• 제목/요약/키워드: Surface Prediction

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합성곱 신경망 기반 선체 표면 압력 분포의 픽셀 수준 예측 (Pixel level prediction of dynamic pressure distribution on hull surface based on convolutional neural network)

  • 김다연;서정범;이인원
    • 한국가시화정보학회지
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    • 제20권2호
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    • pp.78-85
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    • 2022
  • In these days, the rapid development in prediction technology using artificial intelligent is being applied in a variety of engineering fields. Especially, dimensionality reduction technologies such as autoencoder and convolutional neural network have enabled the classification and regression of high-dimensional data. In particular, pixel level prediction technology enables semantic segmentation (fine-grained classification), or physical value prediction for each pixel such as depth or surface normal estimation. In this study, the pressure distribution of the ship's surface was estimated at the pixel level based on the artificial neural network. First, a potential flow analysis was performed on the hull form data generated by transforming the baseline hull form data to construct 429 datasets for learning. Thereafter, a neural network with a U-shape structure was configured to learn the pressure value at the node position of the pretreated hull form. As a result, for the hull form included in training set, it was confirmed that the neural network can make a good prediction for pressure distribution. But in case of container ship, which is not included and have different characteristics, the network couldn't give a reasonable result.

해수면 자유공간의 전파경로손실 예측 모델 (Prediction Model of Propagation Path Loss of the Free Space in the Sea)

  • 류광진;박창균
    • 한국음향학회지
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    • 제22권7호
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    • pp.579-584
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    • 2003
  • 지금까지 제안된 전파경로손실 예측모델 모두는 지표면 생활공간을 대상으로 하였을 뿐이다. 실제 해수면 자유공간은 지표면 생활공간과 물리적 계층구조가 다르다. 따라서 지표면 생활공간을 대상으로 한 전파경로손실 예측모델을 해수면 자유공간에 적용하는 경우, 전파경로손실은 실측값보다 더 적고, 한편 서비스 가능 최대 직선거리는 더 짧게 예측된다. 그러므로 본 연구에서는 CDMA방식 이동 통신 주파수대역을 중심으로 해수면 자유공간에서의 전파경로손실을 보다 정확히 예측하기 위한 모델을 제안하여 시뮬레이션하고 이를 현장 실측결과와 비교함으로써 그 실용성을 검증한다.

A Graphical Method for Evaluating the Effect of Blocking in Response surface Designs Using Cuboidal Regions

  • Sang-Hyun Park;Dae-Heung Jang
    • Communications for Statistical Applications and Methods
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    • 제5권3호
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    • pp.607-621
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    • 1998
  • When fitting a response surface model, the least squares estimates of the model's parameters and the prediction variance will generally depend on how the response surface design is blocked. That is, the choice of a blocking arrangement for a response surface design can have a considerable effect on estimating the mean response and on the size of the prediction variance even if the experimental runs are the same. Therefore, care should be exercised in the selection of blocks. In this paper, we prognose a graphical method for evaluating the effect of blocking in a response surface designs using cuboidal regions in the presence of a fixed block effect. This graphical method can be used to investigate how the blocking has influence on the prediction variance throughout the entire experimental region of interest when this region is cuboidal, and compare the block effect in the cases of the orthogonal and non-orthogonalblockdesigns, resfectively.

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엔드밀 가공시 표면형성 예측을 통한 정밀가공에 관한 연구 (A Study on the Precision Machining during End Milling Poeration by Prediction of Generated Surface Topography)

  • 이상규;고성림
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 춘계학술대회 논문집
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    • pp.788-793
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    • 1997
  • The surface,generated by end milling operation, is deteriorated by tool runout,vibration,friction,tool deflection, etc. In many source,deflection of tool affects to surfave accuracy. To develop a surface accracy model,method for the prediction of the topography of machined surfaces has been developed based on models of machine tool kinematics and cutting tool geometry. This model accounts for not only the ideal geometrical surface, but also the deflection of tool resulted in cutting force. For the more accurate prediction of cutting force,flexible end mill model is used to simulate cutting process. Compute simu;ation have shown the feasibility of the surface generation system.

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표면 손상을 입은 적층판의 강도 예측 및 분석 (Prediction and Analysis of Fracture Strength for Surface Flawed Laminates)

  • 최덕현;황운봉
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2004년도 춘계학술발표대회 논문집
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    • pp.275-278
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    • 2004
  • In this paper, the fracture strength of the surface damaged laminates was predicted by applying the fracture strengths of the unflawed and flawed laminates. For prediction, the theoretical equation about the fracture strength of laminates was simplified applying classical laminate theory and was applied to the surface damaged laminates. Lagace's and Tsai's experimental data were used for verifying the theoretical equation. Moreover, to verify the theoretical prediction, an experiment was performed. Surface unflawed laminate and flawed laminates were fabricated and the experiments were made and these results were compared with theoretical predictions. The specimens' fiber direction was same to the tensile direction and the theoretical predictions and the experimental results were showed good agreement. Therefore, by this equation, the fracture strength of structures made of composites will be able to be predicted when the surface of the structures was damaged.

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엔드밀을 활용한 홀 가공 시 표면거칠기 예측에 관한 연구 (Prediction of Surface Roughness in Hole Machining Using an Endmill)

  • 천세호
    • 한국기계가공학회지
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    • 제18권10호
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    • pp.42-47
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    • 2019
  • Helical machining is an efficient method for machining holes using an endmill. In this study, a surface roughness prediction model was constructed for improving the productivity of hole machining. Experiments were conducted to form holes by the helical machining of AL6061-T4 aluminum sheets and correlation analysis was performed to examine the relationships between the variables based on the measured results. Meanwhile, a regression analysis technique was used to construct and evaluate the prediction model. Through these analyses, the parameter which has the greatest influence on the surface roughness when the hole is formed by the helical machining is the feed, followed by the number of revolutions of the endmill. Moreover, for the axial feed of the endmill, it was concluded that the influence of the surface roughness is small compared to the other two parameters but it is a factor worth considering to improve the accuracy when constructing the predictive model.

복사전달과정에서 지형효과에 따른 기상수치모델의 민감도 분석 (Sensitivity Analysis of Numerical Weather Prediction Model with Topographic Effect in the Radiative Transfer Process)

  • 지준범;민재식;장민;김부요;조일성;이규태
    • 대기
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    • 제27권4호
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    • pp.385-398
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    • 2017
  • Numerical weather prediction experiments were carried out by applying topographic effects to reduce or enhance the solar radiation by terrain. In this study, x and ${\kappa}({\phi}_o,\;{\theta}_o)$ are precalculated for topographic effect on high resolution numerical weather prediction (NWP) with 1 km spatial resolution, and meteorological variables are analyzed through the numerical experiments. For the numerical simulations, cases were selected in winter (CASE 1) and summer (CASE 2). In the CASE 2, topographic effect was observed on the southward surface to enhance the solar energy reaching the surface, and enhance surface temperature and temperature at 2 m. Especially, the surface temperature is changed sensitively due to the change of the solar energy on the surface, but the change of the precipitation is difficult to match of topographic effect. As a result of the verification using Korea Meteorological Administration (KMA) Automated Weather System (AWS) data on Seoul metropolitan area, the topographic effect is very weak in the winter case. In the CASE 1, the improvement of accuracy was numerically confirmed by decreasing the bias and RMSE (Root mean square error) of temperature at 2 m, wind speed at 10 m and relative humidity. However, the accuracy of rainfall prediction (Threat score (TS), BIAS, equitable threat score (ETS)) with topographic effect is decreased compared to without topographic effect. It is analyzed that the topographic effect improves the solar radiation on surface and affect the enhancements of surface temperature, 2 meter temperature, wind speed, and PBL height.

윤곽밀링시 공구변형에 의한 절삭표면 형상의 예측 (Prediction of the Milled Surface Shapes Considering Tool Deflection Effects in Profile Milling Process)

  • 서태일;조명우
    • 한국정밀공학회지
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    • 제16권7호
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    • pp.203-209
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    • 1999
  • In this paper, we present the methods to predict the milled surface shapes in profile milling process. In the cutting process, tools are deflected due to the cutting forces varying with the imposed depth of cut and feedrate. Thus, the final shapes of the milled surface, generated by the nominal tool trajectory, are different from the required profile. In order to predict the milled surface shapes, we present two methods based on: (1) the deflected tool profile and (2) the trace of contact point between the tool and the workpiece. In the first method, we make an assumption that the milled surface corresponds to the deflected tool profile. In another method, we make we make an assumption that the milled surface is generated by the trace of the contact point between the cutting edge of the tool and workpiece. We present the surface generation process by calculating the trajectory of the contact points on the workpiece. Several simulations and experiments are performed to verify the proposed milled surface prediction methods.

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노면의 강도 추정을 통한 자율 주행 로봇의 실시간 최적 주행 파라미터 예측 (Real-Time Prediction of Optimal Control Parameters for Mobile Robots based on Estimated Strength of Ground Surface)

  • 김자영;이지홍
    • 제어로봇시스템학회논문지
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    • 제20권1호
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    • pp.58-69
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    • 2014
  • This paper proposes a method for predicting maximum friction coefficients and optimal slip ratios as optimal control parameters for traction control or slip control of autonomous mobile robots on rough terrain. This paper focuses on strength of ground surface which indicates different characteristics depending on material types on surface. Strength of various material types can be estimated by Willoughby sinkage model and by a developed testbed which can measure forces, velocities, and displacements generated by wheel-terrain interaction. Estimated strength is collaborated on building improved Brixius model with friction-slip data from experiments with the testbed over sand and grass material. Improved Brixius model covers widespread material types in outdoor environments on predicting friction-slip characteristics depending on strength of ground surface. Thus, a prediction model for obtaining optimal control parameters is derived by partial differentiation of the improved Brixius model with respect to slip. This prediction model can be applied to autonomous mobile robots and finally gives secure maneuverability on rough terrain. Proposed method is verified by various experiments under similar conditions with the ones for real outdoor robots.

깊이 영상의 이차 곡면 모델링을 통한 화면 내 예측 방법 (Intra Prediction Method by Quadric Surface Modeling for Depth Video)

  • 이동석;권순각
    • 한국산업정보학회논문지
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    • 제27권2호
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    • pp.35-44
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    • 2022
  • 본 논문은 깊이 영상의 부호화를 위해 이차 곡면 모델링 방법을 통한 화면 내 예측 방법을 제안한다. 깊이 영상 내 깊이 화소는 거리 정보를 통해 3차원 좌표로 변환한다. 화면 내 예측을 위한 참조 화소들에 대해 최소자승법을 통해 오차가 제일 작은 이차 곡면을 찾는다. 참조 화소로는 상단의 화소들 또는 좌단의 화소들 중 하나가 될 수 있다. 이차 곡면을 통한 화면 내 예측에서, 한 화소에 대해 두 개의 예측 값이 계산된다. 각각의 참조 화소에 대해 예측 값들과 참조 화소의 차아의 제곱합으로 두 오차 값을 계산한다. 계산된 총 4개의 오차 중 제일 작은 오차를 가지는 참조 화소 선택 방법과 예측 화소 선택 방법이 선택되고, 이를 통해 블록 내 화소를 예측한다. 실험 결과는 최신 영상 부호화 방법과 비교하여 왜곡과 비트율이 각각 최대 5.16%과 5.12% 개선됨을 보인다.