• 제목/요약/키워드: Artificial Void

검색결과 67건 처리시간 0.019초

PA Map(Pulse Analysis Map)을 이용한 새로운 부분방전 패턴인식에 관한 연구 (A Study on the New Partial Discharge Pattern Analysis System used by PA Map (Pulse Analysis Map))

  • 김지홍;김정태;김진기;구자윤
    • 전기학회논문지
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    • 제56권6호
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    • pp.1092-1098
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    • 2007
  • Since one decade, the detection of HFPD (High frequency Partial Discharge) has been proposed as one of the effective method for the diagnosis of the power component under service in power grids. As a tool for HFPD detection, Metal Foil sensor based on the embedded technology has been commercialized for mainly power cable due to its advantages. Recently, for the on-site noise discrimination, several PA (Pulse analysis) methods have been reported and the related software, such as Neural Network and Fuzzy, have been proposed to separate the PD (Partial Discharge) signals from the noises since their wave shapes are completely different from each other. On the other hand, the relevant fundamental investigation has not yet clearly made while it is reported that the effectiveness of the current methods based on PA is dependant on the types of sensors. Moreover, regarding the identification of the vital defects introducible into the Power Cable, the direct identification of the nature of defects from the PD signals through Metal Foil coupler has not yet been realized. As a trial for solving above shortcomings, different types of software have been proposed and employed without any convincing probability of identification. In this regards, our novel algorithm 'PA Map' based on the pulse analysis is suggested to identify directly the defects inside the power cable from the HFPD signals which is output of the HFCT and metal foil sensors. This method enables to discriminate the noise and then to make the data analysis related to the PD signals. For the purpose, the HFPD detection and PA (Pulse Analysis) system have been developed and then the effect of noise discrimination has been investigated by use of the artificial defects using real scale mockup. Throughout these works, our system is proved to be capable of separating the small void discharges among the very large noises such as big air corona and ground floating discharges at the on-site as well as of identifying the concerned defects.

도로동공 탐지에 적합한 GPR 타입 선정에 관한 연구 (A Study on the Selection of GPR Type Suitable for Road Cavity Detection)

  • 김연태;최지영;김기덕;박희문
    • 한국도로학회논문집
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    • 제19권5호
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    • pp.69-75
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    • 2017
  • PURPOSES : The purpose of this study is to evaluate different types of Ground Penetrating Radar (GPR) testing for characterizing the road cavity detection. The impulse and step-frequency-type GPR tests were conducted on a full-scale testbed with an artificial void installation. After analyzing the response signals of GPR tests for detecting the road cavity, the characteristics of each GPR response was evaluated for a suitable selection of GPR tests. METHODS : Two different types of GPR tests were performed to estimate the limitation and accuracy for detecting the cavities underneath the asphalt pavement. The GPR signal responses were obtained from the testbed with different cavity sizes and depths. The detection limitation was identified by a signal penetration depth at a given cavity for impulse and step-frequency-type GPR testing. The unique signal characteristics was also observed at cavity sections. RESULTS : The impulse-type GPR detected the 500-mm length of cavity at a depth of 1.0 m, and the step-frequency-type GPR detected the cavity up to 1.5 m. This indicates that the detection capacity of the step-frequency type is better than the impulse type. The step-frequency GPR testing also can reflect the howling phenomena that can more accurately determine the cavity. CONCLUSIONS :It is found from this study that the step-frequency GPR testing is more suitable for the road cavity detection of asphalt pavement. The use of step-frequency GPR testing shows a distinct image at the cavity occurrences.

인공신경망을 이용한 연약지반의 지반설계정수 예측 (Prediction of Various Properties of Soft Ground Soils using Artificial Neural Network)

  • 김영수;정우섭;정환철;임안식
    • 대한토목학회논문집
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    • 제26권2C호
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    • pp.81-88
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    • 2006
  • 연약지반의 설계정수로 사용되는 비배수전단강도 및 선행압밀하중의 예측을 위해 전국적으로 산재해 있는 6개의 연약지반 대상구역의 실험결과를 이용하여 역전파학습알고리즘을 통해 학습 및 예측을 실시하였다. 실험결과치와 신경망학습의 결과치는 상관계수 0.9이상의 값을 나타냄으로서 높은 상관성를 나타내었으며 자연함수비, 간극비, 비중, 세립토의 함유율은 상관성을 높이는데 상당한 기여를 하는 것으로 나타났다. 본 연구를 통해 연약지반개량공법설계시 충분한 양질의 자료만 확보할 수 있다면 다양한 지반의 물성치를 인공신경망을 통해 효율적으로 예측할 수 있다는 것을 확인하였다.

압축지수의 추정을 위한 인공신경망 적용과 경험식 제안 (Proposition Empirical Equations and Application of Artificial Neural Network to the Estimation of Compression Index)

  • 김병탁;김영수;배상근
    • 한국지반공학회논문집
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    • 제17권6호
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    • pp.25-36
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    • 2001
  • 본 연구목적은 압축지수에 대한 기본 물성들의 영향을 검토하고 국내 점토에 대한 새로운 압축지수 경험식을 제안하고 오류 역전파 신경망 알고리즘의 적용성을 검증함에 있다. 11개 지구의 점토에 대한 실내시험결과에서 얻어진 압축지수 값은 최소 0.01에서 최대 3.06 정도의 범위로 나타났다. 기존 제안된 경험식에 의한 압축지수의 추정값과 시험결과를 비교한 결과, 단일 지반변수를 이용하는 경험식의 결과들은 과소평가될 가능성이 크게 나타났으며 복합 지반변수를 이용하는 경험식의 결과는 단일 지반변수의 경우보다 추정의 정확성이 높으나 시험결과와의 표준오차가 최소 0.05로서 다소 크게 나타나고 있다. 이에 본 연구에서는 시험결과에 근거한 압축지수에 대하여 회귀분석으로 단일 및 복합 지반변수를 이용하는 경험식을 제안하였으며 이들의 결정계수는 최소 0.89 이상으로 결정되었다. 본 연구에서 사용한 인공 신경망 구조에서 시험결과와 신경망 결과의 상관계수 및 표준오차는 각각 0.925 이상과 0.0196 이하로 나타나 높은 상관성을 나타내었다. 특히, 인공 신경망에 의한 예측결과는 압축지수에 대한 영향인자들 중에서 자연 함수비, 건조단위중량 그리고 현장 간극비의 3개 변수만으로도 압축지수를 예측할 수 있었으며, 상관계수는 0.974로 나타났다. 따라서, 인공 신경망이 이용된다면 간편한 현장실험에서 얻어진 변수들에 의하여 압축지수를 예측 할 수 있는 가능성을 입증하였다.

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저온 및 고전류밀도 조건에서 전기도금된 구리 박막 간의 열-압착 직접 접합 (Thermal Compression of Copper-to-Copper Direct Bonding by Copper films Electrodeposited at Low Temperature and High Current Density)

  • 이채린;이진현;박기문;유봉영
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2018년도 춘계학술대회 논문집
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    • pp.102-102
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    • 2018
  • Electronic industry had required the finer size and the higher performance of the device. Therefore, 3-D die stacking technology such as TSV (through silicon via) and micro-bump had been used. Moreover, by the development of the 3-D die stacking technology, 3-D structure such as chip to chip (c2c) and chip to wafer (c2w) had become practicable. These technologies led to the appearance of HBM (high bandwidth memory). HBM was type of the memory, which is composed of several stacked layers of the memory chips. Each memory chips were connected by TSV and micro-bump. Thus, HBM had lower RC delay and higher performance of data processing than the conventional memory. Moreover, due to the development of the IT industry such as, AI (artificial intelligence), IOT (internet of things), and VR (virtual reality), the lower pitch size and the higher density were required to micro-electronics. Particularly, to obtain the fine pitch, some of the method such as copper pillar, nickel diffusion barrier, and tin-silver or tin-silver-copper based bump had been utillized. TCB (thermal compression bonding) and reflow process (thermal aging) were conventional method to bond between tin-silver or tin-silver-copper caps in the temperature range of 200 to 300 degrees. However, because of tin overflow which caused by higher operating temperature than melting point of Tin ($232^{\circ}C$), there would be the danger of bump bridge failure in fine-pitch bonding. Furthermore, regulating the phase of IMC (intermetallic compound) which was located between nickel diffusion barrier and bump, had a lot of problems. For example, an excess of kirkendall void which provides site of brittle fracture occurs at IMC layer after reflow process. The essential solution to reduce the difficulty of bump bonding process is copper to copper direct bonding below $300^{\circ}C$. In this study, in order to improve the problem of bump bonding process, copper to copper direct bonding was performed below $300^{\circ}C$. The driving force of bonding was the self-annealing properties of electrodeposited Cu with high defect density. The self-annealing property originated in high defect density and non-equilibrium grain boundaries at the triple junction. The electrodeposited Cu at high current density and low bath temperature was fabricated by electroplating on copper deposited silicon wafer. The copper-copper bonding experiments was conducted using thermal pressing machine. The condition of investigation such as thermal parameter and pressure parameter were varied to acquire proper bonded specimens. The bonded interface was characterized by SEM (scanning electron microscope) and OM (optical microscope). The density of grain boundary and defects were examined by TEM (transmission electron microscopy).

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서울 다이나믹스 - 청계천 시점부 광장 설계 - (Seoul Dynamics - Cheonggyecheon Threshold Plaza Design -)

  • 김정윤;오피스 박김
    • 한국조경학회지
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    • 제34권1호
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    • pp.92-106
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    • 2006
  • The process of designing Cheonggyecheon Entrance Plaza began with researching four keywords: plaza, restoration. modernity and icon. The outcome of the research was reinterpreted into and informed the design. An urban plaza must not only be a stage for civic life but should also be a portrait of the city to which it belongs. Many Korean plazas, however, are treated as if they are parks. Yeouido Park, which was originally a vast urban void, and Seoul Plaza, recently paved with grass, are good example. The strong 'green myth' can hinder socio-political activities. Cheonggyecheon cannot be said to have been 'restored', since it is still disconnected from its origin and upper streams, and the water is circulated by electricity. So it is better understood as an artificial urban waterfront, rather than an ecologically restored stream. This fact might diminish its ecological value, but not its recreational one. The entrance plaza therefore should reflect that the new stream brings back an 'experience', not only water itself. At the same time, the catch phrase of this restoration project was 'post-modern'. The demolished Cheonggye Expressway represents the 'economy drive' of the 1970s, so the newly opened Cheonggyecheon serves as a perfect counterpart to it. But modernity in Korea is the spirit that made many of the good things, not only its shortcomings, we have now. And from the philosophy of this restoration project, we can see that it is still an ongoing attitude in a way. Remnant of Cheonggye Expressway can evoke our nostalgia for the era. There are plenty of symbols in Seoul, both as architecture and objects. But none of them provide citizens with experience, other than the experience of looking at them. Cheonggyecheon Entrance Plaza is a good place to serve as an icon for a dynamic Seoul. From the research, the designer concluded that this plaza should commemorate the incomparable horizontal experience of Cheonggyecheon and the old expressway, amid the vertical metropolis. The Pedestrian Sculpture, which people can stroll on and look out over Cheonggyecheon, is to be made of steel cladding with a core structure and represents the dynamism of the stream, Seoul and contemporary Korea. The choice of material and the steel structure are also ways of creating the icon. The Water Plaza, the space underneath the ramp, will accommodate people and their urban activities, providing an opportunity to play with water. The Waterblades will be a device for the dramatic beginning of the stream, simultaneously camouflaging ugly openings in the outlets. The Wall of Archaeology is to be made with pre-fab resin blocks, translucent enough so that people can see through any archaeological findings of the site. The strong water-resistant character of resin makes the wall steady throughout the flood season as well. Cheonggyecheon restoration project is an effort to combine contemporary urban demand with the once-existing physicality by evoking our nostalgia for it. The project itself shows many socio-political issues of present-day Korea. The entrance plaza design thus is focused on suggesting an icon for the metropolis, simultaneously celebrating the stream itself. Within this space, people will be exposed to a unique experience that any 'green myth' cannot offer.

다공성콘크리트 호안블록의 실규모 실험을 통한 수리안정성 평가 (Evaluation of Hydraulic Stability Using Real Scale Experimental on Porous Concrete Revetment Block)

  • 김봉균;서대석;박준석;김윤용
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권2호
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    • pp.122-130
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    • 2016
  • 최근 수십년간의 산업화로 인해 인간중심의 하천 개발이 이루어진 결과, 하천의 직강화 및 복개화 등 오수 및 하수의 배출구로만 활용되어 집중호우 등의 수해가 반복되어 발생하고 있어 이에 대해 하천 및 제방의 사면을 각종 공법을 통하여 손상을 방지하고 있으나, 관련 기준에서는 비탈높이, 최소비탈경사 등 최소한의 기준만 제시하고 있는 실정이다. 또한 홍수해 방지를 위한 가장 중요한 특성인 소류력에 대한 검토는 전무한 실정이다. 따라서 본 연구에서는 실규모의 인공실험하천에서 다공성콘크리트 호안블록을 설치하고, 유입유량을 조절하여 각 실험조건에 따른 유속 및 수심을 측정하여 소류력을 평가하였다. 다공성콘크리트블록의 압축강도 및 공극률 시험결과 압축강도는 16.6~23.2 MPa의 범위로 측정되었고, 실측공극률은 10.1%로 나타나 국내 기준을 만족하는 것으로 판단되며, 소류력 시험결과 한계소류력은 $47.202N/m^2$으로, 하천설계실무요령에서 제시된 급류부의 소류력 범위인 $67N/m^2$은 만족하지 못하는 것으로 나타났다. 하지만 블록 및 기반층의 유실이나 손상이 전혀 관찰되지 않았고, 기존 선행연구를 참고하여 볼때 그 이상의 소류력에도 저항력을 가질 수 있을 것을 추정하여 볼 수 있다. 따라서 추후 실험조건 등을 조정하여 실질적인 한계소류력 측정을 위한 실험을 다시 수행할 필요가 있다고 판단된다.