년 - 년
4,300원
합동작전에 참여하는 부대가 효과적으로 임무를 수행하기 위해서는 조직, 시스템, 장비, 교리· 절차 등 전 영역(물리·정보·인지·사회)에서의 상호운용성이 우선적으로 달성되어야 한다. 기존의 상호운용성 평가모델들을 분석해보면 하드웨어 중심의 평가에서 시스템, 조직, 작전 등으로 평가 범위 가 확장되었으며, 이러한 과정에서 많은 모델들은 전투발전요소를 평가항목에 포함시켰다. 그러나 대 부분의 모델들은 전투발전요소의 일부만을 평가항목으로 적용하고 있어 전투발전요소 전체에 대한 상 호운용성 평가가 제한되고, 모델을 효과적으로 적용하기 위한 프로세스의 구체화와 평가결과에 대한 객관성을 보장할 수 있는 측정기준 개발 등 추가적인 연구가 요구되는 상태이다. 본 논문에서는 이러 한 제한사항을 보완하기 위해 전투발전요소 전체를 평가항목으로 적용하는 ‘전투발전요소 중심의 상 호운용성 평가모델’을 제안한다. 제안된 모델은 능력개념을 도입하였고, 전투발전요소 전체를 적용하 여 평가대상의 상호운용성 수준을 보다 총체적으로 비교 평가할 수 있다. 또한 이 모델은 각 전투발 전요소의 상호운용성 속성 중에서 합동성과 관련된 항목을 선별 및 적용하여 합동작전에 참여하는 부 대의 합동성 수준까지 비교 평가할 수 있는 장점을 가지고 있다.
The effectiveness of joint operations depends on Jointness based on interoperable elements of participating forces. Many specialists have actively done research studies on interoperability measurement models with the goal of straightforward way of measuring and then have improved the interoperability of elements based on DOTMLPF-p (Doctrine, Organization, Training, Materiel, Leadership & Education, Personnel, Facilities, Policy) in the forces. After the survey of 16 interoperability measurement models, we have concluded that most of them applied only a small portion of DOTMLPF-p elements explicitly or all portions of DOTMLPF-p elements implicitly. In this study, we propose a conceptual interoperability measurement model for applying all DOTMLPF-p elements explicitly. And it can evaluate not only the level of interoperability among forces but also level of jointness for joint operations.
대한건축학회지회연합회 대한건축학회지회연합회 학술발표대회논문집 2007년도 추계학술발표대회 2007.12 pp.593-596
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4,000원
[Kisti 연계] 대한용접접합학회 대한용접접합학회 학술대회논문집 2002 pp.378-383
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In previous study, the decrease and recovery of total stiffness in welded structure was discussed on the basis of experimental examination through tensile loading and unloading test of welded specimen. The recovery of structure stiffness was caused by the release of welding residual stress through mechanical loading. In this study, analysis model that is indispensable for the effective application of MSR method was established on the basis of test and measurement result. Thermal elasto-plastic analysis for welding process was performed by non-coupled analysis. Analysis results of welding process were transfer to elasto-plastic model for tensile loading & unloading by restart technique. In elasto-plastic analysis model for mechanical loading & unloading, hardening appearance of weld metal was considered by rezoning technique and tying technique was used for JIG condition of test machine.
[Kisti 연계] 대한용접접합학회 대한용접접합학회 학술대회논문집 2002 pp.372-377
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Residual stress by welding should be reduced because that decreases the reliability on strength of welded structure. The reason is that the total stiffness of structure decreases by non-linear behavior of weldment under external load. The release of residual stress by mechanical loading and unloading is often performed in the fabrication of box structure for steel bridge. The proper degree of loading and unloading is significant at release method of residual stress by mechanical loading because that degree is changed by material and geometric shape of welded structure. Therefore, the simulation model that could exactly analyze the release of residual stress by mechanical loading is to be necessary. This simulation model should be established on the based of variable and accurate measurement data. In this study, the non-linear behavior of weldments under external loading and unloading, such as the decrease and increase of structure stiffness, was investigated by monitoring of nominal stress and strain. Tensile loading and unloading test under variable load was performed and the proper degree of stress relaxation was measured by sectioning technique using strain gauge.
[Kisti 연계] 대한용접접합학회 International journal of Korean welding society Vol.2 No.1 2002 pp.40-44
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Residual stress by welding should be reduced because that decreases the reliability on strength of welded structure. The reason is that the total stiffness of structure decreases by non-linear behavior of weldment under external load. The release of residual stress by mechanical loading and unloading is often performed in the fabrication of box structure for steel bridge. The proper degree of loading and unloading is significant at release method of residual stress by mechanical loading because that degree is changed by material and geometric shape of welded structure. Therefore, the simulation model that could exactly analyze the release of residual stress by mechanical loading is to be necessary. This simulation model should be established on the based of variable and accurate measurement data. In this study, the non-linear behavior of weldments under external loading and unloading, such as the decrease and increase of structure stiffness, was investigated by monitoring of nominal stress and strain. Tensile loading and unloading test under variable load was performed and the proper degree of stress relaxation was measured by sectioning technique using strain gauge.
Further Development of Vision-Based Strain Measurement Methods to Verify Finite Element Analyses
[Kisti 연계] 한국소성가공학회 소성가공 Vol.5 No.4 1996 pp.343-352
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One of the preferred methods that can be used to verify the results of finite element analysis is to measure surface strains of the deformed part for purpose of direct comparison with simulation results. Instead of using the usual manual method the vision-based measurement method is capable of determining surface geometry and strain from the deformed grid pattern automatically with the help of a computer. To obtain strain distribution over an area, the coordinates of such a surface grid are determined from the multiple video images by applying the photogrammetry principle. Methods to improve the overall accuracy of the vision-based strain measurement system are explored and the possible accuracies that can be attained by such a measurement method are discussed. A major emphasis is placed on the initial grid application method its accuracy and ease of subsequent image processing. Finite element analyses of limiting dome height(LDH) test are carried out and the results of them are compared with exsperimen-tal data.
Measurement of N and P Type Peltier Element's Thermoelectric Power per Temperature Using Cryocooler
[Kisti 연계] 한국초전도학회 한국초전도저온공학회 학술대회논문집 2009 p.60
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압력용기 산분해법과 테플론 바이알에서의 산분해법이 미량원소의 함량측정에 미치는 영향
[Kisti 연계] 한국암석학회 암석학회지 Vol.25 No.2 2016 pp.107-119
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화성암의 성인을 밝혀내는데 있어서 중요한 기초자료로서 지구화학적으로 중요한 의미를 가지는 미량원소의 함량은 대개는 암석가루의 산분해법에 의해 준비된 용액과 유도결합 플라즈마 질량분석기(ICP-MS)를 이용하여 측정한다. 이 때 암석가루의 산분해에는 일반적으로 테플론 바이알 혹은 압력용기를 이용한다. 이 논문에서는 미국지질조사소의 암석 표준시료인 BCR2, GSP2를 이용한 압력용기 혹은 테플론 바이알 산분해법 실험과정에서 발생될 수 있는 특정 미량원소의 손실 가능성에 대해 조사하였다. 실험결과, BCR2에서는 Cr, Ni, Zn, Ta, W의 변화가 제일 심했고, GSP2에서는 Rb, Sr, Zr, Hf, Ta, W 등에서 추천값(참고값)과 큰 차이를 보여주었다. 산분해 실험에 의한 화성암류내 W의 함량측정은 많은 주의가 필요하며, 이외에도 현무암류에서는 Cr과 Ni의 측정값에, 화강암류에서는 Zr, Hf, Ta의 측정값에 주의가 필요하다는 것을 확인할 수가 있었다.
Trace element abundances in the igneous rocks are important data for petrogenetic interpretation. Their concentrations are generally measured using ICP-MS from the dissolved solution. The acid digestion of rock powder can be performed by conventional teflon vial or pressure bomb. In this paper, we investigated a problem that happened during acid digestion experiment using conventional teflon vial or pressure bomb of BCR2 and GSP2 USGS rock standard materials. The results show that the measured concentrations of the elements like Cr, Ni, Zn, Ta, W in the BCR2 are different from the recommended values of USGS whereas those of the elements like Rb, Sr, Zr, Hf, Ta, W in the GSP2 are different from those values. Our experiment shows that defect of specific elements like Cr, Ni may happen during the sample digestion. Our results also indicate that the Cr, Ni, W, Zr, Hf, Ta concentration obtained based on an acid digestion of geological samples need to be careful in their geochemical interpretation.
[Kisti 연계] 한국전기전자재료학회 한국전기전자재료학회 학술대회논문집 1999 pp.319-322
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In order to accurately measure the high voltage of 22.9[kV] power distribution lines, we investigated the temperature dependence of measuring voltage for single element and stack elements(22, 44, 66 layers, respectively). When one line voltage is 13, 20O[V], the error of measuring voltage with temperature(-25[$^{\circ}C$]~50[$^{\circ}C$]) was decreased with increasing of stack number and stack element with 66 layers was the least error of ${\pm}0.87%$.
유한요소법을 이용한 관성측정장치의 랜덤응답에 대한 연구
[Kisti 연계] 한국정밀공학회 한국정밀공학회 학술대회논문집 2010 pp.1353-1354
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압력, 풍속 및 습구온도계의 크기가 건습구습도계를 이용한 상대습도 측정에 미치는 영향
[Kisti 연계] 대한설비공학회 Korean journal of air-conditioning and refrigeration engineering Vol.2 No.2 1990 pp.137-141
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When the relative humidity is measured with an aspirated psychrometer, three factors, which affect the measurement of relative humidity, are atmospheric pressure, the size of wet element and the wind velocity. This paper investigated the effects of the above three factors, and the computer code was developed in order to enhance the accuracy of the relative humidity measurement. As results, it is found that the relative humidity decreases by 6%RH with increasing atmospheric pressure from 650 mbar to 1100 mbar. It is found that the relative humidity drops down when the size of the wet element increases, though the effect of the size of the wet element is not significant. Finally, relative humidity increases with the increasing wind velocity. The difference between the psychrometic table in the present KS and the present results is about 2%RH maximum. As a conclusion, the three factors mentioned above should be considered in order to secure accurate measurement of relative humidity.
에어컨 실내기 사출 조립품의 열 변형 3D측정과 유한요소해석
[Kisti 연계] 한국생산제조시스템학회 한국생산제조시스템학회지 Vol.24 No.2 2015 pp.251-255
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Thermal deformation, such as bending and twisting, occurs among the polymer parts of air-conditioner indoor units because of repetitive temperature change during heating operation. In this study, a numerical method employing finite-element analysis to efficiently simulate the thermal deformation of an assembly is proposed. Firstly, the displacement of an actual assembly produced by thermal deformation was measured using a 3D optical measurement system. The measurement results indicated a general downward sag of the assembly, and the maximum displacement value was approximately 1 mm. The temperature distribution was measured using a thermographic camera, and the results were used as initial-temperature boundary conditions to perform temperature-displacement analysis. The simulation results agreed well with the measured data. To reduce the thermal deformation, the stiffness increased 100%. As the results, the maximum displacement decreased by approximately 5.4% and the twisting deformation of the holder improved significantly.
[Kisti 연계] 한국전산구조공학회 전산구조공학 Vol.28 No.2 2015 pp.26-35
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평면 플레이트 형상을 가진 탈선계수 측정용 윤축의 구조해석
[Kisti 연계] 한국정밀공학회 한국정밀공학회 학술대회논문집 2004 pp.119-122
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Since a derailment of rolling stocks results in huge losses in properties and lives, the measurement of a derailment coefficient is a very important test item to estimate the running safety of rolling stocks. For a measurement of the derailment measurement of forces between the wheel and rail a measuring wheel-set should be made first. The process to make a measuring wheel-set has some stages for correct measurement. They are as follows; a finite element analysis of a wheel to find a position of holes at which vertical force shall be measured, a finite element analysis for the position of strain gauges.
[Kisti 연계] 한국복합재료학회 Composites research Vol.37 No.3 2024 pp.143-149
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본 논문에서는 친환경 포장재인 골판지의 기계적 물성을 측정하고, 이를 LS-DYNA의 MAT_PAPER 모델에 적용하여 유한요소해석을 수행하였다. MAT_PAPER는 주로 종이의 거동을 모델링 하기 위한 재료모델이지만 본 연구를 통해 골판지에 대해서도 적용 가능함을 보였다. 인장, 압축, 전단 거동에 대하여 골판지의 방향별 기계적 물성을 측정 및 분석하고, 이를 바탕으로 6개의 항복면을 도출하여 MAT_PAPER 모델에 통합하였다. 재료시험 시편의 유한요소해석과 골판지 사각관의 저속 붕괴해석 결과를 각 실험 결과와 비교함으로써, 골판지의 거동을 등가적으로 잘 고려할 수 있음을 보였다. 그러나 해당 모델은 골판지의 변형률 속도효과를 고려하지 못하므로, 골판지의 원소재인 원심지의 고속물성을 측정하여 이를 보정하였으며, 이에 따라 골판지 사각관의 고속 압괴 실험 결과와 잘 일치함을 보였다.
This paper measures the mechanical properties of corrugated cardboard, an eco-friendly packaging material, and applies these measurements to the MAT_PAPER model in LS-DYNA for finite element analysis. Although MAT_PAPER is primarily designed for modeling the behavior of paper, this research demonstrates its applicability to corrugated cardboard as well. Tensile, compression, and shear behaviors of a corrugated cardboard were measured and analyzed, and based on these results, six yield surfaces were derived and integrated into the MAT_PAPER model. By comparing the finite element analysis of the material tests and the low velocity collapse analysis of the corrugated cardboard square boxes with each experimental results, it was shown that the behavior of corrugated cardboard could be equivalently considered well by the MAT_PAPER model. However, since the model is not rate-dependent, the high strain rate properties of liner materials were measured and used for strain rate correction. Consequently, this matches well with the results of the high-speed compression tests of the corrugated cardboard square boxes.
자성 측정 방법에 따른 BLDC 전동기의 전자계 특성해석
[Kisti 연계] 대한전기학회 대한전기학회 학술대회논문집 2008 pp.697-698
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This paper deals with finite element characteristic analysis of brushless DC motor according to magnetic property measurement methods. Magnetic property data for non-oriented (NO) electrical steel for electric motors are measured by the Epstein test which is considered as the international standards. Data from Epstein test may result in discrepancy from motor characteristic tests due to innate anisotropic property of NO electrical steel. Finite element analysis were performed for a BLDC motor by various measurement methods such as Epstein test, Ring test and single sheet test (SST), and calculated results were compared with considering anisotropic property conditions.
마이크로폰 측정 시 발생하는 산란파 간섭에 대한 경계요소 해석
[Kisti 연계] 한국소음진동공학회 한국소음진동공학회 학술대회논문집 2000 pp.726-730
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In this article, the scattering effect around a microphone is studied by using boundary element method, because it is hard to find the scattering experimentally. The scattering problem is defined by impinging an obstacle, i.e. a solid cylinder, with an incident plane wave. From this analysis, the scattering is numerically calculated by varying the microphone shape, the incident angle and the distance between microphones. It is found that the scattering effect of a microphone increases as the frequency increases and is not considerable in the low frequency region. However, it is noted that there might be the pressure distortion above 4 kHz due to the scattering in microphone measurement.
[Kisti 연계] 대한전기학회 대한전기학회 학술대회논문집 1999 pp.2155-2157
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This paper describes a new measurement method of resistive current and the technique of deterioration diagnosis for ZnO element. The consequence of current increasing (resistive current) with time is the eventual attainment of a state of thermal instability that may lead to arrester failure. So, it is very important to measure a leakage current of ZnO arrester installed at on-state. For the high-precision and more reliability, an iron core, which has a very high relative permeability, was used for increasing detection sensitivity, and we also used the personal computer for the data storage and program and analysis. And we have verified the reliability and performance of the sensing device through several laboratory tests.
힘과 온도 측정을 위한 생체모방형 촉각센서 감지부 설계
[Kisti 연계] 한국정밀공학회 한국정밀공학회 학술대회논문집 2002 pp.1029-1032
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This paper describes a design of a tactile sensor, which can measure three components force and temperature due to thermal conductive. The bio-mimetic tactile sensor, alternative to human's finger, is comprised of four micro force sensors and four thermal sensors, and its size being 10mm$\times$10mm. Each micro force sensor has a square membrane, and its force range is 0.1N - 5N in the three-axis directions. On the other hand, the thermal sensor for temperature measurement has a heater and four temperature sensor elements. The thermal sensor is designed to keep the temperature. $36.5^{\circ}C$, constant, like human skin, and measure the temperature $0^{\circ}C$ to $50^{\circ}C$. The MEMS technology is applied to fabricate the sensing element of the tactile sensor.
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