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퇴계 사단칠정론 시각에서 본 승무 염불과장 둘째 마루의 동작 분석적 해석
무용역사기록학회(구 한국무용사학회) 한국무용사학 제12호 2011.06 pp.99-128
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E-Shape 강재이력댐퍼의 수치모델과 기초격리구조물의 지진응답
[Kisti 연계] 대한토목학회 대한토목학회논문집 A Vol.28 No.a5 2008 pp.685-690
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최근 대규모의 지진피해로 인해 내진설계에 대한 관심이 높아지면서, LRB(Lead Rubber Bearing), FPS(Friction Pendulum System) 등 다양한 지진격리장치에 대한 연구가 진행되고 있다. 본 연구에서 E-Shape 강재이력댐퍼를 이용한 지진격리장치의 성능 평가를 위해 E-Shape 댐퍼의 동적거동 실험을 수행하였으며, 이를 바탕으로 해석적 연구를 위한 수치모델을 제안하였다. 또한, 제안된 E-Shape 강재이력댐퍼의 수치모델을 6자유도를 가진 5층 건물에 적용하여 LRB 시스템과 이력거동을 비교하여 지진격리성능 평가를 수행하였다. 본 연구를 통하여 제안된 수치모델은 실제 E-Shape 강재이력댐퍼의 동적거동을 적절히 묘사할 수 있으며, E-Shape 강재이력댐퍼는 비선형 거동을 통한 에너지를 적절히 소산시킴으로서 기존 시스템과 비교하여 충분히 지진격리성능을 발휘할 수 있을 것으로 사료된다.
Recently, as large structures become lighter and more flexible, the necessity of structural control for reducing excessive displacement and acceleration due to seismic excitation is increased. As a means to minimize seismic damages, various base isolation systems are adopted or considered for adoption. In this study, a base isolation system using hysteretic damper is shown to effectively protect structures against earthquakes. A mechanical model is determined that can effectively portray the behavior of a typical E-shape device. Comparison with experimental results for a hysteretic damper indicates that the model is accurate over a wide range of operating conditions and adequate for analysis. The seismic performance of hysteretic dampers are studied and compared with the conventional systems as a base isolation system. A five-story building is modeled and the seismic performance of the systems subjected to three different earthquake is compared. The results show that the hysteretic damper system can provide superior protection than the other systems for a wide range of ground motions.
[Kisti 연계] 한국정보처리학회 Journal of information processing systems Vol.16 No.2 2020 pp.343-359
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In this paper, a new algorithm is proposed for three-dimensional (3D) shape recognition using local features of model views and its sparse representation. The algorithm starts with the normalization of 3D models and the extraction of 2D views from uniformly distributed viewpoints. Consequently, the 2D views are stacked over each other to from view cubes. The algorithm employs the descriptors of 3D local features in the view cubes after applying Gabor filters in various directions as the initial features for 3D shape recognition. In the training stage, we store some 3D local features to build the prototype dictionary of local features. To extract an intermediate feature vector, we measure the similarity between the local descriptors of a shape model and the local features of the prototype dictionary. We represent the intermediate feature vectors of 3D models in the sparse domain to obtain the final descriptors of the models. Finally, support vector machine classifiers are used to recognize the 3D models. Experimental results using the Princeton Shape Benchmark database showed the average recognition rate of 89.7% using 20 views. We compared the proposed approach with state-of-the-art approaches and the results showed the effectiveness of the proposed algorithm.
The design of blank's initial shape in the near net-shape deep drawing of square cup
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.21 No.10 2007 pp.1585-1592
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Deep drawing process is very useful in industrial field because of its efficiency. The deep drawing is affected by many process variables, such as blank shapes, profile radii of punch and die, formability of materials and so on. Especially, in order to obtain the optimal products in deep drawing process, blank shape is very important formability factor. In this paper, the finite element method is used to investigate the cup height of the square cup drawing process. In order to verify the prediction of FEM simulation of the product's height and forming load in the square cup drawing process, the experimental data are compared with the results of the current simulation. A finite element analysis is also utilized to acquire the designed profile of the drawn products, a reverse forming method for obtaining the initial blank's shape according to the forward square cup drawing simulation is proposed. The design of initial blank's shape is also certified to obtain the designed profile of drawn cups by experiment. The influences of the blank's shape on the height of product, the forming load, the maximum effective stress and the maximum effective strain are also examined.
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.19 No.7 2005 pp.1460-1468
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Two possible shape memory processes, austenite to detwinned martensite transformation and twinned martensite to detwinned martensite transformation of a shape memory alloy have been modeled and examined. Eshelby's equivalent inclusion method with Mori-Tanaka's mean field theory is used for modeling of the shape memory processes of TiNi shape memory alloy reinforced aluminum matrix composite. The shape memory amount of shape memory alloy, plastic strain and residual stress in the matrix are computed and compared for the two processes. It is shown that the shape memory amount shows differences in a small prestrain region, but the plastic strain and the residual stress in the matrix show differences in the whole prestrain region. The shape memory process with initially martensitic state of the shape memory alloy would be favorable to the increase in the yield stress of the composite owing to the large compressive residual stress and plastic strain in the matrix.
Shape Description and Retrieval Using Included-Angular Ternary Pattern
[Kisti 연계] 한국정보처리학회 Journal of information processing systems Vol.15 No.4 2019 pp.737-747
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Shape description is an important and fundamental issue in content-based image retrieval (CBIR), and a number of shape description methods have been reported in the literature. For shape description, both global information and local contour variations play important roles. In this paper a new included-angular ternary pattern (IATP) based shape descriptor is proposed for shape image retrieval. For each point on the shape contour, IATP is derived from its neighbor points, and IATP has good properties for shape description. IATP is intrinsically invariant to rotation, translation and scaling. To enhance the description capability, multiscale IATP histogram is presented to describe both local and global information of shape. Then multiscale IATP histogram is combined with included-angular histogram for efficient shape retrieval. In the matching stage, cosine distance is used to measure shape features' similarity. Image retrieval experiments are conducted on the standard MPEG-7 shape database and Swedish leaf database. And the shape image retrieval performance of the proposed method is compared with other shape descriptors using the standard evaluation method. The experimental results of shape retrieval indicate that the proposed method reaches higher precision at the same recall value compared with other description method.
[Kisti 연계] 한국응용약물학회 Biomolecules & therapeutics Vol.25 No.3 2017 pp.223-230
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Platelets play an essential role in hemostasis through aggregation and adhesion to vascular injury sites but their unnecessary activation can often lead to thrombotic diseases. Upon exposure to physical or biochemical stimuli, remarkable platelet shape changes precede aggregation or adhesion. Platelets shape changes facilitate the formation and adhesion of platelet aggregates, but are readily reversible in contrast to the irrevocable characteristics of aggregation and adhesion. In this dynamic phenomenon, complex molecular signaling pathways and a host of diverse cytoskeleton proteins are involved. Platelet shape change is easily primed by diverse pro-thrombotic xenobiotics and stimuli, and its inhibition can modulate thrombosis, which can ultimately contribute to the development or prevention of thrombotic diseases. In this review, we discussed the current knowledge on the mechanisms of platelet shape change and also pathological implications and therapeutic opportunities for regulating the related cytoskeleton dynamics.
Optimum Shape Design of Rotating Shaft by ESO Method
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.21 No.7 2007 pp.1039-1047
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Evolutionary structural optimization (ESO) method is based on a simple idea that the optimal structure can be produced by gradually removing the ineffectively used material from the design domain. ESO seems to have some attractive features in engineering aspects: simple and fast. In this paper, ESO is applied to optimize shaft shape for the rotating machinery by introducing variable size of finite elements in optimization procedure. The goal of this optimization is to reduce total shaft weight and resonance magnification factor (Q factor), and to yield the critical speeds as far from the operating speed as possible. The constraints include restrictions on critical speed, unbalance response and bending stresses. Sensitivity analysis of the system parameters is also investigated. The results show that new ESO method can be efficiently used to optimize the shape of rotor shaft system with frequency and dynamic constraints.
Can Probability Shape Moral Decisions? Probability as Psychological Distance
[NRF 연계] 한국사회및성격심리학회 한국심리학회지: 사회및성격 Vol.25 No.4 2011.11 pp.27-40
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The present study proposes that probability (How likely is an event X to happen) would influence how people make moral decisions. When an event is unlikely, due to their uncertain and abstract nature, psychological distance is augmented and people construe these events in terms of general moral principles rather than attenuating situation-specific considerations. On the other hand, when an event is highly likely, psychological distance decreases, leading people to consider specific situational costs and benefits. 3 studies test these assumptions. Study 1 confirms probability as one dimension of psychological distance. Building on study 1, study 2 and 3 test the effect of probability in willingness to conduct positive and negative moral behavior. As predicted, when probability is low, people are more willing to act according to moral principles, exhibiting higher willingness for positive moral behavior and less willingness in being involved with negative moral behavior.
The role of shape memory alloy on impact response of glass/epoxy laminates under low temperature
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.21 No.10 2007 pp.1682-1688
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The paper aims to evaluate the impact response of glass/epoxy laminates with embedded shape memory alloy (SMA) subject to low velocity impact at various temperatures. For the goal, the impact tests were performed by using an instrumented impact-testing machine at three temperatures: 293K, 263K and 233K for the baseline (laminates without SMA wires) and SMA laminates (laminates with embedded SMA wires). And the resultant damages were inspected through the scanning acoustic microscope (SAM). Also, based on the impact force history and the damage configuration, the impact resistance parameters were employed to evaluate damage resistance of laminates with embedded SMA wires. As a result, it was observed that the damage resistance of glass/epoxy laminates is influenced by embedded SMA wires and embedding SMA wires into laminates does not compromise the structure any differently to laminates without wires. In fact, it has been shown that under lower temperature, the SMA laminates have a little superior damage resistance compared with the baseline laminates.
Boundary Method for Shape Design Sensitivity Analysis in Solving Free-Surface Flow Problems
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.19 No.12 2005 pp.2231-2244
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An efficient boundary-based optimization technique is applied in the numerical computation of free surface flow problems, by reformulating them into the equivalent optimal shape design problems. While the sensitivity in the boundary method has mainly been calculated using the boundary element method (BEM) as an analysis means, the finite element method (FEM) is used in this study because of its popularity and easy-to-use features. The advantage of boundary method is that the design velocity vectors are needed only on the boundary, not over the whole domain. As such, a determination of the complicated domain design velocity field, which is necessary in the domain method, is eliminated, thereby making the process easy to implement and efficient. Seepage and supercavitating flow problem are chosen to illustrate the accuracy and effectiveness of the proposed method.
[Kisti 연계] 대한물리의학회 대한물리의학회지 Vol.20 No.2 2025 pp.11-19
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PURPOSE: Children with cerebral palsy experience difficulties with selective muscle control, ataxia, and abnormal muscle tone that can result in secondary foot and ankle deformities. In this study, the arch height index (AHI), which can be measured easily using hand calipers, was used to classify the foot shape of children with cerebral palsy and compare the dominant and non-dominant sides. METHODS: This study measured the instep height and metatarsal head length in the sitting and standing postures with 20 children with cerebral palsy, and the AHI was calculated with the ratio of the instep height and metatarsal head length using a foot assessment platform. RESULTS: Classification of the foot shapes according to the AHI showed that the proportion of pes planus was high on the dominant and non-dominant sides in the sitting position, and the proportion of pes planus was high on the dominant and non-dominant sides in the standing position. The classifications of the foot shapes according to AHI were similar on the dominant and non-dominant sides. CONCLUSION: The proportion of pes planus was high in the dominant and non-dominant sides of children with cerebral palsy, regardless of the posture, and there was no significant difference between the two feet. These results provide a foundation for evaluating the condition of both feet and establishing an appropriate treatment plan during the therapeutic process for children with cerebral palsy.
Acquisition Model for 3D Shape Measurement Data
[Kisti 연계] 한국정밀공학회 International journal of precision engineering and manufacturing Vol.9 No.4 2008 pp.16-21
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The demand for three-dimensional (3D) shape measurements is increasing in a variety of fields, including the manufacture of molds and dies. The most popular technology for 3D shape measurement is the coordinate measuring machine (CMM) with a contact trigger probe. Although a CMM provides a high degree of accuracy, it is inefficient due to its long measuring time. It also has difficulty measuring soft objects that can be deformed by the touch of the contact probe. In addition, a CMM cannot digitize areas that are difficult to reach, and cannot capture very minute details on the surface of complex parts. For these reasons, optical non-contact measurement techniques are receiving more attention since they eliminate most of the problems associated with contact methods. Laser scanning is emerging as one of the more promising non-contact measurement techniques. This paper describes various acquisition considerations for laser scanning, including the accuracy of the 3D scan data, which depends on the charge-coupled device (CCD) gain and noise. The CCD gain and noise of a 3D laser scanner are varied while keeping the other conditions constant, and the measurement results are compared to the dimensions of a standard model. The experimental results show that a considerable time savings and an optimum degree of accuracy are possible by selecting the proper CCD gain and noise.
Fault Diagnosis of Roll Shape Under the Speed Variation in Hot Rolling Mill
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.20 No.9 2006 pp.1410-1417
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The metal processing system usually consists of various components such like motors, work rolls, backup rolls, idle rolls, sensors, etc. Even a simple fault in a single component in the system may cause a serious damage on the final product. It is therefore necessary to diagnose the faults of the components to detect and prevent system failure. Especially, the defects in a work roll are critical to the quality of strip. It is especially difficult to detect faults of a roll by using the existing frequency analysis method if the speed of the roll is changing. In this study, a new diagnosis method for roll eccentricity under the roll speed changes was developed. The new method was induced from analyzing the rolling mechanism by using rolling force models, radius-speed relationship, and measured rolling force, etc. Simulation results by using the field data show that the proposed method is very useful.
Compact Capacitance Model of L-Shape Tunnel Field-Effect Transistors for Circuit Simulation
[Kisti 연계] 한국정보통신학회 Journal of information and communication convergence engineering Vol.19 No.4 2021 pp.263-268
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Although the compact capacitance model of point tunneling types of tunneling field-effect transistors (TFET) has been proposed, those of line tunneling types of TFETs have not been reported. In this study, a compact capacitance model of an L-shaped TFET (LTFET), a line tunneling type of TFET, is proposed using the previously developed surface potentials and current models of P- and L-type LTFETs. The Verilog-A LTFET model for simulation program with integrated circuit emphasis (SPICE) was also developed to verify the validation of the compact LTFET model including the capacitance model. The SPICE simulation results using the Verilog-A LTFET were compared to those obtained using a technology computer-aided-design (TCAD) device simulator. The current-voltage characteristics and capacitance-voltage characteristics of N and P-LTFETs were consistent for all operational bias. The voltage transfer characteristics and transient response of the inverter circuit comprising N and P-LTFETs in series were verified with the TCAD mixed-mode simulation results.
Color Image Coding Based on Shape-Adaptive All Phase Biorthogonal Transform
[Kisti 연계] 한국정보처리학회 Journal of information processing systems Vol.13 No.1 2017 pp.114-127
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This paper proposes a color image coding algorithm based on shape-adaptive all phase biorthogonal transform (SA-APBT). This algorithm is implemented through four procedures: color space conversion, image segmentation, shape coding, and texture coding. Region-of-interest (ROI) and background area are obtained by image segmentation. Shape coding uses chain code. The texture coding of the ROI is prior to the background area. SA-APBT and uniform quantization are adopted in texture coding. Compared with the color image coding algorithm based on shape-adaptive discrete cosine transform (SA-DCT) at the same bit rates, experimental results on test color images reveal that the objective quality and subjective effects of the reconstructed images using the proposed algorithm are better, especially at low bit rates. Moreover, the complexity of the proposed algorithm is reduced because of uniform quantization.
Die design in the complex shape drawing of cross roller guide to improve the dimensional accuracy
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.21 No.10 2007 pp.1573-1579
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A drawing process allows for a smooth and clean surface, metal savings, low cost tooling, and closely controlled dimensions to be obtained in long products that have constant cross-sections. Recently, rods having irregular sections more complex than a rectangle or ellipse are necessary to produce mechanical parts. A cross roller guide is one of the parts produced by complex cold-shaped drawing. A cross roller guide has a linear bearing system that rolls along a guide way. A cross roller guide is one of the most important components in terms of equipment because the quality of the linear rail influences the precision linear motion. Therefore, the final dimensional accuracy of the linear rail in cold-shaped drawing is very important. The aim of this study is the optimization of the optimal die angles to improve the dimensional accuracy and straightness of the final product using design of experiment, FE-simulation, and the Taguchi method. Based on the analytical results, experiments for real industrial products have also been implemented to verify the results. From the experimental results, it was possible to improve the dimensional accuracy and straightness of final product.
Research on Entirely-integrated Spatial-bending Shape Memory Alloy Actuator
[Kisti 연계] 대한기계학회 Journal of mechanical science and technology Vol.21 No.7 2007 pp.1090-1099
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A new structure of Entirely-integrated Spatial-bending Shape Memory Alloy Actuators (ESSMAA) is first presented. Three SMA wires, which are trained to remember "U" recovery shape, are embedded in liquid silicone rubber to be solidified upon room temperature, companied with displacement sensors and connective wires. The Spatial bending, which is accomplished through heating SMA wires by suitable current, can restore flexibly as soon as stopping heating. Thus, the compact, two-way, mechanical and electrical incorporation actuator is completed. Be provided with the merits such as high load-weight ratio, low energy dissipation and direct driving, the actuators can realize miniature configuration, simple drive and control, precise operation and flexible movement pose synthetically. On the basis of expounding the operation principle in detail, the curvature sensor, which is composed of six stain gauges, makes displacement control precise. After analyzing equilibrium of forces and moments, the numeric calculation equations are deduced. Subsequently, the approximate arithmetic making use of superpose principle is researched in contrast with numeric arithmetic. The manufacture of the prototype is discussed in details and the precise displacement control is implemented also. Finally, the experiments of the actuator proof fine qualities of the operation performances.
[NRF 연계] 한국임상심리학회 Korean Journal of Clinical Psychology Vol.45 No.1 2026.02 pp.52-62
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This study examined how the quality of the relationship with the deceased, caregivers’ grief facilitation behaviors, self com- passion, and meaning reconstruction influence posttraumatic growth (PTG) in emerging adults. Furthermore, it investigated whether caregivers’ grief facilitation behaviors moderate this relationship. An online survey was conducted with young adults aged 19?29 years who experienced the loss of a parent. Data from 137 participants were analyzed. The results showed that, first, self-compassion and meaning reconstruction fully mediated the relationship between the quality of the relationship with the deceased and PTG. Second, caregivers’ grief facilitation behaviors significantly moderated the relationship between meaning reconstruction and PTG. These findings suggest that clinical interventions aimed at enhancing self compassion, meaning reconstruction, and caregivers’ grief facilitating behaviors are effective and essential for adaptation following be- reavement.
Cross-modal Correspondence Between Acoustic Feature and Shape
[NRF 연계] 한국인지및생물심리학회 한국심리학회지: 인지 및 생물 Vol.30 No.3 2018.07 pp.269-275
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Our brain tends to associate stimulus features across the senses in a non-random manner. For example, people show consistency in labelling a rounded shape ‘maluma’/‘bouba’ and a spiky shape ‘takete’/‘kiki’. Previous studies have attributed this phenomenon to the correspondence between sound and shape, but without controlling for other potential factors (i.e., linguistic/orthographical factors). The present study examines the role of acoustic aspect per se by manipulating articulatory gestures to generate synthetic speech sounds not confined to a specific language. Participants were asked to choose either a rounded or spiky shape to indicate the shape that better matched each synthetic speech sound. The results demonstrate that shape choice was systematically mapped on to the dimensions manipulated to generate the sounds. These results indicate that acoustic features indeed drive the association between sound and visual shape.
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