• Title/Summary/Keyword: Human 3D Modeling

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Human Limbs Modeling from 3D Scan Data (3차원 스캔 데이터로부터의 인체 팔, 다리 형상 복원)

  • Hyeon, Dae-Eun;Yun, Seung-Hyeon;Kim, Myeong-Su
    • Journal of the Korea Computer Graphics Society
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    • v.8 no.4
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    • pp.1-7
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    • 2002
  • This paper presents a new approach for modeling human limbs shape from 3D scan data. Based on the cylindrical structure of limbs, the overall shape is approximated with a set of ellipsoids through ellipsoid fitting and interpolation of fit-ellipsoids. Then, the smooth domain surface representing the coarse shape is generated as the envelope surface of ellipsoidal sweep, and the fine details are reconstructed by constructing parametric displacement function on the domain surface. For fast calculation, the envelope surface is approximated with ellipse sweep surface, and points on the reconstructed surface are mapped onto the corresponding ellipsoid. We demonstrate the effectiveness of our approach for skeleton-driven body deformation.

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3-D Body Typing of Korean Adults and its Application to Vehicle Design (자동차 설계를 위한 한국인 3차원 표준 형상의 선정)

  • Hong, Seung-U;Park, Seong-Jun;Jeong, Ui-Seung
    • Journal of the Ergonomics Society of Korea
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    • v.25 no.2
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    • pp.85-94
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    • 2006
  • The purpose of this study is to extract typical body shapes of Korean adults based on the three-dimensional Korean anthropometric data measured through 5th national anthropometric survey and to examine the suitability of the 3-D human shape data for the interior packaging. 36 three-dimensional anthropometric variables related to the design of vehicle interior were considered for the appraisal of typical body shapes. Four major factors were extracted by the factor analysis and factor scores were calculated for all subjects. Typical or standard drivers of Korean adults were selected by the minimum deviation criteria for the four factor scores with respect to 5th, 50th, and 95th percentiles, respectively. Typical drivers of Korean adults were visualized by the CATIA-HUMAN program due to the absence of proper application software for three-dimensionally scanned human body data. There are considerable differences between the anthropometric data of Korean adults and those provided by CATIA-HUMAN program, which shows that the modeling data provided by CATIA-HUMAN should not be directly applied to the ergonomic evaluation for the vehicle design. This suggests the necessity for the development of suitable software for scanned human shape data. It is also expected that the anthropometric data of typical drivers extracted from this study help design package layouts and improve the suitability of ergonomic evaluation for Korean customers.

A STUDY FOR MODELING AND ANIMATION OF A HUMAN WITH BONE STRUCTURE AND CLOTHES

  • Suzuki, Tohru;Yamamoto, Toshiyuki;Nagase, Hiroshi
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2009.01a
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    • pp.821-824
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    • 2009
  • A method to visualize human body is proposed for various human pose. The method affords three 3D-styles of the same body: firstly, one which wares clothes specified from pattern of dresses, second, body shape, lastly bone structure of body. For this objective, standard body data are prepared which is constructed from CT images. Individual body is measured by 3D body scanner. The present status of our research is limited to offer still images, though we are engaged to accommodate various poses.

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Human-like Fuzzy Lip Synchronization of 3D Facial Model Based on Speech Speed (발화속도를 고려한 3차원 얼굴 모형의 퍼지 모델 기반 립싱크 구현)

  • Park Jong-Ryul;Choi Cheol-Wan;Park Min-Yong
    • Proceedings of the Korean Institute of Intelligent Systems Conference
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    • 2006.05a
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    • pp.416-419
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    • 2006
  • 본 논문에서는 음성 속도를 고려한 새로운 립싱크 방법에 대해서 제안한다. 실험을 통해 구축한 데이터베이스로부터 음성속도와 입모양 및 크기와의 관계를 퍼지 알고리즘을 이용하여 정립하였다. 기존 립싱크 방법은 음성 속도를 고려하지 않기 때문에 말의 속도와 상관없이 일정한 입술의 모양과 크기를 보여준다. 본 논문에서 제안한 방법은 음성 속도와 입술 모양의 관계를 적용하여 보다 인간에 근접한 립싱크의 구현이 가능하다. 또한 퍼지 이론을 사용함으로써 수치적으로 정확하게 표현할 수 없는 애매한 입 크기와 모양의 변화를 모델링 할 수 있다. 이를 증명하기 위해 제안된 립싱크 알고리즘과 기존의 방법을 비교하고 3차원 그래픽 플랫폼을 제작하여 실제 응용 프로그램에 적용한다.

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Development of 3D Human Body Modeling Module from Class Form structure (계층형 구조의 3D 인체 모델링 모듈 개발)

  • Lee, Kang-Il;Lee, Hyae-Jung;Jeong, Young-Sik;Han, Sung-Kook;Jeong, Seok-Tae
    • Proceedings of the Korea Information Processing Society Conference
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    • 2005.11a
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    • pp.205-208
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    • 2005
  • 3D 모델링 시스템이 최근에 여러 분야에 많이 이용되면서, 3D 인체 모델링 또한 사용가치가 높아지고 있다. 그러나 그에 따른 많은 시간과 노력이 필요하다는 것을 알 수 있다. 본 논문에서는 3D 인체 모델을 전문가가 아닌 일반 사용자들도 쉽게 구현할 수 있도록 빠르고 사실적인 시스템을 개발하였다. 이러한 3D 인체 모델링을 위하여, 기존의 연구들과 달리 Ase파일 포맷을 통하여 인체 모델을 생성하고 조금 더 정확하고 자연스럽게 모델링 할 수 있도록 계층형 구조의 모듈 개발을 시도하여 사실적인 3D 인체 모델링이 될 수 있도록 하였다.

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Motion-capture-based walking simulation of digital human adapted to laser-scanned 3D as-is environments for accessibility evaluation

  • Maruyama, Tsubasa;Kanai, Satoshi;Date, Hiroaki;Tada, Mitsunori
    • Journal of Computational Design and Engineering
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    • v.3 no.3
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    • pp.250-265
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    • 2016
  • Owing to our rapidly aging society, accessibility evaluation to enhance the ease and safety of access to indoor and outdoor environments for the elderly and disabled is increasing in importance. Accessibility must be assessed not only from the general standard aspect but also in terms of physical and cognitive friendliness for users of different ages, genders, and abilities. Meanwhile, human behavior simulation has been progressing in the areas of crowd behavior analysis and emergency evacuation planning. However, in human behavior simulation, environment models represent only "as-planned" situations. In addition, a pedestrian model cannot generate the detailed articulated movements of various people of different ages and genders in the simulation. Therefore, the final goal of this research was to develop a virtual accessibility evaluation by combining realistic human behavior simulation using a digital human model (DHM) with "as-is" environment models. To achieve this goal, we developed an algorithm for generating human-like DHM walking motions, adapting its strides, turning angles, and footprints to laser-scanned 3D as-is environments including slopes and stairs. The DHM motion was generated based only on a motion-capture (MoCap) data for flat walking. Our implementation constructed as-is 3D environment models from laser-scanned point clouds of real environments and enabled a DHM to walk autonomously in various environment models. The difference in joint angles between the DHM and MoCap data was evaluated. Demonstrations of our environment modeling and walking simulation in indoor and outdoor environments including corridors, slopes, and stairs are illustrated in this study.

A 3D Face Reconstruction and Tracking Method using the Estimated Depth Information (얼굴 깊이 추정을 이용한 3차원 얼굴 생성 및 추적 방법)

  • Ju, Myung-Ho;Kang, Hang-Bong
    • The KIPS Transactions:PartB
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    • v.18B no.1
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    • pp.21-28
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    • 2011
  • A 3D face shape derived from 2D images may be useful in many applications, such as face recognition, face synthesis and human computer interaction. To do this, we develop a fast 3D Active Appearance Model (3D-AAM) method using depth estimation. The training images include specific 3D face poses which are extremely different from one another. The landmark's depth information of landmarks is estimated from the training image sequence by using the approximated Jacobian matrix. It is added at the test phase to deal with the 3D pose variations of the input face. Our experimental results show that the proposed method can efficiently fit the face shape, including the variations of facial expressions and 3D pose variations, better than the typical AAM, and can estimate accurate 3D face shape from images.

Introducing a New Pedagogical Approach for Ergonomic Pattern Education: Leveraging a Half-Scale Body Form Based on 3D Modeling (인체공학적 패턴 교육을 위한 새로운 교수법 제안: 3D 모델링 기반으로 제작한 Half Scale Body Form를 이용하여)

  • Lin Chen;Yuhwa Hong;Juyeon Park
    • Fashion & Textile Research Journal
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    • v.26 no.1
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    • pp.78-87
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    • 2024
  • This study aimed to propose an innovative teaching pedagogy using a half-scale body form in apparel design education and evaluate its effectiveness in augmenting students' understanding of ergonomic patterns. Constructed in alignment with Phoenix's (2018) study, which used 3D body scanning and digital editing software, the half-scale body form was created through a five-step process, encompassing body measurement, 3D body modeling, fabrication of a physical half-scale body form, pattern making, and evaluation. Implemented in an undergraduate patternmaking course offered at a 4-year university in the metropolitan Seoul, this instructional approach's effectiveness was gauged through students' course projects and exit interviews. The results underscored the positive impact of the proposed teaching pedagogy on students' grasp of ergonomic pattern development, fostering a keen understanding of diverse body shapes and sizes and the relationship between the human body and garments. Furthermore, it played a role in cultivating positive body image and self-endorsement among students. The research contributes meaningfully by presenting a fresh perspective in apparel design education, seamlessly integrating advanced anthropometric and technological tools into a conventional patternmaking classroom. It offers a novel learning experience for students majoring in apparel, creating a fun and interactive teaching environment.

Comfort Evaluation of Posture Braces for Rounded Shoulders Using 2D and 3D Patterns (2D 및 3D 패턴 활용 둥근어깨 교정보조기 착용감 비교)

  • Oh, Miryung;Kim, Nam Yim;Park, Gin Ah
    • Journal of Fashion Business
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    • v.25 no.3
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    • pp.71-89
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    • 2021
  • The purpose of this study was to design posture braces for rounded shoulders by examining characteristics of incorrect postures of rounded shoulders. The review of information in literature on rounded shoulder postures, correction exercise methods, and posture correction devices, has prompted this study to determine the design and material of a proper posture brace for rounded shoulders. In order to develop the pattern of a posture brace for rounded shoulders for women, the study carried out a comfort evaluation of the braces based on the 2D patterns through drafting method by utilizing the body measurements and relational formulae associated with the major body measurement such as bust circumference and on the 3D patterns of the brace which were obtained from 3D human model of women in their early 20s in Korea. Differences in angles were noted when 2D and 3D patterns of shoulder posture braces were compared. The side neck point was relocated farther outside in the 3D pattern to allow additional flexibility in the back-neck area, and the shoulder band was lowered by 14.8°, increasing armhole area comfort. The upper hemline of the front panel was found to rotate upward at an angle of 22.0° as the underarm point of the 3D pattern moved upwards than the underarm point of the 2D pattern, which enhanced comfort in the abdomen area. The 3D designs of shoulder posture brace was preferred in this study, as they significantly improved comfort while conducting fit evaluation compared to the 2D patterns of shoulder posture brace.

Measurement and Modeling of Crosstalk and 3D Visual Fatigue Along with Horizontal Position in Mobile Glassless 3D Display Having Parallax Barrier (패럴랙스 배리어를 사용한 무안경식 휴대용 3차원 디스플레이의 수평위치에 따른 크로스톡 및 3차원 시각 피로의 측정과 모형 구축)

  • Park, JongJin;Kim, ShinWoo;Li, Hyung-Chul O.
    • Journal of Broadcast Engineering
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    • v.19 no.2
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    • pp.215-226
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    • 2014
  • The 3D technology has been spread slowly and the reason would be attributed to the fact that most commercialized 3D displays require 3D glasses. There have been various researches on human factors of glass type 3D display. In this study we measured and modeled crosstalk as well as 3D visual fatigue induced by mobile glassless 3D display. Crosstalk as well as visual fatigue varied depending on horizontal position of the 3D mobile display. Measured crosstalk was relative low around the center of the display and it increased at the side of the display. Similar results were found in the measurement of 3D visual fatigue and discomfort. These results imply that human factors should be considered in the process of design and evaluation of mobile 3D displays.