도 및 감쇠 파라미터를 측정하고 있다. 한편, 기존의 초음파 시스템들은 heel뼈의 한 점에서만 측정을 실행하므로 측정 위치에 따른 오차로 인하여 골다공증의 진단 예측성이 매우 낮다. 본 연구에서는 두 개의 초음파 탐촉자를 이용하여 선형 스캐닝 방식에 의한 heel뼈 전체 영역에 대한 초음파 파라미터 값들은 2차원 영상처리기법을 통하여 골다공증을 진단하는 기법을 수행하였다.

나노계면 형성을 위한 초음파 진동자 위치보정을 위한 레이저 스캐닝 기술 (Laser Scanning Technology for Ultrasonic Horn Location Compensation to Modify Nano-size Grain)

  • 김경한;이제훈;김현세;박종권;윤광호
    • 한국정밀공학회지
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    • 제31권12호
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    • pp.1121-1126
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    • 2014
  • To compensate location error of ultrasonic horn, the laser scanning system based on the galvanometer scanner is developed. It consists of the 3-Axis linear stage and the 2-Axis galvanometer scanner. To measure surface shape of three-dimensional free form surface, the dynamic focusing unit is adopted, which can maintain consistent focal plane. With combining the linear stage and the galvanometer scanner, the scanning area is enlarged. The scanning CAD system is developed by stage motion teaching and NURBS method. The laser scanning system is tested by marking experiment with the semi-cylindrical sample. Scanning accuracy is investigated by measured laser marked line width with various scanning speed.

다각주사법에 대한 비대칭 분무 구조의 토모그래피 재구성 (Tomographic Reconstruction of Asymmertic Liquid Spray from Multi-angular Scanning)

  • 이충훈;정석호
    • 한국자동차공학회논문집
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    • 제4권1호
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    • pp.177-186
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    • 1996
  • A convolution alogorithm combined with Fourier transformation is applied to the tomographic reconstruction of the asymmetric spray structure to identify the local drop size and volume concentration. The line of sight intergrated data from Malvern particle analyzer with multiangular scanning form a basic information for the deconvolution. Linear interpolation is tested to obtain the effect of increasing number of scanning angles. This transformation method predicts well the structure of asymmetric spray. The tehnique can be extended to other line of sight combustion diagnostics.

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Laser Generation of Focused Lamb Waves

  • Jhang, Kyung-Young;Kim, Hong-Joon;Kim, Hyun-Mook;Ha, Job
    • 비파괴검사학회지
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    • 제22권6호
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    • pp.637-642
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    • 2002
  • An arc-shaped line array slit has been used for the laser generation of focused Lamb waves. The spatially expanded Nd:YAG pulse laser was illuminated through the arc-shaped line array slit on the surface of a sample plate to generate the Lamb waves of the same pattern as the slit. Then the generated Lamb waves were focused at the focal point of which distance from the slit position is dependent on the curvature of slit arc. The proposed method showed better spatial resolution than the conventional linear array slit in the detection of laser machined linear defect and drill machined circular defect on aluminum plates of 2mm thickness. Using the focused waves, we could detect the linear defect and the circular defect with the improvement of spatial resolution. The method can also be combined with the scanning mechanism to get an image just like by the scanning acoustic microscope(SAM).

600DPI용 플라스틱 f$\theta$렌즈가 실장된 Laser Scanning Unit 의 측정 및 평가 (Laser scanning unit with plastic f$\theta$ lenses featuring high resolution)

  • 임천석
    • 한국광학회지
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    • 제10권5호
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    • pp.364-368
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    • 1999
  • 일반적으로 LSU(Laser Scanning Unit)는 LD모듈(Laser Diode, 콜리메이팅 렌즈, 슬릿), 실린더 렌즈 고속회전하는 PM(Polygon Mirror), f$\theta$렌즈와 같은 광부품들과 이들을 취부하는 Housing으로 구성되어져 있다. 먼저 본 논문에서는 당사에서 자체적으로 광설계된 LSU 시작품(시작(試作品)을 측정/평가하기 위해 평가항목들에 관해 살펴 보았다. 당사에서 시제작된 LSU의 특징은 LSU의 핵심부품인 f$\theta$렌즈가 2단가압형 저압사출방식으로 제작되었다는 것이다. LSU의 평가항목들은 BSH(Beam Scan Head)를 LMC(Linear Motion Controller)위에 장착해서 비교적 간단히 측정 할 수 있었고, 측정결과 600DPI(Dots Per Inch) 성능을 만족함을 확인할 수 있었다.

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초정밀 스테이지 설계 및 제어 시스템에 관한 연구 (A study of the design and control system for the ultra-precision stage)

  • 박종성;정규원
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2005년도 춘계학술대회 논문집
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    • pp.54-59
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    • 2005
  • Recently, the ultra-precision stage is widely used in the fields of the nano-technology, specially in AFMs(Atomic Force Microscope) and STMs(Scanning Tunneling Microscope). In this paper, the ultra-precision stage which consists of flexure hinges, piezoelectric actuator, and ultra-precision linear encoder, is designed and developed. The guide mechanism which consisted of flexure hinges is analyzed by Finite Element Method. And we derived the transfer function of the system in 1st order system from step responses according to the magnitude. We performed simulation for the model to tune the control gain and applied the gains to the developed system. Experimental results found that the stage can be controlled in 5 nm resolution by PID controller.

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초정밀 선형 모터 시스템의 적응형 힘리플 보상과 정밀 트랙킹 제어 (Adaptive Force Ripple Compensation and Precision Tracking Control of High Precision Linear Motor System)

  • 최영만;권대갑;이문구
    • 한국정밀공학회지
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    • 제22권12호
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    • pp.51-60
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    • 2005
  • This paper describes a robust control scheme for high-speed and long stroke scanning motion of high precision linear motor system consisting of linear motor, air bearing guide and position measurement system using heterodyne interferometer. Nowadays, semiconductor process and inspection of wafer or LCD need high speed and long travel length for their high throughput and extremely small velocity fluctuations or tracking errors. In order to satisfy these conditions, linear motor system are widely used because they have large thrust force and do not need motion conversion mechanisms such as ball screw, rack & pinion or capstan with which the system are burdened. However linear motors have a problem called force ripple. Force ripple deteriorates the tracking performances and makes periodic position errors. So, force ripple must be compensated. To maximize the tracking performance of linear motor system, we propose the control scheme which is composed of a robust control method, Time Delay Controller (TDC) and a feedforward control method, Zero Phase Error Tracking Control (ZPETC) for accurate tracking a given trajectory and an adaptive force ripple compensation (AFC) algorithm fur estimating and compensating force ripple. The adaptive ripple compensation is continuously refined on the basis of tracking error. Computer simulation results based on modeled parameters verify the effectiveness of the proposed control scheme for high-speed, long stroke and high precision scanning motion and show that the proposed control scheme can achieve a sup error tracking performance in comparison to conventional TDC control.

Time-Matching Poisson Multi-Bernoulli Mixture Filter For Multi-Target Tracking In Sensor Scanning Mode

  • Xingchen Lu;Dahai Jing;Defu Jiang;Ming Liu;Yiyue Gao;Chenyong Tian
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제17권6호
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    • pp.1635-1656
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    • 2023
  • In Bayesian multi-target tracking, the Poisson multi-Bernoulli mixture (PMBM) filter is a state-of-the-art filter based on the methodology of random finite set which is a conjugate prior composed of Poisson point process (PPP) and multi-Bernoulli mixture (MBM). In order to improve the random finite set-based filter utilized in multi-target tracking of sensor scanning, this paper introduces the Poisson multi-Bernoulli mixture filter into time-matching Bayesian filtering framework and derive a tractable and principled method, namely: the time-matching Poisson multi-Bernoulli mixture (TM-PMBM) filter. We also provide the Gaussian mixture implementation of the TM-PMBM filter for linear-Gaussian dynamic and measurement models. Subsequently, we compare the performance of the TM-PMBM filter with other RFS filters based on time-matching method with different birth models under directional continuous scanning and out-of-order discontinuous scanning. The results of simulation demonstrate that the proposed filter not only can effectively reduce the influence of sampling time diversity, but also improve the estimated accuracy of target state along with cardinality.

Accuracy and precision of polyurethane dental arch models fabricated using a three-dimensional subtractive rapid prototyping method with an intraoral scanning technique

  • Kim, Jae-Hong;Kim, Ki-Baek;Kim, Woong-Chul;Kim, Ji-Hwan;Kim, Hae-Young
    • 대한치과교정학회지
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    • 제44권2호
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    • pp.69-76
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    • 2014
  • Objective: This study aimed to evaluate the accuracy and precision of polyurethane (PUT) dental arch models fabricated using a three-dimensional (3D) subtractive rapid prototyping (RP) method with an intraoral scanning technique by comparing linear measurements obtained from PUT models and conventional plaster models. Methods: Ten plaster models were duplicated using a selected standard master model and conventional impression, and 10 PUT models were duplicated using the 3D subtractive RP technique with an oral scanner. Six linear measurements were evaluated in terms of x, y, and z-axes using a non-contact white light scanner. Accuracy was assessed using mean differences between two measurements, and precision was examined using four quantitative methods and the Bland-Altman graphical method. Repeatability was evaluated in terms of intra-examiner variability, and reproducibility was assessed in terms of interexaminer and inter-method variability. Results: The mean difference between plaster models and PUT models ranged from 0.07 mm to 0.33 mm. Relative measurement errors ranged from 2.2% to 7.6% and intraclass correlation coefficients ranged from 0.93 to 0.96, when comparing plaster models and PUT models. The Bland-Altman plot showed good agreement. Conclusions: The accuracy and precision of PUT dental models for evaluating the performance of oral scanner and subtractive RP technology was acceptable. Because of the recent improvements in block material and computerized numeric control milling machines, the subtractive RP method may be a good choice for dental arch models.