• Title/Summary/Keyword: 건물적용

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Estimation of Individual Leaf Area, Fresh and Dry Weights of Cucumber by Regression Model and Neural Network (회귀모델과 신경회로망에 의한 오이 개개 엽면적, 생체중 및 건물중 예측)

  • 조영렬;손정익
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 2001.11a
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    • pp.178-180
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    • 2001
  • 작물의 엽면적 등 다양한 생육정보를 간편하고 비파괴적으로 추정할 수 있다면 작물의 생리 생태학적 모델에의 적용을 통하여 다양한 작물 연구에 중요한 공헌을 할 수 있다. 본 연구에서는 오이 개개 잎의 형태정보를 이용하여 오이의 개개 엽면적, 생체중 및 건물중 예측하는 것을 목적으로 하였고, 이를 위하여 엽면적은 5가지 모델을 사용하였고, 생체중 및 건물중은 6가지의 모델을 사용하여 분석하였다. 또한 신경회로망은 3 layer의 back propagation method를 사용하여 분석하였다. 각 모델들은 독립변수로는 Robinson & Pharr이 사용한 개개 잎의 폭 및 길이를 사용하였다. 회귀모델에 의한 추정 결과, 모델의 정확성 및 정밀성은 엽면적 > 생체중 > 건물중 순 이었지만, 특히 건물중의 경우는 상대적으로 낮은 상관관계를 가지는 것으로 나타났다. 회귀모델을 사용하여 건물중 추정하는 것에는 한계가 있는 것으로 생각되며, 신경회로망도 이와 유사한 관계를 나타냈지만 다양한 변수 수정을 통하여 상관계수를 증가시킬 수 있을 것이라고 생각된다.

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Building occlusion correction for high resolution satellite imagery (고해상도 위성영상의 건물 폐색영역 보정)

  • Kim, Hye-Jin;Choi, Jae-Wan;Kim, Yong-Il
    • Proceedings of the KSRS Conference
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    • 2008.03a
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    • pp.59-62
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    • 2008
  • 고해상도 위성영상의 관측시, 위성센서는 보통 지표면으로부터 어느정도의 기울기를 갖는 상태에서 촬영이 되기 때문에 영상 내에서 건물은 지표면에 누워있는 형태로 나타나게 된다. 때문에 건물의 옆벽면 및 지붕에 의해 지표의 일부가 가려지게 되는데 이를 건물에 의한 폐색영역이라 한다. 이러한 폐색영역은 건물의 기복오차가 제거된 정사영상에서는 검게 비어있는 상태로 남게 되며 시각적으로나 영상판독시 불편을 초래하여 위성영상을 베이스 맵으로 사용하기 어렵게 하는 요인이 된다. 이러한 폐색영역을 보정하기 위해서는 일반적으로 동일 영역에 대한 두 장 이상의 영상을 이용하여 폐색 지역을 채워넣는 작업을 수행하나, 이 방법은 위성영상 구입 및 처리 비용에 대한 부담이 커 실제로 자주 사용되지 못 한다. 본 연구에서는 고해상도 위성 단영상의 건물에 의한 폐색영역에, 주변 화소값들의 분광 및 기하학적 특성을 이용하여 복원하는 기술인 inpainting 기법을 적용하여 그 보정 결과를 평가하고 활용 가능성을 검증해보고자 한다.

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High-rise buildings using vibration control devices (제진장치를 이용한 고층건물)

  • 민경원
    • Computational Structural Engineering
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    • v.4 no.4
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    • pp.10-13
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    • 1991
  • 현대의 건물은 초고층화 되어가기 때문에 바람이나 지진에 의한 건물의 과다진동이 일어나며 이것은 기초분리(base isolation) 방법 또는 제진장치를 설치함으로써 해결할 수가 있다. 기초분리 방법은 지진 다발 지역에서 지진에 의한 피해를 감소시키기 위하여 주로 이용되며 제진장치는 지진은 물론 바람을 받는 고층건물, 타워, 다리 등의 대형 구조물의 제진에 사용이 되며 병원, 컴퓨터센터, 그리고 반도체 공장 등 정밀한 작업이 이루어지는 곳에서의 국부적인 제진에 적용이 되고 있다. 제진장치는 수동제진장치와 능동제진장치로 대별이 되며 원리는 질량을 이용한 건물의 감쇠력을 증대시키는 데 있다. 능동제진장치를 이용한 시스템은 과다한 설치비와 운영비 뿐만 아니라 강한 바람이나 지진이 왔을 때 전력 중단이 되어 작동이 되지 않을 때가 있으므로 현재로서는 수동제진장치가 많이 이용이 되고 있다. 따라서 현재 강한 바람이나 지진에 대한 건물전체의 거동은 수동제진장치에 의하여 대처하고 약한 바람과 지진 등에 대한 국부적인 제진에는 능동제진장치를 이용하는 복합제진시스템(hybrid vibration control system)이 제시되고 있다.

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Construction Sequence Analysis for Checking Stability in Complex-Shaped High-Rise Building under Construction (비정형 초고층 건물의 시공 중 안정성 검토를 위한 시공단계해석)

  • Jang, Dong-Woon;Kang, Ji-Hun;Chea, Seung-Yun;Eom, Tae-Sung;Kim, Jae-Yo
    • Proceedings of the Computational Structural Engineering Institute Conference
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    • 2010.04a
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    • pp.263-266
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    • 2010
  • 비정형 형상의 초고층 건물이 증가함에 따라, 설계 시공 계획 단계에서의 시공 중 건물의 구조적 안정성 검토가 핵심 사항으로 부각되고 있다. 시공 중 비정형 초고층 건물의 안정성을 확보하기 위해서는, 횡력저항시스템이 완전히 형성되기 전 구조체 자중의 불균형 분포에 의해 발생하는 수직부재의 불균등 축소, 골조의 기울어짐 혹은 횡변위 등이 시공단계해석에 의하여 검토되어야 하며, 시공단계해석은 구조건전성모니터링, 시공 보정 프로그램, 시공계획 수립 등과 체계적으로 결합되어 진행되어야 한다. 이 논문은 시공 중 비정형 초고층 건물의 구조 안정성 검토를 위하여, 실제 비정형 초고층 프로젝트에 시공단계해석을 적용하였으며, 시공 중 초고층 건물의 안정성 확보를 위한 주요 검토 항목 및 방법을 제시하였다.

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An Analysis on the Change of Smart City Space: Convergence Change of District, Street, Building and Facility (스마트시티 공간의 변화 분석: 지구, 가로, 건물, 시설의 융합 변화)

  • Han, Ju Hyung;Lee, Sang Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.5
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    • pp.537-550
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    • 2018
  • The development focus of a smart city has been changed gradually from a physical development aspect to a space development aspect. In a space development aspect, the major application technologies are Environment Technology (ET), Information Technology (IT) and Environment Information Technology. On the other hand, it is unclear if the space convergence in a smart city has been changed by the 3 technologies. Therefore, specific analysis was performed on the convergence change of smart city 4 spaces (District, Street, Building, Facility) using the 3 technologies. The convergence distribution ratio according to the periods (period 1 : 1972~1999, period 2 : 2000~2009, period 3 : 2010~2017) among the spaces, ET (Environment Technology), IT (Information Technology), ET+IT (Environment Information Technology) in a smart city were examined. The smart city was high in the order of 'District (53/43%) - Building (36/29.1%) - Street (22/17.9%) - Facility (12/10.0%)' in the number of applications and ratio of convergence (Technology Convergence) at Period 1 (1972~1999). The smart city was high in the order of 'District (223/32.4%) - Building (197/28.6%) - Street (195/28.3%) - Facility (74/14.8%)' in the number of applications and ratio of convergence (Technology Convergence) at Period 2 (2000~2009). At period 3, the District (467/33%) was also the highest. On the other hand, the street (384/27.4%) was higher than the building (361/25.8%) and facility (188/13.4%) in smart city space. Fourth, the smart city was high in the order of 'District - Building - Street - Facility' in the number of applications and ratio of convergence (Technology Convergence) at Periods 1 (1972~1999) and 2 (2000~2009). In contrast, the average of number was high in the order of 'Building - Street - District - Facility'. At period 3(2010~2017), the number of applications and the ratio of convergence was high 'District - Street - Building - Facility'; the average of number was the same as in period 1 and 2. As a result, smart city space has been changed by the development of macroscopic urban spaces in the initial stage. Since then, district space-centric development and building space are confused with devices/technologies and changed for citizen inflow. The building space has evolved continually and smart city space will be expected to revitalize the street space connecting completed buildings.

Application of Hydro-Cartographic Generalization on Buildings for 2-Dimensional Inundation Analysis (2차원 침수해석을 위한 수리학적 건물 일반화 기법의 적용)

  • PARK, In-Hyeok;JIN, Gi-Ho;JEON, Ka-Young;HA, Sung-Ryong
    • Journal of the Korean Association of Geographic Information Studies
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    • v.18 no.2
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    • pp.1-15
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    • 2015
  • Urban flooding threatens human beings and facilities with chemical and physical hazards since the beginning of human civilization. Recent studies have emphasized the integration of data and models for effective urban flood inundation modeling. However, the model set-up process is tend to be time consuming and to require a high level of data processing skill. Furthermore, in spite of the use of high resolution grid data, inundation depth and velocity are varied with building treatment methods in 2-D inundation model, because undesirable grids are generated and resulted in the reliability decline of the simulation results. Thus, it requires building generalization process or enhancing building orthogonality to minimize the distortion of building before converting building footprint into grid data. This study aims to develop building generalization method for 2-dimensional inundation analysis to enhance the model reliability, and to investigate the effect of building generalization method on urban inundation in terms of geographical engineering and hydraulic engineering. As a result to improve the reliability of 2-dimensional inundation analysis, the building generalization method developed in this study should be adapted using Digital Building Model(DBM) before model implementation in urban area. The proposed building generalization sequence was aggregation-simplification, and the threshold of the each method should be determined by considering spatial characteristics, which should not exceed the summation of building gap average and standard deviation.

Urban Area Building Reconstruction Using High Resolution SAR Image (고해상도 SAR 영상을 이용한 도심지 건물 재구성)

  • Kang, Ah-Reum;Lee, Seung-Kuk;Kim, Sang-Wan
    • Korean Journal of Remote Sensing
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    • v.29 no.4
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    • pp.361-373
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    • 2013
  • The monitoring of urban area, target detection and building reconstruction have been actively studied and investigated since high resolution X-band SAR images could be acquired by airborne and/or satellite SAR systems. This paper describes an efficient approach to reconstruct artificial structures (e.g. apartment, building and house) in urban area using high resolution X-band SAR images. Building footprint was first extracted from 1:25,000 digital topographic map and then a corner line of building was detected by an automatic detecting algorithm. With SAR amplitude images, an initial building height was calculated by the length of layover estimated using KS-test (Kolmogorov-Smirnov test) from the corner line. The interferometric SAR phases were simulated depending on SAR geometry and changable building heights ranging from -10 m to +10 m of the initial building height. With an interferogram from real SAR data set, the simulation results were compared using the method of the phase consistency. One of results can be finally defined as the reconstructed building height. The developed algorithm was applied to repeat-pass TerraSAR-X spotlight mode data set over an apartment complex in Daejeon city, Korea. The final building heights were validated against reference heights extracted from LiDAR DSM, with an RMSE (Root Mean Square Error) of about 1~2m.

Development of the Building Boundary Detection for Building DEM Generation (건물 DEM 생성을 위한 경계검출법 개발)

  • 유환희;손덕재;김성우
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.17 no.4
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    • pp.421-429
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    • 1999
  • It is estimated that, in the twenty-first century, 70% of global citizens will live in urban areas. This accelerated urbanization will require a greater need for the building DEM and orthoimagery along with Geographic Information System for urban management. The building DEM requires the detection of outlines showing building shapes. To do this, automatic and semiautomatic building extractions are usually used. However, in cases where automatic extraction is performed directly from the aerial images, accurate building outline extraction is very difficult because of shadow, roof color, and neighboring trees making it hard to discern building roofs. To overcome this problem semiautomatic building extraction was suggested in this paper. When a roof texture was homogeneous, building outline detection was performed by mouse-clicking on a part of the roof. To construct the building outlines when the texture was not homogeneous, a computer program was developed to search out corner points by clicking spots near corner points. The building DEM was generated by taking into account building outlines and heights calculated by image matching.

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Analysis of the Effect of Seismic Loads on Residential RC Buildings using the Change in Building Size and Return Period (건물 규모 및 재현주기 변화에 따른 주거용 RC건물에 대한 시공 중 지진하중의 영향 분석)

  • Seong-Hyeon Choi;Jae-Yo Kim
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.36 no.2
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    • pp.85-92
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    • 2023
  • Unlike a completed building, a building under construction may be at risk in terms of safety if a load exceeds the value considered in the design stage owing to various factors, such as a load action different from that in the design stage and insufficient concrete strength. In addition, if an earthquake occurs in a building under construction, greater damage may occur. Therefore, this study studied example models with various sizes of 5, 15, 25, and 60 floors for typical building types and analyzed the effects of seismic load on buildings under construction using construction-stage models according to frame completeness. Because the construction period of the building is much shorter than the period of use after completion, applying same earthquake loads as the design stage to buildings under construction may be excessive. Therefore, earthquakes with a return period of 50 to 2,400 years were applied to the construction stage model to review the seismic loads and analyze the structural performances of the members. Thus, we reviewed whether a load exceeding that of the design stage was applied and the return period level of the earthquake that could ensure structural safety. In addition, assuming the construction period of each example model, the earthquake return period according to the construction period was selected, and the design appropriateness with the selected return period was checked.

Prediction of the Ratios of Increase in Lateral Stiffness for Preliminary Structural Design of Tall Buildings (초고층건물의 초기 구조설계를 위한 횡강성 증가율 예측)

  • Jung, Jong-Hyun
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.20 no.4
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    • pp.453-462
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    • 2007
  • The purpose of this study is to predict the ratios of increase in lateral stiffness for preliminary structural design of tall buildings. For this, the basic models of tall buildings with 60 stories are generated. The basic models have typical floor plan of Box or T type. And the factors for increase in lateral stiffness are selected as follows; the addition of outriggers, increase in material strength, and increase in member size of core walls, outrigger columns, and outrigger walls. Then these factors are applied to the basic models and their effects are investigated using the results of structural analysis. Finally, based on the investigation, the ratios of increase in lateral stiffness for preliminary structural design of tall buildings are proposed and applied to examples of tall building for verification of the ratios.