• 제목/요약/키워드: precision measurement

검색결과 2,638건 처리시간 0.026초

스트랩다운 탐색기 및 MEMS 센서를 이용한 유도필터 설계 (Guidance Filter Design Based on Strapdown Seeker and MEMS Sensors)

  • 윤중섭;유창경;송택렬
    • 한국항공우주학회지
    • /
    • 제37권10호
    • /
    • pp.1002-1009
    • /
    • 2009
  • 본 논문에서는 저가의 스트랩다운 센서 및 탐색기 기반의 정밀한 유도필터 설계를 다룬다. 고려된 스트랩다운 센서는 3축의 가속도계와 자이로로 구성된 IMU, 3 축 자기장계 및 압력고도계이다. 유도탄의 위치, 속도, 자세 및 압력고도계의 바이어스 오차가 유도필터의 상태변수로 고려된다. 상태방정식 및 측정방정식의 비선형성이 크기 때문에 UKF(Unscented Kalman Filter)를 도입한다. 제안된 유도필터는 표적 위치오차가 없을 경우 항법필터로 동작한다. 표적오차가 존재하는 경우에도 유도탄-표적간 상대 정보를 정확히 추정함으로서 정밀한 유도성능을 보장한다. 특수한 교전상황에서는 유도필터의 가관측성 문제가 발생함이 확인되었다.

퓨필랩 모바일 동공 추적 장치를 위한 3차원 캘리브레이션 및 성능 평가 방법 (3-Dimensional Calibration and Performance Evaluation Method for Pupil-labs Mobile Pupil Tracking Device)

  • 문지훈;신동원;호요성
    • 스마트미디어저널
    • /
    • 제7권2호
    • /
    • pp.15-22
    • /
    • 2018
  • 동공 추적 기술은 스마트 장치와 연계하여 사용자에게 편의를 제공할 수 있는 효율적인 정보 제공 수단으로 사용될 수 있다. 본 논문에서는 Pupil-labs에서 제작한 모바일 동공 추적 장치를 사용하여 사용자의 응시점 거리를 측정하고, 정확도와 정밀도를 분석하는 실험 수행결과를 보인다. 이를 기반으로 동공 추적 장치가 측정하는 동공의 응시점 위치와 대상 타겟과의 오차를 비교한다. 모바일 동공 추적 장치도 한 종류의 카메라이기 때문에 사용하기 전에는 반드시 캘리브레이션 작업을 수행해야 한다. 일반적으로 사용하는 2차원 캘리브레이션 방법뿐만 아니라, 3차원 캘리브레이션 수행 방법에 대해 설명한다. 3차원 캘리브레이션은 2차원 캘리브레이션 결과보다 높은 정확도를 갖기 위해임의의 평면을 설정하여 다양한 3차원 공간상에서 캘리브레이션을 수행하는 과정을 의미한다. 3차원 캘리브레이션의 효율성을 보이기 위해 실험결과에 대한 분석 결과를 설명한다. 또한 전반적인 장치의 사용 방법과 장치를 통해 얻을 수 있는 다양한 정보를 소개한다.

환경요인에 의한 잣나무의 지위지수 추정식 개발과 적지 판정 (Development of a Site Index Equation for Pinus koraiensis Based on Environmental Factors and Estimation of Productive Areas for Reforestation)

  • 신만용;정일빈;구교상;원형규
    • 한국농림기상학회지
    • /
    • 제8권2호
    • /
    • pp.97-106
    • /
    • 2006
  • Site index is an essential tool to estimate forest productivity. Generally, a site index equation is developed and used from the relationship between stand age and dominant tree heights. However, there is a limit to the use of the site index equation in the application of variable ages, environmental influence, and estimation of site index for the unstocked forest. Therefore, it has been attempted to develop a new site index equation based on various environmental factors including site, climate, and topographical variables. This study was conducted to develop a site index equation based on the relationship between site index and environmental factors for the species of Pinus koraiensis in Yangpyung-Gun, Gyunggi Province. The influence of climatic factors (temperature and solar irradiation ratio), topographical factors (elevation, slope, ratio of slope to valley and aspect) and soil profiles (soil depth by layer and soil consistency) on site index were evaluated by multiple regression analysis. Five environmental factors were selected in the final site index equation for Pinus koraiensis. The site index equation developed in this study was also verified by three evaluation statistics: model's estimation bias, model's precision, and mean square error of measurement. Based on the site index equation, the number of productive areas for Pinus koraiensis were estimated by applying GIS technique to digitized forest maps. In addition, the distribution of productive areas was compared with the areas of current distribution of Pinus koraiensis. It is expected that the results obtained in this study could provide valuable information about the amount and distribution of productive areas for Pinus koraiensis reforestation.

Active Materials for Energy Conversion and Storage Applications of ALD

  • 신현정
    • 한국진공학회:학술대회논문집
    • /
    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
    • /
    • pp.75.2-75.2
    • /
    • 2013
  • Atomic layer deposition (ALD), utilizing self-limiting surface reactions, could offer promising perspectives for future efficient energy conversion devices. The capabilities of ALD for surface/interface modification and construction of novel architectures with sub-nanometer precision and exceptional conformality over high aspect ratio make it more valuable than any other deposition methods in nanoscale science and technology. In the context, a variety of researches on fabrication of active materials for energy conversion applications by ALD are emerging. Among those materials, one-dimensional nanotubular titanium dioxide, providing not only high specific surface area but also efficient carrier transport pathway, is a class of the most intensively explored materials for energy conversion systems, such as photovoltaic cells and photo/electrochemical devices. The monodisperse, stoichiometric, anatase, TiO2 nanotubes with smooth surface morphology and controlled wall thickness were fabricated via low-temperature template-directed ALD followed by subsequent annealing. The ALD-grown, anatase, TiO2 nanotubes in alumina template show unusual crystal growth behavior which allows to form remarkably large grains along axial direction over certain wall thickness. We also fabricated dye-sensitized solar cells (DSCs) introducing our anatase TiO2 nanotubes as photoanodes, and studied the effect of blocking layer, TiO2 thin films formed by ALD, on overall device efficiency. The photon convertsion efficiency ~7% were measured for our TiO2 nanotubebased DSCs with blocking layers, which is ~1% higher than ones without blocking layer. We also performed open circuit voltage decay measurement to estimate recombination rate in our cells, which is 3 times longer than conventional nanoparticulate photoanodes. The high efficiency of our ALD-grown, anatase, TiO2 nanotube-based DSCs may be attributed to both enhanced charge transport property of our TiO2 nanotubes photoanode and the suppression of recombination at the interface between transparent conducting electrode and iodine electrolytes by blocking layer.

  • PDF

Model test on slope deformation and failure caused by transition from open-pit to underground mining

  • Zhang, Bin;Wang, Hanxun;Huang, Jie;Xu, Nengxiong
    • Geomechanics and Engineering
    • /
    • 제19권2호
    • /
    • pp.167-178
    • /
    • 2019
  • Open-pit (OP) and underground (UG) mining are usually used to exploit shallow and deep ore deposits, respectively. When mine deposit starts from shallow subsurface and extends to a great depth, sequential use of OP and UG mining is an efficient and economical way to maintain mining productivity. However, a transition from OP to UG mining could induce significant rock movements that cause the slope instability of the open pit. Based on Yanqianshan Iron Mine, which was in the transition from OP to UG mining, a large-scale two-dimensional (2D) model test was built according to the similar theory. Thereafter, the UG mining was carried out to mimic the process of transition from OP to UG mining to disclose the triggered rock movement as well as to assess the associated slope instability. By jointly using three-dimensional (3D) laser scanning, distributed fiber optics, and digital photogrammetry measurement, the deformations, movements and strains of the rock slope during mining were monitored. The obtained data showed that the transition from OP to UG mining led to significant slope movements and deformations that can trigger catastrophic slope failure. The progressive movement of the slope could be divided into three stages: onset of micro-fracture, propagation of tensile cracks, and the overturning and/or sliding of slopes. The failure mode depended on the orientation of structural joints of the rock mass as well as the formation of tension cracks. This study also proved that these non-contact monitoring technologies were valid methods to acquire the interior strain and external deformation with high precision.

필지 단위 주경사장 산정 및 적용을 통한 범용토양유실공식 지형인자 산정 개선 연구 (A Study to Determine the Slope Length and Steepness Factor of Universal Soil Loss Equation with Determining and Adapting Major Slope Length at Field Scale)

  • 박윤식;박종윤;장원석;김종건
    • 한국농공학회논문집
    • /
    • 제61권6호
    • /
    • pp.55-65
    • /
    • 2019
  • Universal Soil Loss Equation (USLE) is to estimate potential soil loss and has benefit in use with its simplicity. The equation is composed of five factors, one of the factors is the slope length and steepness factor (LS factor) that is for topographic property of fields to estimate potential soil loss. Since the USLE was developed, many equations to compute LS was suggested with field measurement. Nowadays the factor is often computed in GIS software with digital elevation model, however it was reported that the factor is very sensitive to the resolution of digital elevation model. In addition, the digital elevation model of high resolution less than 3 meter is required in small field application, however these inputs are not associate with the empirical models' backgrounds since the empirical models were derived in 22.1 meter field measurements. In the study, four equation to compute LS factor and two approaches to determine slope length and steepness were examined, and correction factor was suggested to provide reasonable precision in LS estimations. The correction factor is computed with field area and cell size of digital elevation model, thus the correction factor can be adapted in any USLE-based models using LS factor at field level.

이동체간 전파지연을 고려한 무선 TDD 시각 동기화 기법 (Wireless TDD Time Synchronization Technique Considering the Propagation Delay Between Mobile Vehicles)

  • 부정일;하정완;김강산;김복기
    • 한국항행학회논문지
    • /
    • 제23권5호
    • /
    • pp.392-399
    • /
    • 2019
  • 본 논문에서는 이동체간 전파지연을 고려한 무선 TDD(time division duplex) 시각 동기화 기법에 대하여 연구하였다. 기존 IEEE 1588 PTP 알고리즘을 응용하였으며, 무선 TDD 통신 시 마스터/슬레이브 노드간 계산된 전파지연 및 클럭 오프셋 시각 보정을 통해 두 노드간의 시각 동기화를 이루게 하였다. IEEE 1588 PTP 알고리즘의 시각 동기화 과정 및 절차를 최적화하였으며, 이를 통해 실시간으로 이동하는 이동체에 대한 전파지연 오차 민감도를 감소시켰다. 시각 보정을 통해 생성된 sync flag 신호는 시험 및 측정값을 통해 1-symbol (1.74 M symbol/sec, ${\pm}287.35ns$) 이내의 최대 +252.5 ns 시각 동기화 정밀도를 갖는 것을 확인하였으며, GPS(global positioning system) 교란 시 생성된 sync flag 신호를 통해 마스터/슬레이브 노드간 시각 동기화를 이룰 수 있음을 확인하였다.

스트레인게이지 타입 회전형 공구동력계 개발과 3축 정적 하중 검증 (Development of Strain-gauge-type Rotational Tool Dynamometer and Verification of 3-axis Static Load)

  • 이동섭;김인수;이세한;왕덕현
    • 한국기계가공학회지
    • /
    • 제18권9호
    • /
    • pp.72-80
    • /
    • 2019
  • In this task, the tool dynamometer design and manufacture, and the Ansys S/W structural analysis program for tool attachment that satisfies the cutting force measurement requirements of the tool dynamometer system are used to determine the cutting force generated by metal cutting using 3-axis static structural analysis and the LabVIEW system. The cutting power in a cutting process using a milling tool for processing metals provides useful information for understanding the processing, optimization, tool status monitoring, and tool design. Thus, various methods of measuring cutting power have been proposed. The device consists of a strain-gauge-based sensor fitted to a new design force sensing element, which is then placed in a force reduction. The force-sensing element is designed as a symmetrical cross beam with four arms of a rectangular parallel line. Furthermore, data duplication is eliminated by the appropriate setting the strain gauge attachment position and the construction of a suitable Wheatstone full-bridge circuit. This device is intended for use with rotating spindles such as milling tools. Verification and machining tests were performed to determine the static and dynamic characteristics of the tool dynamometer. The verification tests were performed by analyzing the difference between strain data measured by weight and that derived by theoretical calculations. Processing test was performed by attaching a tool dynamometer to the MCT to analyze data generated by the measuring equipment during machining. To maintain high productivity and precision, the system monitors and suppresses process disturbances such as chatter vibration, imbalances, overload, collision, forced vibration due to tool failure, and excessive tool wear; additionally, a tool dynamometer with a high signal-to-noise ratio is provided.

김제 논에서 메탄 플럭스의 에디 공분산 관측 (Eddy Covariance Measurement of CH4 Flux in a Rice Paddy in Gimje, Korea)

  • ;윤주열;강남구;심교문;김준
    • 한국농림기상학회:학술대회논문집
    • /
    • 한국농림기상학회 2013년도 추계 학술발표논문집
    • /
    • pp.28-29
    • /
    • 2013
  • We have been measuring $CH_4$ flux in a rice paddy in Gimje using the eddy covariance method since July 2011. In order to measure the fast fluctuations of $CH_4$ concentration, an innovative LI-7700 open-path laser spectrometer is used. This high-precision, low power, light weight, low maintenance sensor enables us to operate it on a continuous and long-term basis. One particular feature, among other things, is the self-cleaning lower mirror which decreases maintenance requirements while ensuring more robust, continuous, high-quality dataset. Its cleaning is initiated at user-specified time intervals or a signal strength threshold, and its status is recorded as a diagnostic index. We have noticed that the operation of LI-7700 at Gimje site is quite challenging particularly due to its frequent mirror cleaning requirement and the associated sensitivity of the instrument. In this presentation, we present some field observation data regarding the mirror cleaning and their analysis, thereby suggesting the pertinent operation options for high-quality, maximum data retrieval in the field.

  • PDF

반사형 장거리 정밀 변위 감지기용 광학계 설계 및 측정 (Optical System Design and Experimental Demonstration of Long-range Reflective-type Precision Displacement Sensors)

  • 임재인;김승환;이승훈;정해원;이민희;김성환;김경헌
    • 한국광학회지
    • /
    • 제22권3호
    • /
    • pp.151-158
    • /
    • 2011
  • 본 논문에서는 반사형 장거리 정밀 변위 감지기용 광학계를 설계하고 실제 구성을 해 봄으로써 작동 성능을 측정한 결과를 소개하고자 한다. 10 m ~ 250 m 거리에 있는 교량 및 건축물 등의 진동 및 변위를 감지하는 장거리 변위 감지기용 광신호 송신 및 수신용 광학계를 설계하고, 관측 거리에 따라 관측 대상체에 다양한 반사광학계를 설치하여 실제 제작된 변위 감지기의 변위 감지 분해능을 측정하였다. 광신호 송신부는 두 개의 850 nm 파장대 LED와 수렴광학계로 구성되고, 수신부에서는 위치 센서(PSD: Position Sensitive Detector)와 망원형 수렴광학계가 사용되었다. 관측 대상체의 거리에 따라 10 m 거리에서는 0.1 mm 변위 분해능과 250 m 거리에서는 3 mm 이하의 변위 분해능이 가능함을 확인하였다.