• 제목/요약/키워드: Profile Table

검색결과 127건 처리시간 0.021초

전공분류표, 사용자 프로파일, LSI를 이용한 검색 모델 (Retrieval Model using Subject Classification Table, User Profile, and LSI)

  • 우선미
    • 정보처리학회논문지D
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    • 제12D권5호
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    • pp.789-796
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    • 2005
  • 현재 대부분의 도서관 정보검색 시스템들은 키워드 정합매칭(exacting matching) 방법으로 검색 서비스를 제공하고 있으므로, 검색 결과의 양이 방대하고 비적합한 결과가 많이 포함되어 있다. 따라서 본 논문에서는 키워드기반 검색 엔진의 단점을 보완하고 현재 도서관 검색 환경을 고려하여 보다 적합한 결과를 사용자에게 신속하게 제공하기 위하여 전공분류표와 사용자 프로파일을 이용한 검색 모델 SULRM(Retrieval Model using Subject Classification Table, User Profile & LSI)을 제안한다. SULRM은 키워드 검색 결과로 얻은 자료들을 분류된 자료의 경우와 미분류된 자료의 경우로 나누어, 분류된 자료의 경우에는 전공분류표를 생성하여 자료 필터링을 수행하고, 미분류된 자료의 경우에는 사용자 프로파일과 LSI(Latent Semantic Indexing)을 이용하여 자료의 순위를 결정해서 사용자에게 제시한다. 실험평가는 우리 대학의 디지털 도서관을 실험환경으로 하여 필터링 방법, 사용자 프로파일 갱신 방법, 그리고 문서순위결정 방법의 성능을 측정한다.

Look-up table을 이용한 수중 음향파 거리 추정 알고리즘 (Ranging Algorithm of Underwater Acoustic Wave with Look-up Table)

  • 천주현;문승현;이호경
    • 전자공학회논문지
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    • 제52권4호
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    • pp.23-29
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    • 2015
  • 본 논문에서는 수중 위치 추적(Underwater Localization)을 위한 수평거리 추정 방식 중 음선의 각도 변화를 이용하는 방식을 개선하는 Look-up Table(LUT)를 사용하는 방식을 제안하고 기존 방식과의 연산속도 및 수평거리 오차를 비교한다. LUT를 사용하여 추정하는 방식은 수신기의 음파 도달 시간(Time of arrival : ToA)과 깊이에 따른 Sound Speed Profile(SSP)을 이용하여 만들어진 수평 거리-ToA table을 이용한다. 결과적으로, 음선의 각도 변화를 이용하는 방식에 비해 수평거리 추정오차는 다소 증가하게 되지만, 수신된 ToA에 대응되는 수평거리를 사용한다는 점에서 실시간으로 각도 변화를 추정하는 기존방식에 비하여 매우 빠른 처리가 가능하다.

Discrepancies in Soft Tissue Profile of Patients for Orthognathic Surgery between Preoperative Lateral Facial Photograph, Lateral Cephalogram and Supine Position on Operation Table

  • Jung, Young-Eun;Yang, Hoon-Joo;Hwang, Soon-Jung
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제34권3호
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    • pp.180-185
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    • 2012
  • Purpose: An accurate preoperative analysis of the patient is essential in orthognathic surgery in order to acquire superior results. In profile, the location of the chin's position may change according to the neck's inclination. This may ultimately affect the amount of surgical movement. During acquisition of cephalometric radiographs, or in supine position, there is a discrepancy in the neck's inclination. This means that there are also various discrepancies between the actual profile and the various preoperative profile images. In the clinical situation, the decision in performing genioplasty usually lies in the analysis of the patient's profile on the operating table at the final stages of orthognathic surgery. This study aims to analyze the different preoperative profile images and to compare their discrepancies. Methods: Fifty eight patients undergoing orthognathic surgery were chosen. These patients were divided into three groups according to angle's classification of malocclusion, as class I, II or III. The right profile of these patients in centric occlusion was taken in natural head position (NHP). This was set as the 'actual profile image.' Another right profile image was taken on the operating table after insertion of the nasotracheal intubation and with muscle relaxants in effect. This was also taken in centric occlusion. The angle (denoted 'A') between the soft tissue glabella-pognion and the true vertical plane was found in the above-mentioned profile images and in the cephalometric radiographs. The differences of these values were analyzed. Results: There were differences in Angle 'A' in all of the preoperative images. These values were however, not statistically significant. Conclusion: In order to gain an esthetic profile during orthognathic surgery, the NHP is shown to be the most reliable position. Images reproducing such head positions should be used in the treatment planning process.

유정압테이블의 정밀도향상을 위한 수정가공 알고리즘 (Corrective machining Algorithm for Improving the Motion Accuracy of Hydrostatic Table)

  • 박천홍;이찬홍;이후상
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 추계학술대회 논문집
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    • pp.380-384
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    • 1997
  • For improving the motion accuracy of hydrostatic table, corrective machining algorithm is proposed in this paper. The algorithm consists of three main processes. Reverse analysis is performed firstly to estimate rail profile from measured linear and angular motion error, in the algorithm. For the next step, correctwe machining information is decided as referring to the estimating rail profile. Finally, motion errors on correctively machined rail are analized by using motion error analysls method proposed in the previous paper. These processes can be rtcrated if the analized motion errors are worse than target accuracy. In order to verify the validity of the algorithm theoretically, motion errors by the estimated rail after corrective machining are compared with motion errors by true rail assumed as the measured value. Estimated motion errors show good agreement with assumed values, and it is confirmed that the algorithm IS effective to acquire the corrective machming information to improve the accuracy of hydrostatic table.

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이동테이블형 공작기계에서의 형상중첩법을 이용한 진직도 측정기술 (Straightness Measurement Technique for a Machine Tool of Moving Table Type using the Profile Matching Method)

  • 박희재
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 춘계학술대회 논문집
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    • pp.400-407
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    • 1995
  • The straightness property is one of fundamental geometric tolerances to be strictly controlled for guideways of machine tools and measuring machines. The staightness measurement for long guideways was usually difficult to perform, and it needed additional equipments or special treatment with limited application. In this paper, a new approach is proposed using the profile matching technique for the long guideways, which can be applicable to most of straghtness measurements. An edge of relativelly sthort length is located along a divided section of a long guideway, and the local straightness measurement is performed. The edge is then moved to the next section with several positions overlap. After thelocal straightness profile is measured for every section along the long guideway with overlap, the global straightness profile is constructed using the profile matching technique based on theleast squares method. The proposed techinique is numerically tested for two cases of known global straightness profile arc profile and irregular profile and those profiles with and without random error intervention, respectively. When norandom errors are involved, the constructed golval profile is identical to the original profile. When the random errors are involved, the effect of the number of overlap points are investigated, and it is also found that the difference between the difference between the constructed and original profiles is very close to the limit of random uncertainty with juist few overlap points. The developed technique has been practically applied to a vertical milling machine of moving table type, and showed good performance. Thus the accuracy and efficiency of the proposed method are demonstrated, and shows great potential for variety of application for most of straightness measuirement cases using straight edges, laser optics, and angular measurement equipments.

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FEM을 이용한 유정압테이블의 운동정밀도 해석 (Finite Element Analysis on the Motion Error of Hydrostatic Table)

  • 박천홍;정재훈;이후상;김수태
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 춘계학술대회 논문집
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    • pp.658-662
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    • 2000
  • In order to achieve systematical method for improving motion accuracy of hydrostatic table, an algorithm using finite element method is proposed in this paper. Quantification of averaging effect of oil film on motion error is performed theoretically by analysis on the relationship between spacial frequency of rail form error and motion error of table. Influences of film stiffness and pocket size on the motion error of table are also analyzed theoretically Validity of the algorithm is verified experimentally from the test on the motion error of table with three types of rail which have different form profile. Experimental results show that the algorithm is very effective to analyze theoretically the motion error of hydrostatic table.

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유정압테이블의 정밀도향상을 위한 수정가공 알고리즘 (Corrective Machining Algorithm for Improving the Motion Accuracy of Hydrostatic Table)

  • 박천홍;이찬흥;이후상
    • 한국정밀공학회지
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    • 제19권6호
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    • pp.62-69
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    • 2002
  • For improving the motion accuracy of hydrostatic table, corrective machining algorithm is proposed in this paper. The algorithm consists of three main processes. reverse analysis is performed firstly to estimate rail profile from measured linear and angular motion error, in the algorithm. For the next step, corrective machining information is decided as referring to the estimating rail profile. Finally, motion errors on correctively machined rail are analized by using motion error analysis method proposed in the previous paper. These processes can be iterated until the analized motion errors are satisfied with target accuracy. In order to verify the validity of the algorithm theoretically, motion errors by the estimated rail, after corrective machining, are compared with motion errors by true rail assumed as the measured value. Estimated motion errors show good agreement with assumed values, and it is confirmed that the algorithm is effective to acquire the corrective machining information to improve the accuracy of hydrostatic table.

Flexible 3-dimension measuring system using robot hand

  • Ishimatsu, T.;Yasuda, K.;Kumon, K.;Matsui, R.
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1989년도 한국자동제어학술회의논문집; Seoul, Korea; 27-28 Oct. 1989
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    • pp.700-704
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    • 1989
  • A robotic system with a 3-dimensional profile measuring sensor is developed in order to measure the complicated shape of the target body. Due to this 3-dimensional profile measuring sensor, a computer is able to adjust the posture of the robot hand so that complicated global profile of the target body can be recognized after several measurements from the variant directions. In order to enable fast data processing, a digital signal processor and a look-up table is introduced.

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원통 축 방향의 표면거칠기 측정을 위한 시료의 자세 보정 (Orientation Correction of a Cylinder for Surface-Profile Measurement)

  • 조남규
    • 한국생산제조학회지
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    • 제5권4호
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    • pp.108-120
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    • 1996
  • A new technique and theory are proposed which correct orientation of a cylinder to perform a reliable measurement of the surface profile. We analyze characteristics of machined surfaces, e.g., ground, lapped and turned surfaces. Based upon the results. the optimum correction technique is derived by the statistical method. To verify the techinques, measurements are carried out by using the contact stylus profilometer on a controllable table. The measurement shows that surface information of cylinders can be acquired with high accuracy.

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H.264 표준에서 가중된 다중 참조 블록을 이용한 효율적인 VLC 표 예측 방법 (An Efficient VLC Table Prediction Scheme for H.264 Using Weighting Multiple Reference Blocks)

  • 허진;오관정;호요성
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2005년도 추계종합학술대회
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    • pp.39-42
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    • 2005
  • H.264, a recently proposed international video coding standard, has adopted context-based adaptive variable length coding (CAVLC) as the entropy coding tool in the baseline profile. By combining an adaptive variable length coding technique with context modeling, we can achieve a high degree of redundancy reduction. However, CAVLC in H.264 has weakness that the correct prediction rate of the variable length coding (VLC) table is low in a complex area, such as the boundary of an object. In this paper, we propose a VLC table prediction scheme considering multiple reference blocks; the same position block of the previous frame and the neighboring blocks of the current frame. The proposed algorithm obtains the new weighting values considering correctness of the VLC table for each reference block. Using this method, we can enhance the prediction rate of the VLC table and reduce the bit-rate.

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