• 제목/요약/키워드: coupling techniques

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Strategies for Operation of Single and Multiple Shake Tables

  • Laplace Patrick N.;Thoen Bradford K.
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2006년도 학술발표회 논문집
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    • pp.571-578
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    • 2006
  • Research using multiple shake tables present new and unique challenges in controls. Typical single shake table tests with large specimens must cope with significant specimen force feedback that can increase tracking error due to specimen gain, damping, and non-linearity. Multiple shaking tables with distributed specimens can produce cross-coupling forces due to inertial and response effects and forces due to static differential displacements. Although many various control architectures exist, basic simplified techniques can yield excellent results without risk to control stability. Off-line simulation techniques can also prove invaluable for studying system response before the real system is operated.

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Quasi Möbius Strip과 Via-Hole 구조를 응용한 선로결합 현상의 완화 및 소형화 설계 (Reduced Electrical Coupling Effect and Miniaturized Antenna Using Quasi Möbius Strip with Via-Hole)

  • 김미정;박성균;노승환
    • 한국통신학회논문지
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    • 제38B권9호
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    • pp.715-721
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    • 2013
  • RF소자의 소형화 기법으로는 헤리컬 구조를 적용하는 방법, Meta Material을 사용하는 방법 및 적층구조를 적용하는 방법 등 여러 방법들이 적용되고 있다. 그러나 헤리컬 구조는 한 번의 원주의 회전이 있을 때 마다 공진주파수가 생김에 따라 단일 공진주파수 특성을 가지는 RF회로의 소형화 기법에는 맞지 않으며, Meta Material과 적층구조를 적용하는 방법들은 구조가 복잡하며 비용이 많이 드는 단점이 있다. 또한, 3차원 구조의 기본적인 뫼비우스 스트립을 활용한 논문과 뫼비우스 스트립의 특성을 활용한 평판형 구조의 논문이 제안되었으나 완전한 평판형구조가 아니고, 선로결합효과(coupling effect) 현상의 문제점이 있었다. 따라서 본 논문은 기존 M$\ddot{o}$bius Strip과 위상동형인 Quasi M$\ddot{o}$bius Strip과 via hole구조를 응용함으로써, RF회로의 소형화와 선로결합효과를 완화한 안테나를 제시하였다. 본 논문의 시뮬레이션 결과에 의하면, 2.4GHz의 공진주파수 일 때, 기존의 링 안테나와 대비하여 물리적 원주의 길이는 1/3배로 소형화 되었다. 그리고 기존의 헤리컬 안테나의 다중공진특성이 아니라 단일 주파수에서의 공진특성을 보인다. 또한, 2.4GHz의 공진주파수 근처에서 선로결합 효과 현상이 거의 발생하지 않았다.

플라워 주얼리의 디자인 트렌드와 표현기법 분석에 관한 연구 (A Study on the Analysis of the Trends and Expression Techniques of Flower Jewelry)

  • 김연희;김미진;윤숙영;최병진
    • 한국화예디자인학연구
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    • 제43호
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    • pp.123-138
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    • 2020
  • 본 연구는 2011~2019년의 9년간 화훼장식 전문 월간지에 나타난 플라워 주얼리 작품을 추출하고, 추출된 플라워 주얼리 작품을 대상으로 표현유형, 표현기법, 사용된 식물재료와 비식물재료의 종류와 수 등을 작품별, 연도별로 분석하여 국내 플라워 주얼리의 트렌드를 알아보고자 실시하였다. 표현유형별로 살펴보면 머리장식의 경우 20.83%, 목걸이의 경우 57.29%, 귀걸이의 경우 5.21%, 리스트의 경우 10.42%, 기타 6.25%로 총 96작품으로 분석되었다(χ2=94.833, p<.001). 표현기법의 사용빈도를 분석한 결과 각 작품당 머리장식, 목걸이, 리스트는 5~6가지의 표현기법, 귀걸이는 2~4가지의 표현기법을 사용하여 제작되었다. 사용된 표현기법은 소재 결합기법 34.43%, 꽃과 잎의 이용기법 30.17%, 시각적 기법 16.63%, 집단화 기법 14.12%, 테크닉 강조기법 4.26%, 기타 0.39%로 나타났다(χ2=455.222, p<.001). 가장 많이 사용된 기법은 프레이밍 기법 16.63%, 노팅기법 16.44% 순으로 나타났다. 플라워 주얼리에 사용된 식물 재료는 절화의 경우 호접란 22.61%, 천일홍 13.48%, 글로리오사 9.57%, 에피덴드럼7.39%, 왁스플라워 6.96%, 골든볼 4.78% 등으로 나타났다(χ2=718.104, p<.001). 절지의 경우 말채나무 70.00%로 가장 많이 사용되었고, 다래덩굴, 노박덩굴, 능수버들이 각각 10.00% 사용되었다(χ2=10.800, p=.013). 절엽의 경우 엽란 24.65%, 아스파라거스 스마일락스 24.62%, 콩란 11.54%, 러브체인 6.15% 등으로 나타났다(χ2=269.385, p<.001). 열매의 경우 청미래덩굴의 열매 44.44%, 하이페리쿰 33.33%, 미국자리공 11.11% 등으로 나타났다(χ2=11.444, p=.022). 플라워 주얼리 제작에 사용된 비식물재료는 2mm 알루미늄와이어 47.34%, 카파와이어 33.73%, 1mm 알루미늄와이어 10.06% 등으로 나타났다(χ2=186.704, p< .001). 와이어 이외에 진주 53.57%, 리본 12.50%, 스팽글과 깃털 4.14% 등의 순으로 나타났다.

A Systematic Literature Survey of Software Metrics, Code Smells and Refactoring Techniques

  • Agnihotri, Mansi;Chug, Anuradha
    • Journal of Information Processing Systems
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    • 제16권4호
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    • pp.915-934
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    • 2020
  • Software refactoring is a process to restructure an existing software code while keeping its external behavior the same. Currently, various refactoring techniques are being used to develop more readable and less complex codes by improving the non-functional attributes of software. Refactoring can further improve code maintainability by applying various techniques to the source code, which in turn preserves the behavior of code. Refactoring facilitates bug removal and extends the capabilities of the program. In this paper, an exhaustive review is conducted regarding bad smells present in source code, applications of specific refactoring methods to remove that bad smell and its effect on software quality. A total of 68 studies belonging to 32 journals, 31 conferences, and 5 other sources that were published between the years 2001 and 2019 were shortlisted. The studies were analyzed based on of bad smells identified, refactoring techniques used, and their effects on software metrics. We found that "long method", "feature envy", and "data class" bad smells were identified or corrected in the majority of studies. "Feature envy" smell was detected in 36.66% of the total shortlisted studies. Extract class refactoring approach was used in 38.77% of the total studies, followed by the move method and extract method techniques that were used in 34.69% and 30.61% of the total studies, respectively. The effects of refactoring on complexity and coupling metrics of software were also analyzed in the majority of studies, i.e., 29 studies each. Interestingly, the majority of selected studies (41%) used large open source datasets written in Java language instead of proprietary software. At the end, this study provides future guidelines for conducting research in the field of code refactoring.

Direct Analysis in Real Time Mass Spectrometry: a Powerful Tool for Fast Analysis

  • Li, Xianjiang;Wang, Xin;Li, Linnan;Bai, Yu;Liu, Huwei
    • Mass Spectrometry Letters
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    • 제6권1호
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    • pp.1-6
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    • 2015
  • Direct analysis in real time mass spectrometry (DART-MS) is one of the variants of ambient mass spectrometry. The ionization process of DART-MS is in open environment and only takes few seconds, so it is suitable for fast analysis. Actually, since its introduction in 2005, more and more attentions have been drawn to its various applications due to its excellent properties, e.g., fast analysis, and no or less sample preparation, high salt tolerance and so on. This review summarized the promising features of DART-MS, including its ionization mechanism, equipment modification, wide applications, coupling techniques and extraction strategies before analysis.

Prediction and analysis of optimal frequency of layered composite structure using higher-order FEM and soft computing techniques

  • Das, Arijit;Hirwani, Chetan K.;Panda, Subrata K.;Topal, Umut;Dede, Tayfun
    • Steel and Composite Structures
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    • 제29권6호
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    • pp.749-758
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    • 2018
  • This article derived a hybrid coupling technique using the higher-order displacement polynomial and three soft computing techniques (teaching learning-based optimization, particle swarm optimization, and artificial bee colony) to predict the optimal stacking sequence of the layered structure and the corresponding frequency values. The higher-order displacement kinematics is adopted for the mathematical model derivation considering the necessary stress and stain continuity and the elimination of shear correction factor. A nine noded isoparametric Lagrangian element (eighty-one degrees of freedom at each node) is engaged for the discretisation and the desired model equation derived via the classical Hamilton's principle. Subsequently, three soft computing techniques are employed to predict the maximum natural frequency values corresponding to their optimum layer sequences via a suitable home-made computer code. The finite element convergence rate including the optimal solution stability is established through the iterative solutions. Further, the predicted optimal stacking sequence including the accuracy of the frequency values are verified with adequate comparison studies. Lastly, the derived hybrid models are explored further to by solving different numerical examples for the combined structural parameters (length to width ratio, length to thickness ratio and orthotropicity on frequency and layer-sequence) and the implicit behavior discuss in details.

NEAR INFRARED TRANSFLECTANCE SPECTROSCOPY (NIRS) IN PHYTOCHEMISTRY

  • Huck, C.W.;W.Guggenbichler;Bonn, G.K.
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.3114-3114
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    • 2001
  • During the last years phytochemistry and phytopharmaceutical applications have developed rapidly and so there exists a high demand for faster and more efficient analysis techniques. Therefore we have established a near infrared transflectance spectroscopy (NIRS) method that allows a qualitative and quantitative determination of new polyphenolic pharmacological active leading compounds within a few seconds. As the NIR spectrometer has to be calibrated the compound of interest has at first to be characterized by using one or other a combination of chromatographic or electrophoretic separation techniques such as thin layer chromatography (TLC), high performance liquid chromatography (HPLC), capillary electrophoresis (CE), gas chromatography (GC) and capillary electrochromatography (CEC). Both structural elucidation and quantitative analysis of the phenolic compound is possible by direct coupling of the mentioned separation methods with a mass spectrometer (GC-MS, LC-MS/MS, CE-MS, CEC-MS) and a NMR spectrometer (LC-NMR). Furthermore the compound has to be isolated (NPLC, MPLC, prep. TLC, prep. HPLC) and its structure elucidated by spectroscopic techniques (UV, IR, HR-MS, NMR) and chemical synthesis. After that HPLC can be used to provide the reference data for the calibration step of the near infrared spectrometer. The NIRS calibration step is time consuming, which is compensated by short analysis times. After validation of the established NIRS method it is possible to determine the polyphenolic compound within seconds which allows to raise the efficiency in quality control and to reduce costs especially in the phytopharmaceutical industry.

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A THERMO-ELASTO-VISCOPLASTIC MODEL FOR COMPOSITE MATERIALS AND ITS FINITE ELEMENT ANALYSIS

  • Shin, Eui-Sup
    • Journal of Theoretical and Applied Mechanics
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    • 제3권1호
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    • pp.45-65
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    • 2002
  • A constitutive model on oorthotropic thermo-elasto-viscoplasticity for fiber-reinforced composite materials Is illustrated, and their thermomechanical responses are predicted with the fully-coupled finite element formulation. The unmixing-mixing scheme can be adopted with the multipartite matrix method as the constitutive model. Basic assumptions based upon the composite micromechanics are postulated, and the strain components of thermal expansion due to temperature change are included In the formulation. Also. more than two sets of mechanical variables, which represent the deformation states of multipartite matrix can be introduced arbitrarily. In particular, the unmixing-mixing scheme can be used with any well-known isotropic viscoplastic theory of the matrix material. The scheme unnecessitates the complex processes for developing an orthotropic viscoplastic theory. The governing equations based on fully-coupled thermomechanics are derived with constitutive arrangement by the unmixing-mixing concept. By considering some auxiliary conditions, the Initial-boundary value problem Is completely set up. As a tool of numerical analyses, the finite element method Is used with isoparametric Interpolation fer the displacement and the temperature fields. The equation of mutton and the energy conservation equation are spatially discretized, and then the time marching techniques such as the Newmark method and the Crank-Nicolson technique are applied. To solve the ultimate nonlinear simultaneous equations, a successive iteration algorithm is constructed with subincrementing technique. As a numerical study, a series of analyses are performed with the main focus on the thermomechanical coupling effect in composite materials. The progress of viscoplastic deformation, the stress-strain relation, and the temperature History are careful1y examined when composite laminates are subjected to repeated cyclic loading.

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인장/압축 Fragmentation시험법과 음향방출을 이용한 단 섬유 복합재료의 미세파괴 메커니즘 (Microfailure Mechanisms of Single-Fiber Composites Using Tensile/Compressive Fragmentation Techniques and Acoustic Emission)

  • 김진원;박종만;윤동진
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2000년도 춘계학술발표대회 논문집
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    • pp.159-162
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    • 2000
  • Interfacial and microfailure properties of carbon fiber/epoxy matrix composites were evaluated using both tensile fragmentation and compressive Broutman tests with acoustic emission (AE). Amino-silane and maleic anhydride polymeric coupling agents were used via the dipping and electrodeposition (ED), respectively. Both coupling agents exhibited higher improvements in interfacial shear strength (IFSS) under tensile tests than compressive cases. However, ED treatment showed higher IFSS improvement than dipping case under both tensile and compressive test. The typical microfailure modes including fiber break, matrix cracking, and interlayer failure were observed during tensile test, whereas the diagonal slippage in fiber ends was observed during compressive test. For both the untreated and treated cases AE distributions were separated well under tensile testing. On the other hand, AE distributions were rather closer under compressive tests because of the difference in failure energies between tensile and compressive loading. Under both loading conditions, fiber breaks occurred around just before and after yielding point. Maximum AE voltage fur the waveform of carbon or basalt fiber breakage under tensile tests exhibited much larger than those under compressive tests.

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A Study on Ultrasonic Evaluation of Material Defects in Carbon/carbon Composites

  • Im, Kwang-Hee;David K. Hsu;Cha, Cheon-Seok;Sim, Jae-Ki;Yang, In-Young
    • Journal of Mechanical Science and Technology
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    • 제16권12호
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    • pp.1652-1663
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    • 2002
  • It is desirable to perform nondestructive evaluation to assess material properties and part homogeneity because manufacturing of carbon/carbon (C/C) composites requires complicated and costly processes. In this work several ultrasonic techniques were applied to carbon/carbon composites for the evaluation of spatial variations in material properties that are attributable to the manufacturing process. In a large carbon/carbon composite manufactured by chemical vapor infiltration (CVI) method, the spatial variation of ultrasonic velocity was measured and found to be consistent with the densification behavior in CVI process in order to increase the density of C/C composites. Ultrasonic velocity and attenuation depend on a density variation of materials. Low frequency through-transmission scans based on both amplitude and time-of-flight of the ultrasonic pulse were used for mapping out the material property inhomogeneity These results were compared with that obtained by dry-coupling ultrasonics. Pulse-echo C-scans was used to image near-surface material property anomalies such as the placement of spacers between disks during CVI. Also, optical micrograph had been examined on the surface of C/C composites using a destructive way.