• 제목/요약/키워드: Orientation Error

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생성적 적대 신경망을 이용한 행성의 장거리 2차원 깊이 광역 위치 추정 방법 (Planetary Long-Range Deep 2D Global Localization Using Generative Adversarial Network)

  • 아하메드 엠.나기브;투안 아인 뉴엔;나임 울 이슬람;김재웅;이석한
    • 로봇학회논문지
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    • 제13권1호
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    • pp.26-30
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    • 2018
  • Planetary global localization is necessary for long-range rover missions in which communication with command center operator is throttled due to the long distance. There has been number of researches that address this problem by exploiting and matching rover surroundings with global digital elevation maps (DEM). Using conventional methods for matching, however, is challenging due to artifacts in both DEM rendered images, and/or rover 2D images caused by DEM low resolution, rover image illumination variations and small terrain features. In this work, we use train CNN discriminator to match rover 2D image with DEM rendered images using conditional Generative Adversarial Network architecture (cGAN). We then use this discriminator to search an uncertainty bound given by visual odometry (VO) error bound to estimate rover optimal location and orientation. We demonstrate our network capability to learn to translate rover image into DEM simulated image and match them using Devon Island dataset. The experimental results show that our proposed approach achieves ~74% mean average precision.

3차원 영상처리를 이용한 안면마비 평가시스템 개발 (Development of Facial Palsy Grading System with Three Dimensional Image Processing)

  • 장민;신상훈
    • 재활복지공학회논문지
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    • 제9권2호
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    • pp.129-135
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    • 2015
  • 본 연구에서는 3차원 영상처리와 노팅험 스케일을 이용하여 안면마비 평가 시스템을 개발하였다. 시스템은 측정부, 영상처리부, 연산부, 그리고 안면마비 평가 및 출력부로 구성되어 있다. 두 개의 웹캠을 사용하여 안면부의 8곳에 부착된 마커의 3차원 위치를 계산하였으며, 이를 이용하여 노팅험 스케일을 계산하고 화면에 보여준다. 피험자의 자세변화와 측정방식이 노팅험 스케일에 미치는 영향을 조사하였다. 측정방식은 2차원과 3차원을 비교하였으며, 피험자자세는 정면응시와 $11^{\circ}$ 측면응시를 비교하였다. 측면응시한 피험자를 2차원 방식으로 측정한 경우의 오차가 가장 컸다. 3차원 측정방식이 피험자의 자세변화에 따른 오차에 가장 덜 민감하였다.

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유연한 링크를 가진 3자유도 로봇조작기 진동의 펴지제어 (Fuzzy Vibration Control of 3 DOF Robot Manipulator with Flexible Link)

  • 김재원;양현석;박영필
    • 대한기계학회논문집A
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    • 제20권12호
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    • pp.3883-3891
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    • 1996
  • Performance and productivity of robot manipulator can be improved by increasing its working speed and extending its link length. But heavy weght of the commercial robot links, considered as "rigid body", limits its mazimum working speed and the weght of the links can be reduced for high speed operation. But this light-weight link or long link for special use cannot be consideredas "rigid" structure and vibration of the link due to its flexibility causes errors in end-effector position and orientation. Thus the elastic behaviro of the flexible link should be taken care of for increasing work speed and getting smaller error of end-effector position. In this paper, the fuzzy control theory is selected to design the controller which controlos the joint positions of the robot manipulator and suppress the vibration of flexible link. In the forst place, for the 1 DOF flexible link system, the fuzzy control theory is implemented. The contdroller for the 1 DOF flexible link system is designed. Experimental research is carried out to examine the controllability and the validity of the fuzzy control theory based controller. Next, using the extended desing schemes for the case of the 1 DOF flexible link system and usign the experimental phenomena of the 3 DOF flexible link system, the fuzzy controller for the 3 DOF flexible link system is desinged and experimented.ed and experimented.

이방성 적층복합재 구조에서 AE 발생원 위치표정을 위한 실용적인 방법 (A Practical Method of Acoustic Emission Source Location in Anisotropic Composite Laminates)

  • 김정곤;강용규;권오양
    • 비파괴검사학회지
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    • 제23권3호
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    • pp.237-245
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    • 2003
  • 이방성 복합재료 적층판에서는 섬유의 배열방향에 따라 탄성계수가 변하므로 속도가 섬유의 방향성에 의존하게 된다. 등방성 속도를 기준으로 도달 시간차를 측정하는 전통적인 2차원 음향방출 위치표정 방법을 그대로 적용할 경우 위치표정의 오차가 매우 커지며, 그 과정이 복잡해지는 것을 피할 수 없다. 본 연구에서는 위치표정의 대상이 되는 관심영역(ROI)를 마치 유한요소법에서 사용하는 메쉬(mesh)처럼 적절한 크기의 정사각형 요소로 나눈 뒤, 각각을 가상의 AE 발생원으로 간주하였으며, 모든 요소에 대해 이방성을 고려한 속도를 기준으로 각 센서와의 도달시간차를 구하였다. 실험적인 검증을 위하여 알루미늄 박판 및 복합재료 적층판에 대해 $0^{\circ}$ 부터 $90^{\circ}$까지의 속도를 측정하고 위치표정을 실시함으로써 이방성 적층복합재로 이루어진 실제 구조물에서의 실시간 활용가능성을 확인하였다.

실시간 공중 자료획득 시스템을 위한 GPS/INS/AT를 이용한 실시간 위치/자세 결정 (Determinate Real-Time Position and Attitude using GPS/INS/AT for Real-time Aerial Monitoring System)

  • 한중희;권재현;이임평;최경아
    • 한국측량학회지
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    • 제28권5호
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    • pp.531-537
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    • 2010
  • 실시간 공중자료획득 시스템은 긴급상황에서 실시간으로 공간정보를 생성하기 위해 빠른 매핑을 수행하는 시스템이다. 이 시스템은 GPS/INS 통합 알고리즘에서 제공한 위치 및 자세를 사용하여 무기준점 방식의 AT(aerial truangulation)을 수행한다. 따라서 순차적으로 AT을 통한 조정된 위치 및 자세를 얻을 수 있다면, 이를 칼만필터의 측정치로 하여 위치 및 자세를 보정할 수 있다. 이에 본 연구는 무인항공기 기반의 항공시스템을 기준으로 GPS/IMS Image 시뮬레이션 데이터를 생성하였다. 생성된 시뮬레이션 데이터를 이용하여 GPS/INS 통합 알고리즘을 통한 AT 수행결과와 AT을 통해 조정된 위치 및 자세를 이용하여 GPS/INS 위치 및 자세를 보정하는 GPS/INS/AT 통합 알고리즘에 의해 계산된 AT의 결과를 산출하여 비교하였다. 비교분석 결과, GPS/INS/AT 통합 알고리즘으로 AT를 수행한 결과가 GPS/INS를 이용한 AT를 수행한 결과보다 정확성이 높은 것을 확인하였다. 그러나 항체가 회전을 할 경우에는 위치 오차가 GPS/INS로 부터의 위치오차보다 높게 나오는 경향을 보였으며, 추후 분석이 필요할 것이라고 사료된다.

비선형 보간법을 이용한 수중 이미지 소나의 3 차원 해저지형 실시간 생성기법 (Real-time Data Enhancement of 3D Underwater Terrain Map Using Nonlinear Interpolation on Image Sonar)

  • 이인규;김재선;노세환;신기철;이재준;유선철
    • 센서학회지
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    • 제32권2호
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    • pp.110-117
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    • 2023
  • Reconstructing underwater geometry in real time with forward-looking sonar is critical for applications such as localization, mapping, and path planning. Geometrical data must be repeatedly calculated and overwritten in real time because the reliability of the acoustic data is affected by various factors. Moreover, scattering of signal data during the coordinate conversion process may lead to geometrical errors, which lowers the accuracy of the information obtained by the sensor system. In this study, we propose a three-step data processing method with low computational cost for real-time operation. First, the number of data points to be interpolated is determined with respect to the distance between each point and the size of the data grid in a Cartesian coordinate system. Then, the data are processed with a nonlinear interpolation so that they exhibit linear properties in the coordinate system. Finally, the data are transformed based on variations in the position and orientation of the sonar over time. The results of an evaluation of our proposed approach in a simulation show that the nonlinear interpolation operation constructed a continuous underwater geometry dataset with low geometrical error.

Mobile Robot Localization in Geometrically Similar Environment Combining Wi-Fi with Laser SLAM

  • Gengyu Ge;Junke Li;Zhong Qin
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제17권5호
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    • pp.1339-1355
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    • 2023
  • Localization is a hot research spot for many areas, especially in the mobile robot field. Due to the weak signal of the global positioning system (GPS), the alternative schemes in an indoor environment include wireless signal transmitting and receiving solutions, laser rangefinder to build a map followed by a re-localization stage and visual positioning methods, etc. Among all wireless signal positioning techniques, Wi-Fi is the most common one. Wi-Fi access points are installed in most indoor areas of human activities, and smart devices equipped with Wi-Fi modules can be seen everywhere. However, the localization of a mobile robot using a Wi-Fi scheme usually lacks orientation information. Besides, the distance error is large because of indoor signal interference. Another research direction that mainly refers to laser sensors is to actively detect the environment and achieve positioning. An occupancy grid map is built by using the simultaneous localization and mapping (SLAM) method when the mobile robot enters the indoor environment for the first time. When the robot enters the environment again, it can localize itself according to the known map. Nevertheless, this scheme only works effectively based on the prerequisite that those areas have salient geometrical features. If the areas have similar scanning structures, such as a long corridor or similar rooms, the traditional methods always fail. To address the weakness of the above two methods, this work proposes a coarse-to-fine paradigm and an improved localization algorithm that utilizes Wi-Fi to assist the robot localization in a geometrically similar environment. Firstly, a grid map is built by using laser SLAM. Secondly, a fingerprint database is built in the offline phase. Then, the RSSI values are achieved in the localization stage to get a coarse localization. Finally, an improved particle filter method based on the Wi-Fi signal values is proposed to realize a fine localization. Experimental results show that our approach is effective and robust for both global localization and the kidnapped robot problem. The localization success rate reaches 97.33%, while the traditional method always fails.

사진측량기법을 이용한 엑스선영상의 3차원 모형화 (Three-dimensional Reconstruction of X-ray Imagery Using Photogrammetric Technique)

  • 김의명
    • 대한토목학회논문집
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    • 제28권2D호
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    • pp.277-285
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    • 2008
  • 엑스선 영상은 의료분야에서 많이 활용되고 있으며 특히 인간의 골격형성 과정에서 발생할 수 있는 척추만곡의 변형을 파악하는 데 아주 효율적이다. 본 연구에서는 엑스선 영상의 사진기 검정과 엑스선 영상을 이용한 대상물의 3차원 좌표 결정에 중점을 두었다. 엑스선 사진기를 이용한 대상물의 좌표결정 과정은 엑스선 사진기 검정을 위해서 방사선이 투과되지 않게 제작된 쇠볼이 배치된 1차 검정대상물을 이용하여 엑스선 영상의 내부표정요소와 외부표정요소를 결정하고 이로 부터 엑스선에 교차하게 아크릴로 제작된 두 면을 가지고 있는 엑스선 검정장의 3차원 좌표를 결정하는 2단계 과정을 거쳤다. 사진측량기법에 의해 결정된 엑스선 검정장의 3차원 좌표값은 정밀하게 관측된 CMM과의 비교를 통하여 그 정확도를 평가하였으며 엑스선의 진행방향(X축)에 대한 오차가 Y축과 Z축에 비해 상대적으로 높게 나타났으나 Y축과 Z축에 대한 위치오차는 수 mm의 정확도를 나타내었다. 본 연구를 통해서 사진측량기법은 환자의 3차원 위치결정이나 의료용 교정기기를 제작하는데 도움을 줄 수 있을 것으로 사료된다.

Robust Radiometric and Geometric Correction Methods for Drone-Based Hyperspectral Imaging in Agricultural Applications

  • Hyoung-Sub Shin;Seung-Hwan Go;Jong-Hwa Park
    • 대한원격탐사학회지
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    • 제40권3호
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    • pp.257-268
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    • 2024
  • Drone-mounted hyperspectral sensors (DHSs) have revolutionized remote sensing in agriculture by offering a cost-effective and flexible platform for high-resolution spectral data acquisition. Their ability to capture data at low altitudes minimizes atmospheric interference, enhancing their utility in agricultural monitoring and management. This study focused on addressing the challenges of radiometric and geometric distortions in preprocessing drone-acquired hyperspectral data. Radiometric correction, using the empirical line method (ELM) and spectral reference panels, effectively removed sensor noise and variations in solar irradiance, resulting in accurate surface reflectance values. Notably, the ELM correction improved reflectance for measured reference panels by 5-55%, resulting in a more uniform spectral profile across wavelengths, further validated by high correlations (0.97-0.99), despite minor deviations observed at specific wavelengths for some reflectors. Geometric correction, utilizing a rubber sheet transformation with ground control points, successfully rectified distortions caused by sensor orientation and flight path variations, ensuring accurate spatial representation within the image. The effectiveness of geometric correction was assessed using root mean square error(RMSE) analysis, revealing minimal errors in both east-west(0.00 to 0.081 m) and north-south directions(0.00 to 0.076 m).The overall position RMSE of 0.031 meters across 100 points demonstrates high geometric accuracy, exceeding industry standards. Additionally, image mosaicking was performed to create a comprehensive representation of the study area. These results demonstrate the effectiveness of the applied preprocessing techniques and highlight the potential of DHSs for precise crop health monitoring and management in smart agriculture. However, further research is needed to address challenges related to data dimensionality, sensor calibration, and reference data availability, as well as exploring alternative correction methods and evaluating their performance in diverse environmental conditions to enhance the robustness and applicability of hyperspectral data processing in agriculture.

Modern Paper Quality Control

  • Olavi Komppa
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2000년도 제26회 펄프종이기술 국제세미나
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    • pp.16-23
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    • 2000
  • The increasing functional needs of top-quality printing papers and packaging paperboards, and especially the rapid developments in electronic printing processes and various computer printers during past few years, set new targets and requirements for modern paper quality. Most of these paper grades of today have relatively high filler content, are moderately or heavily calendered , and have many coating layers for the best appearance and performance. In practice, this means that many of the traditional quality assurance methods, mostly designed to measure papers made of pure. native pulp only, can not reliably (or at all) be used to analyze or rank the quality of modern papers. Hence, introduction of new measurement techniques is necessary to assure and further develop the paper quality today and in the future. Paper formation , i.e. small scale (millimeter scale) variation of basis weight, is the most important quality parameter of paper-making due to its influence on practically all the other quality properties of paper. The ideal paper would be completely uniform so that the basis weight of each small point (area) measured would be the same. In practice, of course, this is not possible because there always exists relatively large local variations in paper. However, these small scale basis weight variations are the major reason for many other quality problems, including calender blacking uneven coating result, uneven printing result, etc. The traditionally used visual inspection or optical measurement of the paper does not give us a reliable understanding of the material variations in the paper because in modern paper making process the optical behavior of paper is strongly affected by using e.g. fillers, dye or coating colors. Futhermore, the opacity (optical density) of the paper is changed at different process stages like wet pressing and calendering. The greatest advantage of using beta transmission method to measure paper formation is that it can be very reliably calibrated to measure true basis weight variation of all kinds of paper and board, independently on sample basis weight or paper grade. This gives us the possibility to measure, compare and judge papers made of different raw materials, different color, or even to measure heavily calendered, coated or printed papers. Scientific research of paper physics has shown that the orientation of the top layer (paper surface) fibers of the sheet paly the key role in paper curling and cockling , causing the typical practical problems (paper jam) with modern fax and copy machines, electronic printing , etc. On the other hand, the fiber orientation at the surface and middle layer of the sheet controls the bending stiffness of paperboard . Therefore, a reliable measurement of paper surface fiber orientation gives us a magnificent tool to investigate and predict paper curling and coclking tendency, and provides the necessary information to finetune, the manufacturing process for optimum quality. many papers, especially heavily calendered and coated grades, do resist liquid and gas penetration very much, bing beyond the measurement range of the traditional instruments or resulting invonveniently long measuring time per sample . The increased surface hardness and use of filler minerals and mechanical pulp make a reliable, nonleaking sample contact to the measurement head a challenge of its own. Paper surface coating causes, as expected, a layer which has completely different permeability characteristics compared to the other layer of the sheet. The latest developments in sensor technologies have made it possible to reliably measure gas flow in well controlled conditions, allowing us to investigate the gas penetration of open structures, such as cigarette paper, tissue or sack paper, and in the low permeability range analyze even fully greaseproof papers, silicon papers, heavily coated papers and boards or even detect defects in barrier coatings ! Even nitrogen or helium may be used as the gas, giving us completely new possibilities to rank the products or to find correlation to critical process or converting parameters. All the modern paper machines include many on-line measuring instruments which are used to give the necessary information for automatic process control systems. hence, the reliability of this information obtained from different sensors is vital for good optimizing and process stability. If any of these on-line sensors do not operate perfectly ass planned (having even small measurement error or malfunction ), the process control will set the machine to operate away from the optimum , resulting loss of profit or eventual problems in quality or runnability. To assure optimum operation of the paper machines, a novel quality assurance policy for the on-line measurements has been developed, including control procedures utilizing traceable, accredited standards for the best reliability and performance.