• Title/Summary/Keyword: 형상 공간

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An SVM-based Face Verification System Using Multiple Feature Combination and Similarity Space (다중 특징 결합과 유사도 공간을 이용한 SVM 기반 얼굴 검증 시스템)

  • 김도형;윤호섭;이재연
    • Journal of KIISE:Software and Applications
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    • v.31 no.6
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    • pp.808-816
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    • 2004
  • This paper proposes the method of implementation of practical online face verification system based on multiple feature combination and a similarity space. The main issue in face verification is to deal with the variability in appearance. It seems difficult to solve this issue by using a single feature. Therefore, combination of mutually complementary features is necessary to cope with various changes in appearance. From this point of view, we describe the feature extraction approaches based on multiple principal component analysis and edge distribution. These features are projected on a new intra-person/extra-person similarity space that consists of several simple similarity measures, and are finally evaluated by a support vector machine. From the experiments on a realistic and large database, an equal error rate of 0.029 is achieved, which is a sufficiently practical level for many real- world applications.

A Study on the Relational Matching Method for Road Pavement Markings in Aerial Images (항공사진에 나타난 도로 노면표식을 위한 관계형 매칭 기법에 관한 연구)

  • Kim, Jin-Gon;Han, Dong-Yup;Yu, Ki-Yun;Kim, Yong-Il
    • 한국지형공간정보학회:학술대회논문집
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    • 2004.10a
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    • pp.25-31
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    • 2004
  • To obtain the 3-D coordinates of the urban roads from aerial images, the accurate matching technique in road areas is required. In this paper, we suggest the relational matching method that is performed by comparison of relationships of road pavement markings after they are extracted from aerial images using geometric properties and spatial relationships of the pavement markings. Relational matching requires not only high level description of features but also the solution for inexact matching problems. In addition, it needs a lot of tests for the reliable final result. In this research, we described features as calculating geometric properties of the pavement markings, suggested the solution for inextact matching problems, and performed tests to decide whether the result is acceptable or not, which use the property that road areas are flat. In order to evaluate the accuracy of matching, we made a visual evaluation and compared the result of this technique with those measured by analytical photogrammetry.

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Array gain estimated by spatial coherence in noise fields (소음 환경에서 공간상관성을 이용한 배열이득 추정)

  • Park, Ji Sung;Choi, Yong Wha;Kim, Jea Soo;Cho, Sungho;Park, Jung Soo
    • The Journal of the Acoustical Society of Korea
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    • v.35 no.6
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    • pp.427-435
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    • 2016
  • Array Gain (AG) is a metric to measure the performance of an array of acoustic sensors. AG is affected by the configuration of array, frequency and array element spacing, and the directivity of the ambient noise. In this paper, an algorithm to calculate AG based on the spatial coherence is used, and the results are verified through sea-going experiment. The method using the spatial coherence can be used to consider the arbitrary shape of an array and directionality of ambient noise. In the sea-going experiment, the towed source was used to transmit the Continuous Wave (CW), and was received at the horizontal line array on the seabed. The ambient noise was measured between the source transmission. The experimental AG was calculated from the SNR (Signal to Noise Ratio) of single sensor and an array of sensors. Finally, the predicted AG is shown to agree with the experimental value of AG.

A Study on the Structural System of Space Configuration in Architectural Plane - Focusing on the Coalesce scheme development for part-whole Process - (건축 평면에서 공간 형상의 구조 체계에 관한 연구 - 부분이 전체를 이루는 합체 도식 개발을 중심으로 -)

  • Piao, Shun-Mei;Yoon, Chae-Shin
    • Journal of the Architectural Institute of Korea Planning & Design
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    • v.34 no.9
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    • pp.9-20
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    • 2018
  • There are many large and small spaces in the interior of the building, and these spaces are arranged and connected to form a systematic spatial structure. A structure is a collection of several parts to form a whole. In other words, the spatial structure in architecture can be seen as a whole organized and organized as individual unit spaces are gathered together. Therefore, in order to understand the spatial structure, we first need to define the unit spaces that form part, how they are interconnected and arranged, and then understand how and how these unit spaces are organized to form a whole. The main purpose of this study is to study the structural system of space based on the shape information of space on architectural plane. This means interpreting the process and method of how the unit spaces defined as a certain shape on the architectural plane are organized step by step, integrated into a higher level, and eventually integrated into one whole. In this paper, the shape and layout of the unit space are identified in the architectural plan, the connection relation is defined, and expressed in the network form. And suggests a new methodology for interpreting the organizational process in which the following spaces are integrated as a whole. This new methodology is based on human perceptual characteristics. When people recognize an object, they recognize the object partly and completely. We want to explain the relationship between parts of space and the whole according to their characteristics.

Inverse Estimation Method for Spatial Randomness of Material Properties and Its Application to Topology Optimization on Shape of Geotechnical Structures (재료 물성치의 공간적 임의성에 대한 역추정 방법 및 지반구조 형상의 위상 최적화 적용)

  • Kim, Dae-Young;Song, Myung Kwan
    • Journal of the Korean Geosynthetics Society
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    • v.21 no.3
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    • pp.1-10
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    • 2022
  • In this paper, the spatial randomness and probability characteristics of material properties are inversely estimated by using a set of the stochastic fields for the material properties of geotechnical structures. By using the probability distribution and probability characteristics of these estimated material properties, topology optimization is performed on structure shape, and the results are compared with the existing deterministic topology optimization results. A set of stochastic fields for material properties is generated, and the spatial randomness of material properties in each field is simulated. The probability distribution and probability characteristics of actual material properties are estimated using the partial values of material properties in each stochastic field. The probability characteristics of the estimated actual material properties are compared with those of the stochastic field set. Also, response variability of the ground structure having a modulus of elasticity with randomness is compared with response variability of the ground structure having a modulus of elasticity without randomness. Therefore, the quantified stochastic topology optimization result can be obtained with considering the spatial randomness of actual material properties.

Visualization of 3D STEP Geometry Data on the Internet (인터넷에서 3차원 STEP 형상정보의 가시화)

  • Oh, Yuchon;Han, Soon-Hung
    • Journal of the Korea Computer Graphics Society
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    • v.2 no.2
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    • pp.69-74
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    • 1996
  • With the emergence of integrated global market and increased competition, many companies are interested in sharing the product model data. One of the solutions is to share the product model data over the computer network or the internet using a standard format. CAD/CAM, STEP, and internet technologies make it possible to share the product model data. This paper presents methods to visualize 3D STEP geometry data on the internet. To create an internet-based STEP model visualizer, the programming language Java and 3D scene description language VRML have been experimented. The STEP geometry data can be displayed either by Java applets of by a VRML browser. These visualization technologies are applied to a PDM development. Engineers who have a low cost web browser can share the expensive design information even at a remote site.

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Extracting Building Element Geometry from BIM/IFC Physical Files (BIM/IFC 파일로부터 건물요소의 형상모델 추출에 관한 연구)

  • Goh, Il-Du;Choi, Joong-Hyun;Kim, E-Doo;Lee, Jae-Min
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.22 no.2
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    • pp.163-172
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    • 2009
  • BIM technologies based on three-dimensional parametric solid modeling can provide building industries with a wide range of information, and then enable not only to automate architectural drawings, detect clashes between building components, and estimate building materials, but also to manage effectively architectural and engineering information about building spaces, structures, energy, just-in-time delivery, facility management, and code checking. This paper presents an implementation to extract geometric data from IFC files, and validates the system with simple and complex buildings.

형상계수법을 이용한 크라이오펌프용 냉각판의 기체분자 포획능력 해석

  • Im, Jeong-Bin;Gang, Byeong-Ha;Park, Seong-Je
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.12-12
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    • 2010
  • 첨단 공정이 필요한 반도체와 LCD, PDP, LED 등의 디스플레이 및 IT 부품을 제조하는데 필요한 장비의 고성능화와 작업환경의 고청정화에 따른 초고진공펌프의 수요 확대와 앞으로 전개될 한-미 FTA에 따른 시장 확대로 인해 크라이오펌프의 국산화가 시급한 실정이다. 고성능 크라이오펌프를 만들기 위해서는 냉각판을 극저온으로 냉각하기 위한 극저온 냉동기 개발도 중요하지만 냉각판(cryoarray)에 최대한 많은 분자를 포획시키는 것 또한 최우선적으로 고려되어야 할 사항 중 하나이다. 이에 본 논문은 크라이오펌프용 냉각판의 분자포획능력에 대하여 연구하였다. 해석에 이용한 냉각판은 현재 상용화된 모델들 중 원형 중앙판에 $45^{\circ}$ 하향 skirt가 달린 형태이며 8장의 냉각판이 일정한 간격을 두고 아래쪽으로 적층되어 있다. 냉각판의 분자포획능력의 해석은 형상계 수법(view factor method)을 이용해 수행하였다. 형상계수법은 크라이오펌프를 n개의 미소면적으로 구성된 밀폐된 공간으로 가정하고 각 미소면적요소의 온도와 흡착계수, 표면조건 그리고 분자유속이 일정하다는 조건을 이용해 분자유속에 관해 n개의 대수연립방정식을 얻고 이 대수연립방정식을 풀어 냉각판의 분자포획능력을 구한다. 해석에 이용한 냉각판의 기체분자포획능력이 구속된 형상에서 얼마나 우수한 가를 알아보기 위해 중앙판의 직경, 입구와 냉각판 사이의 거리, 그리고 각 냉각판 사이의 거리를 변화시켜가며 해석을 수행하고 그 결과를 비교, 분석하였다.

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A numerical study for initial elastic displacement at tunnel side-wall due to configuration of the tunnel excavation (굴착단면 형상에 따른 터널 초기탄성변위의 수치해석적 연구)

  • Kim, Sang-Hwan;Jung, Hyuk-Il;Lee, Min-Sang
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.4 no.3
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    • pp.175-184
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    • 2002
  • Ground reaction curve is very useful information for estimating the installation time of the tunnel support. The ground reaction curve can be estimated by analytical closed form solutions derived in case of circular section and isotropic stress condition. The nature of the ground reaction, however, depends significantly on tunnel configurations. Nevertheless, few purely analytical and experimental studies of this problem due to tunnel configurations appear to have been carried out. Therefore, it is necessary to investigate the influence of tunnel configurations in order to use simply in practical design. This paper describes a numerical study for the intial elastic displacement in the ground reaction curve due to configuration of tunnel excavation. In order to evaluate the applicability of analytical closed form solution in practical design, the parametric studies were carried out by numerical analysis in elastic tunnel behaviour. In the studies, S value, namely configuration factor, defined as the ratio between tunnel height (b) and width (a), varies between 0.5 and 3.0, initial ground vertical stress varies between 5~30 MPa for each S values. The results indicated that the self-supportability of ground is larger in the ground having low S value. It, however, is suggested that the applicability of closed form solution may not be adequate to determine directly the installation time of the support and self-supportability of ground. It should be necessary to perform the additional numerical analysis.

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Influence of electrode geometry on electrical resistivity survey: Numerical study (전극의 기하학적 형상이 전기비저항 탐사에 미치는 영향: 수치 해석 연구)

  • Tae-Young Kim;Seung-Hun Lee;Hee-Hwan Ryu;Song-Hun Chong
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.25 no.2
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    • pp.101-120
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    • 2023
  • Electrical resistivity survey have been widely conducted at diverse scales, from a few centimeters for laboratory tests to kilometers for field tests. It measures electrical resistance through relationship of electric potential difference and current between two electrodes penetrated on the surface of medium, and eventually quantifies electrical resistivity known as inherent properties of the medium. In field or full-scale test, it assumes the electrodes as equivalent half-sphere electrodes that have a same surface area with different electrodes for ease of calculation because the contact area between electrode and medium is small and sufficient distance between two electrodes. However, small-scale laboratory test is significantly affected by the electrode geometries (penetrated depth, height, radius of electrode and distance between electrodes), which change the equipotential surface and electric current flow. Indeed, the electrode geometries may eventually cause a difference of electrical resistivity value. This study reviews the theoretical electrical resistance derived with various electrode geometries (half-sphere, cylinder, cylindrical with half-spherical tip, cylindrical with conical tip) and verifies the developed numerical module by comparing results with the theoretical electrical resistance. The distributions of electrical resistance around electrodes and among electrodes are analyzed. In addition, it is discussed how the electrical characteristic of cylindrical electrode with conical tip widely used in field test has effect on the electric current flow.