• 제목/요약/키워드: 3-dimensional monitoring

검색결과 288건 처리시간 0.024초

고속 주축의 상태모니터링 및 제어 알고리즘 설계 (Design of High Speed Spindles Active Monitoring and Control Algorithm)

  • 최현진;박철우;배정섭;안정훈;최성대
    • 한국기계가공학회지
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    • 제10권5호
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    • pp.13-19
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    • 2011
  • In this paper, the active monitoring and control system is developed. This system can monitor the status of high the speed spindle in real time during its processing, and can analyze its influence of dimensional accuracy and processing if any, and can control the machining condition to realize the machining system equipped with active monitoring and self-diagnostic features. Machining experiment was performed on 3 materials Al, Brass and S45C in order to derive the relation between active monitoring and control algorithm by the machining load. In addition, we measured surface roughness of processing specimen along with the data change of spindle rotating speed and conveying speed according to variation of machining load. Based on these experiments, we derived relations for each material that can be applied to the control algorithm to allow self control of the rotating speed and conveying speed according to the machining load.

Monitoring of Moisture and Dimensional Behaviors of Nail-Laminated Timber (NLT)-Concrete Slab Exposed to Outdoor Air

  • HWANG, Sung-Wook;CHUNG, Hyunwoo;LEE, Taekyeong;AHN, Kyung-Sun;PANG, Sung-Jun;BANG, Junsik;Won, Hyo;OH, Jung-Kwon;YEO, Hwanmyeong
    • Journal of the Korean Wood Science and Technology
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    • 제50권5호
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    • pp.301-314
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    • 2022
  • The moisture and dimensional behaviors of a nail-laminated timber (NLT)-concrete slab composed of an NLT-plywood composite and topping concrete are monitored for 385 days. The slab is developed for using as flexural elements such as floors. The humidity control of wood gently introduces significant fluctuations under the ambient relative humidity into the slab, and fluctuations in the relative humidity result in dimensional changes. The equilibrium moisture content of the slab increases from 6.7% to 15.3% during the monitoring period, resulting in a width (radial) strain of 0.58%. The length (longitudinal) strain is negligible, and the height (tangential) strain is excluded from the analysis because of abstruse signal patterns generated. Concrete pouring causes a permanent increase in the width of the NLT-plywood composite. However, the width deforms because the weight of the concrete mixture loosens the nail-laminated structure, not because of the significant amount of moisture in the mixture. The dimensional stabilization effect of the nail-laminated system is demonstrated as the composite strain is lower than the total strain of lumber and plywood, which are elements constituting the nail-laminated structure.

PLAXIS 3D simulation, FLAC3D analysis and in situ monitoring of Excavation stability

  • Lei, Zhou;Zahra, Jalalichi;Vahab, Sarfarazi;Hadi, Haeri;Parviz, Moarefvand;Mohammad Fatehi, Marji;Shahin, Fattahi
    • Structural Engineering and Mechanics
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    • 제84권6호
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    • pp.743-765
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    • 2022
  • Near-surface excavations may cause the tilting and destruction of the adjacent superstructures in big cities. The stability of a huge excavation and its nearby superstructures was studied in this paper. Some test instruments monitored the deformation and loads at the designed location. Then the numerical models of the excavation were made in FLAC3D (a three-dimensional finite difference code) and Plaxis-3D (a three-dimensional finite element code). The effects of different supporting and reinforcement tools such as nails, piles, and shotcretes on the stability and bearing capacity of the foundation were analyzed through different numerical models. The numerically approximated results were compared with the corresponding in-field monitored results and reasonable compatibility was obtained. It was concluded that the displacement in excavation and the settlement of the nearby superstructure increases gradually as the depth of excavation rises. The effects of support and reinforcements were also observed and modeled in this study. The settlement of the structure gradually decreased as the supports were installed. These analyses showed that the pile significantly increased the bearing capacity and decreased the settlement of the superstructure. As a whole, the monitoring and numerical simulation results were in good consistency with one another in this practically important project.

다중 도메인 비전 시스템 기반 제조 환경 안전 모니터링을 위한 동적 3D 작업자 자세 정합 기법 (Dynamic 3D Worker Pose Registration for Safety Monitoring in Manufacturing Environment based on Multi-domain Vision System)

  • 최지동;김민영;김병학
    • 대한임베디드공학회논문지
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    • 제18권6호
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    • pp.303-310
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    • 2023
  • A single vision system limits the ability to accurately understand the spatial constraints and interactions between robots and dynamic workers caused by gantry robots and collaborative robots during production manufacturing. In this paper, we propose a 3D pose registration method for dynamic workers based on a multi-domain vision system for safety monitoring in manufacturing environments. This method uses OpenPose, a deep learning-based posture estimation model, to estimate the worker's dynamic two-dimensional posture in real-time and reconstruct it into three-dimensional coordinates. The 3D coordinates of the reconstructed multi-domain vision system were aligned using the ICP algorithm and then registered to a single 3D coordinate system. The proposed method showed effective performance in a manufacturing process environment with an average registration error of 0.0664 m and an average frame rate of 14.597 per second.

3차원 환경 기반 무인 항공기 생존성 극대화를 위한 이동 경로 계획 (A Path Planning to Maximize Survivability for Unmanned Aerial Vehicle based on 3-dimensional Environment)

  • 김기태;전건욱
    • 산업공학
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    • 제24권4호
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    • pp.304-313
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    • 2011
  • An Unmanned Aerial Vehicle(UAV) is a powered pilotless aircraft, which is controlled remotely or autonomously. UAVs are currently employed in many military missions(surveillance, reconnaissance, communication relay, targeting, strike etc.) and a number of civilian applications(communication service, broadcast service, traffic control support, monitoring, measurement etc.). For accomplishing the UAV's missions, guarantee of survivability should be preceded. The main objective of this study is the path planning to maximize survivability for UAV based on 3-dimensional environment. A mathematical programming model is suggested by using MRPP(Most Reliable Path Problem) and solved by transforming MRPP into SPP(Shortest Path Problem). This study also suggests a $A^*PS$ algorithm based on 3-dimensional environment to UAV's path planning. According to comparison result of the suggested algorithm and SPP algorithms (Dijkstra, $A^*$ algorithm), the suggested algorithm gives better solution than SPP algorithms.

3D 공간정보와 비디오 융합에 의한 X3D기반 웹 가시화 (X3D Based Web Visualization by Data Fusion of 3D Spatial Information and Video Sequence)

  • 손홍규;김성삼;유병현;김상민
    • 대한공간정보학회지
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    • 제17권4호
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    • pp.95-103
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    • 2009
  • 전세계적으로 다양한 관측 센서 및 자료처리 기술개발을 통하여 현실 세계에 대한 3차원 공간정보 구축에 관한 관심이 높아지고 있으며, 사생활 침해 논란에도 불구하고 도시지역 곳곳에 설치된 CCTV가 교통관리나 범죄 예방 및 재난 모니터링을 위한 핵심 관측장비로서 활용되고 있다. 도시지역의 안전 확보와 각종 재난 예방을 위해 기구축된 3차원 공간정보에 CCTV 영상이나 비디오 자료를 연계시켜 유사시 발생한 상황을 실시간적으로 인터렉티브하게 파악하고 모니터링할 수 있는 감시 시스템의 필요성이 제기되고 있다. 따라서, 본 연구에서는 웹 가시화의 국제표준인 X3D를 기반으로 3차원 공간정보와 비디오 융합을 통하여 인터넷 상에서 실시간으로 인터렉티브하게 가시화할 수 있는 프로토타입 시스템을 개발하여 그 활용가능성을 제시하고자 하였다.

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성덕대왕신종의 3차원 디지털 기록화 의미와 모니터링 기초자료 구축 (Significance of Three-Dimensional Digital Documentation and Establishment of Monitoring Basic Data for the Sacred Bell of Great King Seongdeok)

  • 조영훈;송형록;이승은
    • 박물관보존과학
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    • 제24권
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    • pp.55-74
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    • 2020
  • 성덕대왕신종은 현재 표면의 문양과 명문을 중심으로 부식물이 존재하고, 일부 마모 흔적이 관찰되는 만큼 보존상태에 대한 디지털 정밀 기록이 필요한 시점이다. 따라서 이 연구에서는 4종류의 3차원 스캐닝과 무인항공사진측량을 이용하여 성덕대왕신종의 디지털 기록화를 수행하였고, 영상처리를 통해 다양한 형상분석을 실시하였다. 먼저 지상레이저스캐닝과 무인항공사진측량의 융합모델링 결과는 성덕대왕신종과 종각의 상호 공간적 관계를 구축할 수 있어 향후 지진에 의한 구조적 변형을 모니터링하는데 기초자료로 활용될 수 있을 것으로 판단된다. 또한 선행자료에 비해 4~9배 정도 높은 해상도를 보인 정밀스캐닝 결과는 성덕대왕신종의 문양 및 명문 가시화에 상당히 유용한 정보를 제공했으며, 표면 보존상태 변화를 파악할 수 있는 기초데이터로 매우 적절하였다. 성덕대왕신종의 원형 보존에 3차원 스캐닝 결과를 적극 활용하기 위해서는 단기적으로 추가적인 스캔을 하여 형상변화 시점과 지점을 설정할 필요가 있다. 만약 단기모니터링을 통해 큰 형상 변화가 확인되지 않는다면 중장기모니터링으로 전환할 필요가 있다.

가상현실을 이용한 가스플랜트의 VR Monitoring System 개발 (Development of VR Monitoring System for Gas Plant)

  • 서명원;조기용;박대유
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집C
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    • pp.213-218
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    • 2001
  • VR (Virtual reality) technologies have given engineers the ability to design, test, and evaluate engineering systems in a virtual environment. The virtual plant is the highlight of the application of the VR technology to plant engineering. Plant design, maintenance, control, management, operation are integrated in the virtual plant. The VR monitoring system including the concept of the virtual plant is developed to replace a current control room that has number of gages and warning lamps in two-dimensional panels which shows the operating status of a plant. The operating status of the plant is displayed in the VR monitoring system through the realistic computer graphics. Sophisticated, realistic and prompt control becomes possible. The VR monitoring system consists of advanced visualization, walk-through simulation and navigation. In the virtual environment, a user can navigate and interact with each component of a plant. In addition, the user can access the information by just clicking interesting component. The VR monitoring system is operated with various modules, such as (1) virtual plant constructed with Graphic Management System (GMS), (2) Touch & Tell System, and (3) Equipment DB System of Part. In order to confirm the usefulness of the VR monitoring system, a pilot gas plant which is currently being used for plant operator training is taken as application. The end of the paper gives an outlook on the future work and a brief conclusion.

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Three-dimensional Digital Documentation and Accuracy Analysis of the Choijin Lama Temple in Mongolia

  • Jo, Young Hoon;Park, Jun Huyn;Hong, Eunki;Han, Wook
    • 보존과학회지
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    • 제36권4호
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    • pp.264-274
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    • 2020
  • The Choijin Lama Temple is a representative example of 19th- to 20th-century architecture. The temple has been damaged by various development pressures and the effect of a harsh continental climate. This study digitalized the entire temple site using three-dimensional scanning to establish the basic data of conservational management and monitoring for spatial changes. A terrestrial laser scanning model of the temple was completed, which showed low registering error vectors (3.73 mm average) and dense point distances. Unmanned aerial vehicle (UAV) photogrammetry was also applied to verify its applicability to the spatial and environmental monitoring of the temple. The results showed that the overall point density of the UAV photogrammetry model is similar within a 10 mm resolution. The relatively low RMSE of UAV photogrammetry from the ground to the uppermost roof indicates the high applicability of integrating it with the terrestrial laser scanning model. The digital documentation of the Choijin Lama Temple is expected to have a great ripple effect on the documentation, conservation, and utilization of Mongolian cultural heritage sites.

A leak detection and 3D source localization method on a plant piping system by using multiple cameras

  • Kim, Se-Oh;Park, Jae-Seok;Park, Jong Won
    • Nuclear Engineering and Technology
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    • 제51권1호
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    • pp.155-162
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    • 2019
  • To reduce the secondary damage caused by leakage accidents in plant piping systems, a constant surveillance system is necessary. To ensure leaks are promptly addressed, the surveillance system should be able to detect not only the leak itself, but also the location of the leak. Recently, research to develop new methods has been conducted using cameras to detect leakage and to estimate the location of leakage. However, existing methods solely estimate whether a leak exists or not, or only provide two-dimensional coordinates of the leakage location. In this paper, a method using multiple cameras to detect leakage and estimate the three-dimensional coordinates of the leakage location is presented. Leakage is detected by each camera using MADI(Moving Average Differential Image) and histogram analysis. The two-dimensional leakage location is estimated using the detected leakage area. The three-dimensional leakage location is subsequently estimated based on the two-dimensional leakage location. To achieve this, the coordinates (x, z) for the leakage are calculated for a horizontal section (XZ plane) in the monitoring area. Then, the y-coordinate of leakage is calculated using a vertical section from each camera. The method proposed in this paper could accurately estimate the three-dimensional location of a leak using multiple cameras.