• 제목/요약/키워드: Sensitivity Correction

검색결과 173건 처리시간 0.025초

주파수 응답함수의 감도를 이용한 모델개선법 (Model Updating Using Sensitivity of Frequency Response Function)

  • 김광근;김영찬;양보석;김동조
    • 동력기계공학회지
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    • 제4권2호
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    • pp.71-76
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    • 2000
  • It is well known that finite element analysis often has the inaccuracy when they are in conflict with test results. Model updating is concerned with the correction of analytical model by processing records of response from test results. This paper introduce a model updating technique using the frequency response function data. The measurement data is able to be used directly in the FRF sensitivity method because it is not necessary to identify. When a damping model is updated, it is necessary for the sensitivity matrix to be divided Into the complex part and real part. As an applying model, a cantilever and a rotor system are used. Specially the machined clearance($C_p$) of the journal bearing is updated.

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기하급수 전개법을 이용한 준해석 민감도의 오차 분석 (Error Estimation for the Semi-Analytic Design Sensitivity Using the Geometric Series Expansion Method)

  • 단호진;이병채
    • 대한기계학회논문집A
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    • 제27권2호
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    • pp.262-267
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    • 2003
  • Error of the geometric series expansion method for the structural sensitivity analysis is estimated. Although the semi-analytic method has several advantages, accuracy of the method prevents it from practical application. One of the promising remedies is the use of geometric series formula for the matrix inversion. Its result of the sensitivity analysis converges that of the global difference method which is known as reliable one. To reduce computational efforts and to obtain reliable results, it is important to know how many terms need to expand. In this paper, the error formula is presented and Its usefulness is illustrated through numerical experiments.

Attack Detection on Images Based on DCT-Based Features

  • Nirin Thanirat;Sudsanguan Ngamsuriyaroj
    • Asia pacific journal of information systems
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    • 제31권3호
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    • pp.335-357
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    • 2021
  • As reproduction of images can be done with ease, copy detection has increasingly become important. In the duplication process, image modifications are likely to occur and some alterations are deliberate and can be viewed as attacks. A wide range of copy detection techniques has been proposed. In our study, content-based copy detection, which basically applies DCT-based features for images, namely, pixel values, edges, texture information and frequency-domain component distribution, is employed. Experiments are carried out to evaluate robustness and sensitivity of DCT-based features from attacks. As different types of DCT-based features hold different pieces of information, how features and attacks are related can be shown in their robustness and sensitivity. Rather than searching for proper features, use of robustness and sensitivity is proposed here to realize how the attacked features have changed when an image attack occurs. The experiments show that, out of ten attacks, the neural networks are able to detect seven attacks namely, Gaussian noise, S&P noise, Gamma correction (high), blurring, resizing (big), compression and rotation with mostly related to their sensitive features.

자동변속기의 과도특성 분석을 위한 토크 컨버터의 변동 파라미터 성능 모델 개발 (Development of the Variable Parametric Performance Model of Torque Converter for the Analysis of the Transient Characteristics of Automatic Transmission)

  • 임원식;이진원
    • 한국자동차공학회논문집
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    • 제10권1호
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    • pp.244-254
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    • 2002
  • To enhance the acceleration performance and fuel consumption rate of a vehicle, the torque converter is modified or newly-developed with reliable analysis model. Up to recently, the one dimensional performance model has been used for the analysis and design of torque converter. The model is described with constant parameters based on the concept of mean flow path. When it is used in practice, some experiential correction factors are needed to minimize tole estimated error. These factors have poor physical meaning and cannot be applied confidently to the other specification of torque converter. In this study, the detail dynamic model of torque converter is presented to establish the physical meaning of correction factors. To verify the validity of model, performance test was carried out with various input speed and oil temperature. The effect of oil temperature on the performance is analysed, and it is applied to the dynamic model. And, to obtain the internal flow pattern of torque converter, CFD(Computational Fluid Dyanmics) analysis is carried out on three-dimensional turbulent flow. Correction factors are determined from the internal flow pattern, and their variation is presented with the speed ratio of torque converter. Finally, the sensitivity of correction factors to the speed ratio is studied for the case of changing capacity factor with maintaining torque ratio.

디지털 흉부단층합성검사에서 감도와 관전압 변화에 따른 영상 최적화 (Optimization of Image Quality according to Sensitivity and Tube Voltage in Chest Digital Tomosynthesis)

  • 김상현
    • 한국방사선학회논문지
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    • 제12권4호
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    • pp.541-547
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    • 2018
  • 흉부 디지털 단층합성(chest digital tomosynthesis, CDT) 검사 시 관전압 및 감도(sensitivity) 변화에 의한 선량감소 효과와 정량적 평가로 선량 최적화 조건을 평가하고자 한다. 관전압 125 kV, 135 kV 설정에 따른 sensitivity 200, 320, 400 변화하여 팬텀의 CDT 영상을 획득하였다. 감도와 관전압 변화 따른 선량과 면적선량(DAP)을 평가하였다. 화질평가는 최대신호 대 잡음비(PSNR), 대조도 대 잡음비(CNR), 신호 대 잡음비(SNR)를 image J를 이용하여 분석하였다. 선량은 14~23%, 면적선량은 13~26% 정도 sensitivity 200, 125 kV에 비해 측정치가 낮아졌고, sensitivity 가 높아짐에 따라 감소율 커짐을 알 수 있었다. PSNR은 27dB 이상으로 모두 의미 있는 수치였고, CNR, SNR은 sensitivity가 낮을수록 우수했으나, 항목마다 통계의 유의성은 달랐다. CNR과 SNR 모두 sensitivity 320, 135 kV가 sensitivity 200, 125 kV와 통계적으로 유의하지 않았다(p>0.05). CDT는 감도, 관전압과 디지털 촬영의 장비의 장점인 보정능력을 이용하여 더 작은 선량으로 화질을 유지 시킬 수 있다.

농경지 관측을 위한 KOMPSAT 대기보정 적용 및 평가 (Application of Atmospheric Correction to KOMPSAT for Agriculture Monitoring)

  • 안호용;류재현;나상일;소규호;이경도
    • 대한원격탐사학회지
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    • 제37권6_3호
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    • pp.1951-1963
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    • 2021
  • 농업환경 모니터링에서 지구관측위성을 활용한 원격탐사 자료는 시·공간적 그리고 효율성 측면에서 다른 방법에 비해 많은 이점을 가진다. 위성에 탑재된 센서는 태양광이 지표면에 반사되어 들어오는 에너지를 측정하므로, 지구의 대기에 의해 산란·흡수·반사되는 과정에서 잡음이 발생한다. 따라서 지표면에 반사되는 에너지(복사휘도)를 정확히 측정하기 위해서는 대기의 효과에 의한 잡음을 제거해야하는 대기보정이 선행되어야 한다. 본 연구는 KOMPSAT-3 위성의 대기보정 적용 및 농업분야 활용성 평가를 위해 대기보정 민감도 분석, 위성 상호간 교차 분석, 지상관측자료와 비교 분석을 수행하였다. 그 결과 모든 경우에서 대기보정 후 표면 반사율이 대기보정 전 TOA 반사율 보다 상호 일치율이 높게 나타났으며 동일한 기준의 시계열 식생지수 생산이 가능할 것으로 판단된다. 하지만 대기입력 파라미터의 민감도 및 위성촬영각(Tilt)에 대한 정량적인 분석을 위한 추가 연구가 필요하다.

압력손실시험을 이용한 막 완결성 평가에서 초기압력 및 UCL 도출인자 민감도 분석 (Sensitivity Analysis of Initial Pressure and Upper Control Limit on the Pressure Decay Test for Membrane Integrity Evaluation)

  • 이주희;홍승관;허현철;이광제;최영준
    • 한국물환경학회지
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    • 제24권6호
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    • pp.793-800
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    • 2008
  • Recently domestic drinking water industry has recognized membrane-based technology as a promising alternative for water treatment. To ensure successful application of membrane processes, the integrity of membrane systems should be maintained. According to US EPA guidance, the pressure decay test based on the bubble point theory is recommended to detect any membrane defection of which size is close to the smallest diameter of Cryptosporidium oocysts, $3{\mu}m$. Proper implementation of the pressure decay test is greatly affected by initial test pressure, and the interpretation of the test results is associated with upper control limit. This study is conducted to investigate various factors affecting determination of initial test prtessure and upper control limit, including membrane-based parameters such as pore shape correction factor, surface tension and contact angle, and system-based parameters, such as volumetric concentration factor and total volume of system. In this paper, three different hollow fibers were used to perform the pressure decay test. With identical initial test pressure applied, their pressure decay tendency were different from each other. This finding can be explained by the micro-structure disparity of those membranes which is verified by FESEM images of those membranes. More specifically, FESEM images revealed that three hollow fibers have asymmetry, deep finger, shallow finger pore shape, respectively. In addition, sensitivity analysis was conducted on five parameters mentioned above to elucidate their relation to determination of initial test pressure and upper control limit. In case of initial pressure calculation, the pore shape correction factor has the highest value of sensitivity. For upper control limit determination, system factors have greater impact compared to membrane-based parameters.

A correction method for objective seismic damage index of reinforced concrete columns

  • Kang, Jun Won;Lee, Jeeho
    • Computers and Concrete
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    • 제21권6호
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    • pp.741-748
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    • 2018
  • In this paper, the sensitivity of a plastic-damage-based structural damage index on mesh density is studied. Multiple finite element meshes with increasing density are used to investigate their effect on the damage index values calculated from nonlinear finite element simulations for a reinforced concrete column subjected to cyclic loading. With the simulation results, this paper suggests a correction method for the objective damage index based on nonlinear regression of volumetric tensile damage ratio data. The modified damage index values are presented in the quasi-static cyclic simulation to show the efficacy of the suggested correction method.

변위센서를 이용한 적응적 PID제어기반 자동차 변속기 샤프트 교정시스템 (Car transmission shaft distortion correction system based on adaptive PID controller using displacement sensors)

  • 최상복;반상우;김기택
    • 센서학회지
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    • 제19권5호
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    • pp.375-384
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    • 2010
  • In this paper, we proposed a new shaft distortion correction system having an adaptive PID controller using displacement sensors, which is adaptively reflecting variations of shaft strength owing to irregular heat treatment during an annealing process and sensitivity to the seasonal temperature changes. Generally, the shafts are annealed by heat treatment in order to enlarge the strength of the shaft, which causes an distortion of a shaft such as irregular bending of the shaft. In order to correct such a distortion of the shaft, a mechanical pressure is properly impacted to the distorted shaft. However, the strength of every shaft is different from each other owing to irregular annealing and seasonal temperature changes. Especially, the strength of a thin shaft such as a car transmission shaft is much more sensitive than that of a thick shaft. Therefore, it is very important for considering the strength of each shaft during correction of the car transmission shaft distortion in order to generate proper mechanical pressure. The conventional PID controller for the shaft distortion correction system does not consider each different strength of each shaft, which causes low productivity. Therefore, we proposed a new PID controller considering variations of shaft strength caused by seasonal temperature changes as well as irregular heat treatment and different cooling time. Three displacement sensors are used to measure a degree of distortion of the shaft at three different location. The proposed PID controller generates adaptively different coefficients according to different strength of each shaft using appropriately obtained pressure times from long-term experiments. Consequently, the proposed shaft distortion correction system increases the productivity about 30 % more than the conventional correction system in the real factory.

Optimal sensor placement for bridge damage detection using deflection influence line

  • Liu, Chengyin;Teng, Jun;Peng, Zhen
    • Smart Structures and Systems
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    • 제25권2호
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    • pp.169-181
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    • 2020
  • Sensor placement is a crucial aspect of bridge health monitoring (BHM) dedicated to accurately estimate and locate structural damages. In addressing this goal, a sensor placement framework based on the deflection influence line (DIL) analysis is here proposed, for the optimal design of damage detection-oriented BHM system. In order to improve damage detection accuracy, we explore the change of global stiffness matrix, damage coefficient matrix and DIL vector caused by structural damage, and thus develop a novel sensor placement framework based on the Fisher information matrix. Our approach seeks to determine the contribution of each sensing node to damage detection, and adopts a distance correction coefficient to eliminate the information redundancy among sensors. The proposed damage detection-oriented optimal sensor placement (OSP) method is verified by two examples: (1) a numerically simulated three-span continuous beam, and (2) the Pinghu bridge which has existing real damage conditions. These two examples verify the performance of the distance corrected damage sensitivity of influence line (DSIL) method in significantly higher contribution to damage detection and lower information redundancy, and demonstrate the proposed OSP framework can be potentially employed in BHM practices.