• Title/Summary/Keyword: 3D Laser Scanner

검색결과 279건 처리시간 0.036초

A study on the core technologies for industrial type digital 3D SFF system

  • Kim, Dong-Soo;An, Young-Jin;Kim, Sung-Jon;Choi, Byung-Oh;Lim, Hyun-Eui
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.2170-2174
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    • 2005
  • Selective Laser Sintering (SLS) is a useful rapid prototyping technique for the manufacture of three dimensional (3D) solid objects directly from a scanning data. A new approach called a Selective Multi-Laser Sintering (SMLS) system has been developed at Korea Institute Machinery & Materials (KIMM) as an industrial type SFFS. This SMLS machine is built with a frame, heaters, nitrogen supply part, laser system. This system uses the dual laser and 3D scanner made in $Solutionix^{TM}$ to improve the precision and speed for large objects. The three-dimensional solid objects are made of polyamide powder. The investigation on each part of SMLS system is performed to determine the proper theirs design and the effect of experimental parameters on making the 3D objects. The temperature of the system has a great influence on sintering the polymer. Because the stability of the powder temperature prevents the deformation of each layer, the controls of the temperature in both the system and the powders are very important during the process. Therefore, we simulated the temperature distribution of build room using the temperature analysis with ANSYS program. Selected radiant heater is used to raise temperature of powder to melting point temperature. The laser parameters such as scan spacing, scan speed, laser power and laser delay time affect the production the 3D objects too. The combination of the slow scan speed and the high laser power shows the good results without the layer curling. The work is under way to evaluate the effect of experimental parameters on process and to produce the various objects. We are going to experiment continuously to improve the size accuracy and surface roughness.

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3차원 스캐닝을 활용한 사면의 안정성 평가 및 대책공법수립 (Establishment of remedial methods and evaluation of slope stability using 3D scanning)

  • 임은상;김범주;오석훈;임정열;김영경
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.711-719
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    • 2006
  • In this study, a 3D laser scanner is applied to evaluate of the stability of rock slope and to establish a adequate counter-method. From 3D scanning results, three dimensional digital data of rock slope is acquired, and then it is investigated for the engineering properties of discontinuities in rock mass. On the base of the result, we carry out the analysis of slope stability using the methods of the stereographic projection. In particular, the use of a 3D laser scanner is powerful about the slope on which person is difficult to approach because we can obtain the informations of discontinuities from the 3D digital data.

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구면좌표계식 기구를 이용한 인공치아의 3차원 측정시스템 개발 (Development of 3D Measuring System for Artificial Pontic using Spherical Coordinate System Mechanism)

  • 맹희영;성봉현
    • 한국생산제조학회지
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    • 제19권4호
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    • pp.427-433
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    • 2010
  • With recent increased demand for reverse engineering in dental machining, the 3D laser scanner is widely used for inspection of artificial pontic. In order to overcome the optical drawback of laser scanner, such as irregular scatter, direction of beam, and the influence of surface integrity, it is developed in this study a new 3D measuring system for artificial pontic using spherical coordinate system mechanism by point laser sensor, which keeps the direction of beam normal to surface consistently. The comprehensive integrated system is established to evaluate the improvement of accuracy with data acquisition system. The experimental results for measuring a master ball and pontic models shows the excellent form accuracy and repeatability compared with conventional apparatus. Also, these results shows the possibility to apply this system for the measuring purpose within 0.05mm accuracy of pontic at the sharp edge or margin contour, which was difficult to measure at the conventional systems.

Super multi-view 3-D display system based on focused light Array using reflective vibrating scanner array (ViSA)

  • Ho-In Jeon;Nak-Hee Jung;Jin-San Choi;Young Jung;Young Huh
    • 방송과미디어
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    • 제6권2호
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    • pp.84-101
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    • 2001
  • In this paper, we present a primitive system design of a super multi-view(SMV) 3-D display system based on a focused light array(FLA) concept using reflective vibrating scanner array(ViSA). The parallel beam scanning using a vibrating scanner array is performed by moving left and right an array of curvature-compensated mirrors or diamond-ruled reflective grating attached to a vibrating membrane. The parallel laser beam scanner array can replace the polygon mirror scanner which has been used in the SMV 3-D display system based on the focused light array(FLA) concept proposed by Kajiki at TAO(Telecommunications) Advancement Organization). The proposed system has great advantages in the sense that it requires neither huge imaging optics nor mechanical scanning pals. Some mathematical analyses and fundamental limitations of the proposed system are presented. The proposed vibrating scanner array, after some modifications and refinements, may replace polygon mirror-based scanners in the near future.

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3D 레이저스캐너를 활용한 유류 저장탱크의 검사 (Oil Storage Tank Inspection using 3D Laser Scanner)

  • 박준규;이근왕
    • 한국산학기술학회논문지
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    • 제21권12호
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    • pp.867-872
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    • 2020
  • 유류 저장탱크는 화학 산업단지의 주요한 구조물로서, 자연재해나 관리 부실로 인한 구조물의 손상은 화학물질의 유출, 화재, 폭발 등의 추가적인 피해를 야기하기 때문에 변형에 대한 파악이 필수적이다. 본 연구에서는 3D 레이저스캐너를 이용하여 유류 저장탱크에 대한 데이터를 취득하고, 설계 데이터와 비교하여 저장탱크 관리를 위한 다양한 분석을 수행하였다. 3D 레이저스캐너로 취득된 데이터와 설계 도면을 이용하여 유류 저장탱크의 모델링을 수행하고, 중첩하여 유류 저장탱크의 검사를 효과적으로 수행할 수 있었다. 또한 시설물 변형에 대한 가시적인 데이터 생성을 위해 변형에 대한 단면도 및 전개도를 생성하였으며, 정량적인 분석을 통해 유류 저장탱크가 최대 -7.16mm의 변형이 발생하였음을 제시하였다. 변형이 크게 일어난 부분에 대한 정밀 검측대상 도면을 생성하여 추가적인 업무에 활용할 수 있는 데이터를 생성하였으며, 향후 3D 레이저스캐너를 이용한 유류 저장탱크의 검사는 유류 저장탱크 변형에 대한 정량적이며, 가시적인 자료를 제공함으로써 시설물 관리의 효율성을 크게 향상시킬 것이다.

Accuracy of Bolton analysis measured in laser scanned digital models compared with plaster models (gold standard) and cone-beam computer tomography images

  • Kim, Jooseong;Lagravere, Manuel O.
    • 대한치과교정학회지
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    • 제46권1호
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    • pp.13-19
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    • 2016
  • Objective: The aim of this study was to compare the accuracy of Bolton analysis obtained from digital models scanned with the Ortho Insight three-dimensional (3D) laser scanner system to those obtained from cone-beam computed tomography (CBCT) images and traditional plaster models. Methods: CBCT scans and plaster models were obtained from 50 patients. Plaster models were scanned using the Ortho Insight 3D laser scanner; Bolton ratios were calculated with its software. CBCT scans were imported and analyzed using AVIZO software. Plaster models were measured with a digital caliper. Data were analyzed with descriptive statistics and the intraclass correlation coefficient (ICC). Results: Anterior and overall Bolton ratios obtained by the three different modalities exhibited excellent agreement (> 0.970). The mean differences between the scanned digital models and physical models and between the CBCT images and scanned digital models for overall Bolton ratios were $0.41{\pm}0.305%$ and $0.45{\pm}0.456%$, respectively; for anterior Bolton ratios, $0.59{\pm}0.520%$ and $1.01{\pm}0.780%$, respectively. ICC results showed that intraexaminer error reliability was generally excellent (> 0.858 for all three diagnostic modalities), with < 1.45% discrepancy in the Bolton analysis. Conclusions: Laser scanned digital models are highly accurate compared to physical models and CBCT scans for assessing the spatial relationships of dental arches for orthodontic diagnosis.

영상 및 레이저 계측기를 통한 경사면 상황인식 시스템 (Recognition System of Slope Condition Using Image and Laser Measuring Instrument)

  • 한상훈;한영준
    • 대한임베디드공학회논문지
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    • 제9권4호
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    • pp.219-227
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    • 2014
  • Natural disasters such as a ground collapse and a landslide have broken out due to the climate change of the Korea and the reckless expansion of cities and roads. The climate changes and the reckless urbanization have made the ground weak. Thus, it is important to keep a close eye on the highly weakened landslide and to prevent its natural disasters. In order to prevent these disasters, this paper presents a system of recognizing the road slide condition by measuring the displacements using laser scanner instrument. The previous system of monitoring the road slide has some problems as inaccurate recognition due to using only images from a camera, or expensive system such as artificial satellites and aircraft systems. To solve this problem, our proposed system uses the 3D range data from the laser scanner for measuring the accurate displacement of the road slide and optical flows from the Lucas-Kanade algorithm for recognizing the road slide in the image.

지상 레이저스캐너를 이용한 고건축물의 3차원 모델링 (3 Dimensional Modelling of a Old Architecture Using a Terrrestrial Laser Scanner)

  • 이진덕;도철호;한승희
    • 한국콘텐츠학회:학술대회논문집
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    • 한국콘텐츠학회 2007년도 추계 종합학술대회 논문집
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    • pp.30-34
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    • 2007
  • 레이저는 단시간에 높은 정밀도로 다량의 측정을 행할 수 있는 장점을 지니며, 이의 구체적인 실현이 지상 LiDAR라고도 불리는 지상레이저 스캐너이다. 본 논문에서는 Z-F 레이저시스템을 사용하여 대상물의 3차원 레이저 측정, Point 데이터의 생성, Registration & Merging, Polygon 데이터의 생성, Surface 데이터 생성의 과정을 거쳐 수행된 고건축물의 3차원 모델링 결과에 대하여 기술한다. 문화재의 보존 및 복원을 위한 자료 기록 및 측정에 있어서 지상 레이저스캐너를 사용한 고건축물의 데이터베이스 구축기술은 문화유산의 복원 및 관련분야에 커다란 영향력으로 자리매김할 수 있을 것으로 사료된다.

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Development of 3D scanner using structured light module based on variable focus lens

  • Kim, Kyu-Ha;Lee, Sang-Hyun
    • International Journal of Advanced Culture Technology
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    • 제8권3호
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    • pp.260-268
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    • 2020
  • Currently, it is usually a 3D scanner processing method as a laser method. However, the laser method has a disadvantage of slow scanning speed and poor precision. Although optical scanners are used as a method to compensate for these shortcomings, optical scanners are closely related to the distance and precision of the object, and have the disadvantage of being expensive. In this paper, 3D scanner using variable focus lens-based structured light module with improved measurement precision was designed to be high performance, low price, and usable in industrial fields. To this end, designed a telecentric optical system based on a variable focus lens and connected to the telecentric mechanism of the step motor and lens to adjust the focus of the variable lens. Designed a connection structure with optimized scalability of hardware circuits that configures a stepper motor to form a system with a built-in processor. In addition, by applying an algorithm that can simultaneously acquire high-resolution texture image and depth information and apply image synthesis technology and GPU-based high-speed structured light processing technology, it is also stable for changes to external light. We will designed and implemented for further improving high measurement precision.

프린지 투영법을 이용한 실시간 3D 구강 내 스캐너의 개발 (Development of a Real-time 3D Intraoral Scanner Based on Fringe-Projection Technique)

  • ;이건수;박강
    • 한국CDE학회논문집
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    • 제17권3호
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    • pp.156-163
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    • 2012
  • Real-time three-dimensional shape measurement is becoming increasingly important in various fields, including medical sciences, high-technology industry, and microscale measurements. However, there are not so many 3D profile tools specially designed for specifically narrow space, for example, to scan the tooth shape of a human jaw. In this paper, a real-time 3D intraoral scanner is proposed for the measurement of tooth profile in the mouth cavity. The proposed system comprises a laser diode beam, a micro charge-coupled device, a graticule, a piezoelectric transducer, a set of optical lenses, and a polhemus device sensor. The phase-shifting technique is used along with an accurate calibration method for the measurement of the tooth profile. Experimental and theoretical inspection of the phase-to-coordinate relation is presented. In addition, a nonlinear system model is developed for collimating illumination that gives the more accurate mathematical representation of the system, thus improves the shape measurement accuracy. Experiment results are presented to verify the feasibility and performance of the developed system. The experimental results indicate that overall measurement error accuracy can be controlled within 0.4 mm with a variability of ${\pm}0.01$.