• 제목/요약/키워드: energy-based method

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A STUDY ON THE CONSTRUCTION OF BIM DATA INTEROPERABILITY FOR ENERGY PERFORMANCE ASSESSMENT BASED ON BIM

  • Jungsik Choi;Hyunjae Yoo;Inhan Kim
    • 국제학술발표논문집
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    • The 5th International Conference on Construction Engineering and Project Management
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    • pp.267-273
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    • 2013
  • Early design phase energy modeling is used to provide the design team with first order of magnitude feedback about the impact of various building configurations. For better energy-conscious and sustainable building design and operation, the construction of BIM data interoperability for energy performance assessment in the early design phase is important. The purpose of this study is to suggest construction of BIM data interoperability for energy performance assessment based on BIM. To archive this purpose, the authors have investigated advantage of BIM-based energy performance assessment through comparison with traditional energy performance assessment and suggested requirement for construction of open BIM environment such as BIM data creation, BIM data software practical use, BIM data application and verification. In addition, the authors have suggested BIM data interoperability and BIM energy property mapping method focused on materials.

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멀티프로세서 시스템을 위한 동적 전압 조절 기반의 효율적인 스케줄링 기법 (An Efficient Scheduling Method based on Dynamic Voltage Scaling for Multiprocessor System)

  • 노경우;박창우;김석윤
    • 전기학회논문지
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    • 제57권3호
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    • pp.421-428
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    • 2008
  • The DVS(Dynamic Voltage Scaling) technique is the method to reduce the dynamic energy consumption. As using slack times, it extends the execution time of the big load operations by changing the frequency and the voltage of variable voltage processors. Researches, that controlling the energy consumption of the processors and the data transmission among processors by controlling the bandwidth to reduce the energy consumption of the entire system, have been going on. Since operations in multiprocessor systems have the data dependency between processors, however, the DVS techniques devised for single processors are not suitable to improve the energy efficiency of multiprocessor systems. We propose the new scheduling algorithm based on DVS for increasing energy efficiency of multiprocessor systems. The proposed DVS algorithm can improve the energy efficiency of the entire system because it controls frequency and voltages having the data dependency among processors.

Distribution of Optimum Yield-Strength and Plastic Strain Energy Prediction of Hysteretic Dampers in Coupled Shear Wall Buildings

  • Bagheri, Bahador;Oh, Sang-Hoon;Shin, Seung-Hoon
    • 국제강구조저널
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    • 제18권4호
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    • pp.1107-1124
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    • 2018
  • The structural behavior of reinforced concrete coupled shear wall structures is greatly influenced by the behavior of their coupling beams. This paper presents a process of the seismic analysis of reinforced concrete coupled shear wall-frame system linked by hysteretic dampers at each floor. The hysteretic dampers are located at the middle portion of the linked beams which most of the inelastic damage would be concentrated. This study concerned particularly with wall-frame structures that do not twist. The proposed method, which is based on the energy equilibrium method, offers an important design method by the result of increasing energy dissipation capacity and reducing damage to the wall's base. The optimum distribution of yield shear force coefficients is to evenly distribute the damage at dampers over the structural height based on the cumulative plastic deformation ratio of the dissipation device. Nonlinear dynamic analysis indicates that, with a proper set of damping parameters, the wall's dynamic responses can be well controlled. Finally, based on the total plastic strain energy and its trend through the height of the buildings, a prediction equation is suggested.

필터 뱅크 에너지 차감을 이용한 묵음 특징 정규화 방법의 성능 향상 (Performance Improvements for Silence Feature Normalization Method by Using Filter Bank Energy Subtraction)

  • 신광호;최숙남;정현열
    • 한국통신학회논문지
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    • 제35권7C호
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    • pp.604-610
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    • 2010
  • 본 논문에서는 기존의 CLSFN (Cepstral distance and Log-energy based Silence Feature Normalization) 방법의 인식성능을 향상시키기 위하여, 필터 뱅크 서브 밴드 영역에서 잡음을 차감하는 방법과 CLSFN을 결합하는 방법, 즉 FSFN (Filter bank sub-band energy subtraction based CLSFN)을 제안하였다. 이 방법은 음성으로부터 특징 파라미터를 추출할 때 필터 뱅크 서브 밴드 영역에서 잡음을 제거하여 켑스트럼 특징을 향상시키고, 이에 대한 켑스트럼 거리를 이용하여 음성/묵음 분류의 정확도를 개선함으로써 기존 CLSFN 방법에 비해 향상된 인식성능을 얻을 수 있다. Aurora 2.0 DB를 이용한 실험결과, 제안하는 FSFN 방법은 CLSFN 방법에 비해 평균 단어 정확도 (word accuracy)가 약 2% 향상되었으며, CMVN (Cepstral Mean and Variance Normalization)과의 결합에서도 기존 모든 방법에 비해 가장 우수한 인식성능을 나타내어 제안 방법의 유효성을 확인할 수 있었다.

금속 및 복합재 CNG 탱크에서의 손상 검출을 위한 음향방출 에너지 기반 위치표정 기술 (Energy Based Source Location by Using Acoustic Emission for Damage Detection in Steel and Composite CNG Tank)

  • 김일식;한병희;박춘수;윤동진
    • 비파괴검사학회지
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    • 제35권5호
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    • pp.332-340
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    • 2015
  • 음향방출기술은 고체내부에 국부적으로 형성된 변형에너지가 급격히 방출되면서 발생하는 탄성파를 이용하는 기술로써 결함의 발생이나 존재하는 결함의 진전을 검출하는 비파괴검사 기법이다. 환경문제로 인해 최근 약 20년 전부터 압축 천연 가스가 자동차 석유 연료의 대안으로 사용되면서 CNG 탱크의 안전성 검사의 필요성 또한 증가하고 있다. 특히 복합재 CNG 탱크에서는 적층된 재료와 방향에 따라 파의 속도나 분산 특성이 달라지므로 매질의 속도에 절대적으로 영향을 받는 종래의 도달 시간차를 이용한 AE 기법으론 결함검출을 하는데 한계가 있다. 따라서 본 연구에서는 스틸실린더인 Type-I과 스틸실린더에 GFRP로 와인딩된 Type-II 시편에서 에너지 기반 contour map 기법을 이용해 종래의 AE기법의 한계를 극복하고 결과를 비교하였다. 그 결과 위치표정이 불가하거나 오차가 컸던 종래의 방법과 달리 에너지 기법은 모든 지점에서 위치표정이 가능했으며 오차 또한 현저히 준 것을 확인할 수 있었다.

The effect of nuclear energy on the environment in the context of globalization: Consumption vs production-based CO2 emissions

  • Danish, Danish;Ulucak, Recep;Erdogan, Seyfettin
    • Nuclear Engineering and Technology
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    • 제54권4호
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    • pp.1312-1320
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    • 2022
  • The earlier studies have analyzed theoretical links between nuclear energy and carbon dioxide (CO2) emissions concerning territorial (or production-based) emissions. Here using the latest available dataset, this study explores the impacts of nuclear energy on production-based and consumption-based CO2 emission in the era of globalization for the Organization for Economic Co-operation and Development (OECD) countries. The Driscoll-Kraay regression method reveals that nuclear energy is beneficial for the reduction of production-based CO2 emissions. However, it is revealed that nuclear energy does not reduce consumption-based CO2 emissions that are traded internationally and hence not comprised in conventional production-based emissions (territory) inventories. Globalization tends to reduce both production-based and demand-based carbon emissions. Finally, Environmental Kuznets Curve (EKC) is validated for both kinds of CO2 emissions. The findings may deliver practical policy implications related to nuclear energy and CO2 emissions for selected countries.

Feasibility study of multiplexing method using digital signal encoding technique

  • Kim, Kyu Bom;Leem, Hyun Tae;Chung, Yong Hyun;Shin, Han-Back
    • Nuclear Engineering and Technology
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    • 제52권10호
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    • pp.2339-2345
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    • 2020
  • Radiation imaging systems consisting of a large number of channels greatly benefit from multiplexing methods to reduce the number of channels with minimizing the system complexity and development cost. In conventional pixelated radiation detector modules, such as anger logic, is used to reduce a large number of channels that transmit signals to a data acquisition system. However, these methods have limitations of electrical noise and distortion at the detector edge. To solve these problems, a multiplexing concept using a digital signal encoding technique based on a time delay method for signals from detectors was developed in this study. The digital encoding multiplexing (DEM) method was developed based on the time-over-threshold (ToT) method to provide more information including the activation time, position, and energy in one-bit line. This is the major advantage of the DEM method as compared with the traditional ToT method providing only energy information. The energy was measured and calibrated by the ToT method. The energy resolution and coincidence time resolution were observed as 16% and 2.4 ns, respectively, with DEM. The position was successfully distributed on each channel. This study demonstrated the feasibility that DEM was useful to reduce the number of detector channels.

Infrared and visible image fusion based on Laplacian pyramid and generative adversarial network

  • Wang, Juan;Ke, Cong;Wu, Minghu;Liu, Min;Zeng, Chunyan
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제15권5호
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    • pp.1761-1777
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    • 2021
  • An image with infrared features and visible details is obtained by processing infrared and visible images. In this paper, a fusion method based on Laplacian pyramid and generative adversarial network is proposed to obtain high quality fusion images, termed as Laplacian-GAN. Firstly, the base and detail layers are obtained by decomposing the source images. Secondly, we utilize the Laplacian pyramid-based method to fuse these base layers to obtain more information of the base layer. Thirdly, the detail part is fused by a generative adversarial network. In addition, generative adversarial network avoids the manual design complicated fusion rules. Finally, the fused base layer and fused detail layer are reconstructed to obtain the fused image. Experimental results demonstrate that the proposed method can obtain state-of-the-art fusion performance in both visual quality and objective assessment. In terms of visual observation, the fusion image obtained by Laplacian-GAN algorithm in this paper is clearer in detail. At the same time, in the six metrics of MI, AG, EI, MS_SSIM, Qabf and SCD, the algorithm presented in this paper has improved by 0.62%, 7.10%, 14.53%, 12.18%, 34.33% and 12.23%, respectively, compared with the best of the other three algorithms.

주기적 위상 변동 기법을 이용한 새로운 단독운전 검출 기법 (Novel Anti-islanding method using phase shift with a periodic function)

  • 정영석;최재호;소정훈;유병규;유권종
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 제37회 하계학술대회 논문집 B
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    • pp.1153-1154
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    • 2006
  • This paper proposes the optimal design method based on NDZ analysis to secure the islanding defection ability and to maintain the stability and power quality when the grid is connected. A PSiM-based model and analysis of the system is presented, specialty aimed at improving the effectiveness of phase shift anti-islanding method with frequency feedback, which causes the inverter current to be generated slightly lower or higher in frequency than the frequency of the terminal voltage. The proposed method can cause frequency jump with leading and lagging phase of output current in two line cycles. As a result, the proposed algorithm is more sensitive and reliable than the conventional phase shift method. Experimental results, on a 3 kW inverter connected to 220 V, 60 Hz utility, are discussed.

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Mathematical Modeling and Control for A Single Winding Bearingless Flywheel Motor in Electric/Suspension Mode

  • Yuan, Ye;Huang, Yonghong;Xiang, Qianwen;Sun, Yukun
    • Journal of Electrical Engineering and Technology
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    • 제13권5호
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    • pp.1935-1944
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    • 2018
  • With the increase of the production of energy from renewable, it becomes important to look at techniques to store this energy. Therefore, a single winding bearingless flywheel motor (SWBFM) specially for flywheel energy storage system is introduced. For the control system of SWBFM, coupling between the torque and the suspension subsystems exists inevitably. It is necessary to build a reasonable radial force mathematical model to precisely control SWBFM. However, SWBFM has twelve independently controlled windings which leads to high-order matrix transformation and complex differential calculation in the process of mathematical modeling based on virtual displacement method. In this frame, a Maxwell tensor modeling method which is no need the detailed derivation and complex theoretical computation is present. Moreover, it possesses advantages of universality, accuracy, and directness. The fringing magnetic path is improved from straight and circular lines to elliptical line and the rationality of elliptical line is verified by virtual displacement theory according to electromagnetic torque characteristics. A correction function is taken to increase the model accuracy based on finite element analysis. Simulation and experimental results show that the control system of SWBFM with radial force mathematical model based on Maxwell tensor method is feasible and has high precision.