• 제목/요약/키워드: three dimensional scanner

검색결과 263건 처리시간 0.026초

신발 접착제 도포 시스템을 위한 CAD 기반 로봇 오프라인 프로그래밍 (CAD Based Robot Off-line Programming for Shoe Adhesive Application System)

  • 윤중선;차동혁;김진영
    • 제어로봇시스템학회논문지
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    • 제10권7호
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    • pp.643-648
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    • 2004
  • Most of shoes manufacturing processes are not yet automated, which puts restrictions on the increase of productivity. Among them, adhesive application processes particularly are holding the most workers and working hours. In addition, its working conditions are very poor due to the toxicity of adhesive agents. In case of automating adhesive application processes by using robots, the robot teaching by playback is difficult to produce high productivity because the kinds of shoes to be taught mount up to several thousands. Therefore, it is essential to generate the robot working paths automatically according to the kind, the size, and the right and left of shoes, and also to teach them to the robot automatically. This study deals with automated adhesive spraying to shoe outsoles and uppers by using a robot, and develops the program to generate three-dimensional robot working paths off-line based on CAD data. First, the three-dimensional data of an outsole outline or an upper profiling line are extracted from the two-dimensional CAD drawing file or the three-dimensional scanner. Next, based on the extracted data and the nozzle conditions for adhesive spraying, a robot working path is generated automatically. This research work is the core in automating adhesive spraying processes, and will do much for increasing productivity of shoes manufacturing.

The Properties of Beam Intensity Scanner(BInS) in IMRT with Phantom for Three Dimensional Dose Verification

  • Young W. Vahc;Park, Kwangyl;Byung Y. Yi;Park, Kyung R.;Lee, Jong Y.;Ohyun Kwon;Park, Kwangyl;Kim, Keun M.
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2003년도 제27회 추계학술대회
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    • pp.64-64
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    • 2003
  • Objectives: Patient dose verification is clinically the most important parts in the treatment delivery of radiation therapy. The three dimensional(3D) reconstruction of dose distribution delivered to target volume helps to verify patient dose and determine the physical characteristics of beams used in intensity modulated radiation therapy(IMRT). We present Beam Intensity Scanner(BInS) system for the pre treatment dosimetric verification of two dimensional photon intensity. The BInS is a radiation detector with a custom made software for relative dose conversion of fluorescence signals from scintillator. Methods: This scintillator is fabricated by phosphor Gadolinium Oxysulphide and is used to produce fluorescence from the irradiation of 6MV photons on a Varian Clinac 21EX. The digitized fluoroscopic signals obtained by digital video camera will be processed by our custom made software to reproduce 3D relative dose distribution. For the intensity modulated beam(IMB), the BInS calculates absorbed dose in absolute beam fluence, which are used for the patient dose distribution. Results: Using BInS, we performed various measurements related to IMRT and found the followings: (1) The 3D dose profiles of the IMBs measured by the BInS demonstrate good agreement with radiographic film, pin type ionization chamber and Monte Carlo simulation. (2) The delivered beam intensity is altered by the mechanical and dosimetric properties of the collimating of dynamic and/or static MLC system. This is mostly due to leaf transmission, leaf penumbra, scattered photons from the round edges of leaves, and geometry of leaf. (3) The delivered dose depends on the operational detail of how to make multileaf opening. Conclusions: These phenomena result in a fluence distribution that can be substantially different from the initial and calculative intensity modulation and therefore, should be taken into account by the treatment planing for accurate dose calculations delivered to the target volume in IMRT.

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3차원 계측시스템을 이용한 개더스커트 형상 분석 (Analysis of the Shape of Gathered Skirts using a Three-Dimensional Measurement System)

  • 정희경;이명희
    • 한국의류학회지
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    • 제29권11호
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    • pp.1399-1409
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    • 2005
  • The purpose of this study was to analyze the shape of gathered skirts using a three-dimensional measurement system. And in this experiment, I try to accumulate three-dimensional data of wearing model and to figure out analyzing method made by shape of clothes. The experimental design consists of two factorial designs. I set up three different kinds of fabrics, ratio of gathers. Therefore nine samples were made. The instrument and tools for three-dimensional measurement was whole body 3D scanner. Analysis program used in experiment is RapidForm 2004 PP1 and Pattern Design 2000. Data analysis utilizes SPSS WIN 10.0 Package. T-test to effect an inspection of evidence, there was difference about measurement times. One-way ANOVA to analysis effect of gather made by gathering conditions. The following results were obtained; 1. As a result of inspecting an error several times using a three-dimension measurement system, convinced data was obtained. 2. At front, distribution of gap amount was larger than back. And as ratio of gathers increased, distribution of gap amount showed regularly. 3. After analyzing horizontal sectional figure of skirts, as a height of skirt changed from waist to the bottom of skirts, the results showed as follows. While section width, section thickness, node width, node depth increased, node count decreased. 4. With the horizontal section levels of gather skirt, the silhouette on middle hip section was similar with the silhouette of body line. And as ratio of gathers around hip section increased, nodes showed regularly. At the bottom of skirts showed different nodes by different gathering condition.

레이저 스캐너 3차원 계측에 있어서의 오차 보정 (Error correction in laser scanner 3D measurement)

  • 김응규
    • 전자공학회논문지B
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    • 제33B권5호
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    • pp.94-101
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    • 1996
  • When objects are scanned spatially by a laser-beam and mechanical mirror scanners, spatial information can be obtained, and then it is improtant to accurately obtain the parameters relating the light source and camera positions, etc.. In this paper, a calibration technique is presented for correction of measuremtn errors in a three-dimensional laser scanner system with two galvanometers. First, a model of the systematic errors is developed based on the geometry of the scanning system. Calibration parameter values are then iteratively adjusted with coarse-fine search in order to minimize errors (evaluation function) between measured and computed distances. It is shown that this correction method results in measurement precision suitable for practical use.

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3D 스캐너와 역설계를 활용한 자동차용 허브의 프린팅 특성 (3D Printing Characteristics of Automotive Hub using 3D Scanner and Reverse Engineering)

  • 김해지
    • 한국기계가공학회지
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    • 제18권10호
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    • pp.104-109
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    • 2019
  • Reverse engineering techniques using 3D scanners and 3D printing technologies are being used in various industries. In this paper, the three-dimensional model is designed for automotive hub parts through 3D scanning and reverse engineering, and the design of hub parts is intended to be printed on FDM-style 3D printers to measure and analyze the dimensions of hub parts designed for reverse design and 3D printed hub parts. Experimental result have shown that the dimensions of 3D printed hub parts are small compared to those of the reverse-engineered dimensions, which are due to the shrinkage of filament materials in 3D printing.

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 ${\pm}0.01$.

GANs(Generative Adversarial Networks)를 활용한 모션캡처 이미지의 hole-filling 기법 연구 (Study on hole-filling technique of motion capture images using GANs (Generative Adversarial Networks))

  • 신광성;신성윤
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2019년도 춘계학술대회
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    • pp.160-161
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    • 2019
  • 3차원 객체를 모델링 하기 위한 방법으로 3D 스캐너를 이용하는 방법과 모션캡처 시스템을 이용하는 방법 그리고 키넥트(Kinect) 시스템을 이용하는 방법 등이 있다. 이러한 방법을 통해 3차원 객체를 생성하는 과정에서 가려짐에 의해 촬영되지 않는 부분이 발생한다. 완벽한 3차원 객체를 구현하기 위해서는 가려진 부분을 임의로 채워줘야 하는 상황이 발생한다. 다양한 영상처리 방법을 통해 가져져 촬영되지 않은 부분을 메우는 기법이 존재한다. 본 연구에서는 보다 자연스러운 hole filling을 위한 방법으로 비지도기계학습의 최신 트렌드인 GANs를 이용한 방법을 제안한다.

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3차원 얼굴 영상을 이용한 상악 전방견인 치료 후의 연조직 평가 (Soft tissue evaluation using 3-dimensional face image after maxillary protraction therapy)

  • 최동순;이경훈;장인산;차봉근
    • 대한치과의사협회지
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    • 제54권3호
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    • pp.217-229
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    • 2016
  • Purpose: The aim of this study was to evaluate the soft-tissue change after the maxillary protraction therapy using threedimensional (3D) facial images. Materials and Methods: This study used pretreatment (T1) and posttreatment (T2) 3D facial images from thirteen Class III malocclusion patients (6 boys and 7 girls; mean age, $8.9{\pm}2.2years$) who received maxillary protraction therapy. The facial images were taken using the optical scanner (Rexcan III 3D scanner), and T1 and T2 images were superimposed using forehead area as a reference. The soft-tissue changes after the treatment (T2-T1) were three-dimensionally calculated using 15 soft-tissue landmarks and 3 reference planes. Results: Anterior movements of the soft-tissue were observed on the pronasale, subnasale, nasal ala, soft-tissue zygoma, and upper lip area. Posterior movements were observed on the lower lip, soft-tissue B-point, and soft-tissue gnathion area. Vertically, most soft-tissue landmarks moved downward at T2. In transverse direction, bilateral landmarks, i.e. exocanthion, zygomatic point, nasal ala, and cheilion moved more laterally at T2. Conclusion: Facial soft-tissue of Class III malocclusion patients was changed three-dimensionally after maxillary protraction therapy. Especially, the facial profile was improved by forward movement of midface and downward and backward movement of lower face.

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3차원 레이저 스캐너 및 BIM을 활용한 터널 과대.과소 굴착 평가 (Assessment of over / under-break of tunnel utilizing BIM and 3D laser scanner)

  • 박정준;신재철;황주환;이강현;서형준;이인모
    • 한국터널지하공간학회 논문집
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    • 제14권4호
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    • pp.437-451
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    • 2012
  • 최근 3차원 레이저 스캐너는 토목 분야의 적용에 관한 다수의 연구가 수행되고 있으며, 연구 분야 역시 터널 및 교량, 토공량 산정, 시공검측, 암반절리 측정 등 여러 분야에서 이루어지고 있다. 그 중 터널 시공 시 여굴량 및 미굴량을 산정함에 있어 3차원 레이저 스캐너를 활용하는 연구가 점차적으로 이루어지고 있으며, 지금까지의 연구는 스캔 데이터와 2차원 CAD 도면과의 비교를 통해 여굴량 및 미굴량을 산정하는 방식으로 이루어 졌다. 그러나 터널이 비교적 단순한 형상의 구조물이라 하더라도 3차원 형상의 구조물로 정확한 여굴량 및 미굴량을 산정하기 위해서는 3차원적인 비교가 필요하다. 본 연구에서는 3차원 레이저 스캐너로 획득한 스캔 데이터와 3차원 설계 모델링인 BIM을 활용하여 시공시 발생하는 여굴량 및 미굴량을 산정하는 시공오차 평가 프로그램을 개발하였으며, 이를 위한 효율적인 스캔 데이터의 처리 프로세스를 제안하였다. 또한 실제 현장에 3차원 레이저 스캐너를 적용하여 시공오차를 산정하였으며, 프로그램의 성능을 검증하였다.

Generation of 3D Design Data using Laser Scanning Data

  • Park, Joon Kyu;Lee, Keun Wang
    • 한국측량학회지
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    • 제39권5호
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    • pp.343-349
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    • 2021
  • In The process from design to construction in the existing construction work was less efficient due to the contradictory approach of identifying the 3D state in the plan view and the repeated generation of surveys, floor plans, drawings. Accurate 3D design data is essential for smart construction. However, most of the existing related studies have focused on explaining the development method and main functions of equipment or improving the productivity of smart construction. Therefore, in this study, the utility of 3D design model generation for smart construction and construction survey using 3D laser scanner was evaluated. Plane and vertical road alignment were created using the specifications of the road. The generated road alignment was created as a three-dimensional corridor design using cross-sections at intervals of 20m. In addition, it was possible to create a DTM (Digital Terrain Model) using a digital map and effectively create a 3D design model for the study area through overlapping. Construction survey using a 3D laser scanner showed accuracy within 10cm as a result of the accuracy evaluation. These results proved that construction surveying using a 3D laser scanner is possible because it satisfies the acceptable accuracy of the relevant regulations modeling of target areas using 3D design and construction survey using 3D laser scanner can be a way to address shortcomings of existing GNSS (Global Navigation Satellite System) methods. And accurate 3D data will be used as essential data as basic data for smart construction.