• 제목/요약/키워드: hybrid testing

검색결과 338건 처리시간 0.022초

A Study on Optimal Fuzzy Identification by means of Hybrid Identification Algorithm

  • Park, Byoung-Jun;Park, Chun-Seong;Oh, Sung-Kwun
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1998년도 제13차 학술회의논문집
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    • pp.215-220
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    • 1998
  • In order to optimize fuzzy model, we use the optimal algorithm with a hybrid type in the identification of premise parameters and standard least square method in the identification of consequence parameters of a fuzzy model. The hybrid optimal identification algorithm is carried out using a genetic algorithm and improved complex method. Also, the performance index with weighting factor is proposed to achieve a balance between the insults of performance for the training and testing data. Several numerical examples are used to evaluate the performance of the proposed model.

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회생전력 기능을 갖는 전기부하시험장치 개발 (Developement of Electrical Load Testing System Implemented with Power Regenerative Function)

  • 도왕록;채용웅
    • 한국전자통신학회논문지
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    • 제11권2호
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    • pp.179-184
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    • 2016
  • 본 연구를 통해 개발된 전기부하시험장치는 상용전원이 필요한 피시험장치(변압기, 정류기, 전압조정기, 인버터 등)와 상용전원이 불필요한 독립형 피시험장치(동력발전기, 풍력발전장치, 태양광발전장치, 하이브리드발전 장치, 배터리 등)에 대하여 정격용량시험이나 가변부하시험을 능동적으로 정밀하게 제어하면서도 시험 중에 사용되는 전기에너지를 소비하지 않고 전원변환장치를 통하여 계통선으로 전달하도록 설계되었다. 동기식 pwm 인버터회로를 상용전원과 연결시켜서 시험에 사용되는 전력을 계통선으로 귀환되도록 설계되었으며, 종전의 수동식 전기저항체를 사용한 전기부하시험장치에 비해 93.4% 정도의 전력을 소모하지 않고도 피시험체에 대한 시험이 가능하도록 하였다.

Seismic behavior of steel reinforced concrete (SRC) T-shaped column-beam planar and 3D hybrid joints under cyclic loads

  • Chen, Zongping;Xu, Jinjun;Chen, Yuliang;Xue, Jianyang
    • Earthquakes and Structures
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    • 제8권3호
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    • pp.555-572
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    • 2015
  • This paper presents an experimental study of three two-dimensional (2D/planar) steel reinforced concrete (SRC) T-shaped column-RC beam hybrid joints and six 3D SRC T-shaped column-steel beam hybrid joints under low cyclic reversed loads. Considering different categories of steel configuration types in column cross section and horizontal loading angles for the specimens were selected, and a reliable structural testing system for the spatial loading was employed in the tests. The load-displacement curves, carrying capacity, energy dissipation capacity, ductility and deformation characteristics of the test subassemblies were analyzed. Especially, the seismic performance discrepancies between planar hybrid joints and 3D hybrid joints were intensively compared. The failure modes for planar loading and spatial loading observed in the tests showed that the shear-diagonal compressive failure was the dominating failure mode for all the specimens. In addition, the 3D hybrid joints illustrated plumper hysteretic loops for the columns configured with solid-web steel, but a little more pinched hysteretic loops for the columns configured with T-shaped steel or channel-shaped steel, better energy dissipation capacity & ductility, and larger interlayer deformation capacity than those of the planar hybrid joints. Furthermore, it was revealed that the hysteretic loops for the specimens under $45^{\circ}$ loading angle are generally plumper than those for the specimens under $30^{\circ}$ loading angle. Finally, the effects of steel configuration type and loading angle on the seismic damage for the specimens were analyzed by means of the Park-Ang model.

The Dynamics of Noise and Vibration Engineering Vibrant as ever, for years to come

  • Leuridan, Jan
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2010년도 춘계학술대회 논문집
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    • pp.47-47
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    • 2010
  • Over the past 20 years, constant progress in noise and vibration (NVH) engineering has enabled to constantly advance quality and comfort of operation and use of really any products - from automobiles to aircraft, to all kinds of industrial vehicles and machines - to the extend that for many products, supreme NVH performance has becomes part of its brand image in the market. At the same time, the product innovation agenda in the automotive, aircraft and really many other industries, has been extended very much in recent years by meeting ever more strict environmental regulations. Like in the automotive industry, the drive towards meeting emission and CO2 targets leads to very much accelerated adoption of new powertrain concepts (downsizing of ICE, hybrid-electrical...), and to new vehicle architectures and the application of new materials to reduce weight, which bring new challenges for not only maintaining but further improving NVH performance. This drives for innovation in NVH engineering, so as to succeed in meeting a product brand performance for NVH, while as the same time satisfying eco-constraints. Product innovation has also become increasingly dependent on the adoption of electronics and software, which drives for new solutions for NVH engineering that can be applied for NVH performance optimization of mechatronic products. Finally, relentless pressure to shorten time to market while maintaining overall product quality and reliability, mandates that the practice and solutions for NVH engineering can be optimally applied in all phases of product development. The presentation will first review the afore trends for product and process innovation, and discuss the challenges they represent for NVH engineering. Next, the presentation discusses new solutions for NVH engineering of products, so as to meet target brand values, while at the same time meeting ever more strict eco constraints, and this within a context of increasing adoption of electronics and controls to drive product innovation. NVH being very much defined by system level performance, these solutions implement the approach of "Model Based System Engineering" to increase the impact of system level analysis for NVH in all phases of product development: - At the Concept Phase, to be able to do business case analysis of new product concepts; to arrive at an optimized and robust product architecture (e.g. to hybrid powertrain lay-out, to optimize fuel economy); to enable target cascading, to subsystem and component level. - In Development Phase, to increase realism and productivity of simulation, so as to frontload virtual validation of components and subsystems and to further reduce reliance on physical testing. - During the final System Testing Phase, to enable subsystem testing by a combination of physical testing and simulation: using simulation models to simulate the final integration context when testing a subsystem, enabling to frontload subsystem testing before final system integration is possible. - To interconnect Mechanical, Electronical and Controls engineering, in all phases of development, by supporting model driven controls engineering (MIL, SIL, HIL). Finally, the presentation reviews examples of how LMS is implementing such new applications for NVH engineering with lead customers in Europe, Asia and US, with demonstrated benefits both in terms of shortening development cycles, and/or enabling a simulation based approach to reduce reliance on physical testing.

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Defect Shape Recovering by Parameter Estimation Arising in Eddy Current Testing

  • Kojima, Fumio
    • 비파괴검사학회지
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    • 제23권6호
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    • pp.622-634
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    • 2003
  • This paper is concerned with a computational method for recovering a crack shape of steam generator tubes of nuclear plants. Problems on the shape identification are discussed arising in the characterization of a structural defect in a conductor using data of eddy current inspection. A surface defect on the generator tube ran be detected as a probe impedance trajectory by scanning a pancake type coil. First, a mathematical model of the inspection process is derived from the Maxwell's equation. Second, the input and output relation is given by the approximate model by virtue of the hybrid use of the finite element and boundary element method. In that model, the crack shape is characterized by the unknown coefficients of the B-spline function which approximates the crack shape geometry. Finally, a parameter estimation technique is proposed for recovering the crack shape using data from the probe coil. The computational experiments were successfully tested with the laboratory data.

부분구조 유사동적법에 있어 다자유도 시스템에 대한 수정 시간증분 조정기법 (MODIFIED POSTERIOR TIME-STEP ADJUSTMENT TECHNIQUE FOR MDOF SYSTEM IN SUBSTRUCTURING PSEUDODYNAMIC TEST)

  • 이원호;강정호
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1998년도 가을 학술발표회 논문집
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    • pp.473-480
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    • 1998
  • The substructuring pseudodynamic test is a hybrid testing method consisting of a numerical simulation of the earthquake response of an analytical model and a loading test of a specimen. The substructuring pseudodynamic testing technique has been applied to various seismic experiments since it has advantages over the shaking table test to study dynamic behaviors of relatively large scale structures. However, experimental errors are inevitable in substructuring pseudodynamic testing. Some of these errors can be monitored during the test, but, due to limitations in control system, they cannot be eliminated. For example, one cannot control exactly the displacements that are actually imposed on the structures at each time step. This paper focuses on a technique to minimize the cumulative effect of such control errors for MDOF system. For this purpose, the modified posterior adjustment of the time increment from a target value $\Delta$t$_{n}$ to an adjusted value is performed to minimize the effect of the control errors for MDOF system.for MDOF system.

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OAPR-HOML'1: Optimal automated program repair approach based on hybrid improved grasshopper optimization and opposition learning based artificial neural network

  • MAMATHA, T.;RAMA SUBBA REDDY, B.;BINDU, C SHOBA
    • International Journal of Computer Science & Network Security
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    • 제22권4호
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    • pp.261-273
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    • 2022
  • Over the last decade, the scientific community has been actively developing technologies for automated software bug fixes called Automated Program Repair (APR). Several APR techniques have recently been proposed to effectively address multiple classroom programming errors. However, little attention has been paid to the advances in effective APR techniques for software bugs that are widely occurring during the software life cycle maintenance phase. To further enhance the concept of software testing and debugging, we recommend an optimized automated software repair approach based on hybrid technology (OAPR-HOML'1). The first contribution of the proposed OAPR-HOML'1 technique is to introduce an improved grasshopper optimization (IGO) algorithm for fault location identification in the given test projects. Then, we illustrate an opposition learning based artificial neural network (OL-ANN) technique to select AST node-level transformation schemas to create the sketches which provide automated program repair for those faulty projects. Finally, the OAPR-HOML'1 is evaluated using Defects4J benchmark and the performance is compared with the modern technologies number of bugs fixed, accuracy, precession, recall and F-measure.

Microsatellite Marker를 이용한 멜론 시판품종의 품종식별과 F1 순도검정 (Use of Microsatellite Markers to Identify Commercial Melon Cultivars and for Hybrid Seed Purity Testing)

  • 권용삼;홍지화
    • 원예과학기술지
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    • 제32권4호
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    • pp.525-534
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    • 2014
  • Microsatellite 표지를 이용하여 국내에서 시판되고 있는 멜론 58품종의 식별과 멜론 육종 계통 '10H08'을 이용하여 $F_1$ 종자 순도를 평가하였다. 412개의 microsatellite 표지 중 다형성 정도가 높은 29개는 품종 그룹 내에서도 다양한 유전 변이를 나타내었으며 분자표지의 유전자형에 의해 모든 품종을 식별할 수 있었다. Microsatellite 표지의 대립유전자를 이용하여 멜론 58품종에 대한 계통도를 작성하였을 때 멜론의 형태적 특성과 일치하면서 2개의 대그룹으로 구분되었다. $F_1$ 종자의 순도 검정에 microsatellite 표지를 활용하기 위하여 29개의 표지를 '10H08' 계통의 양친에 대하여 검정하였을 때 5개의 프라이머가 다형성을 보였으며, 이 중 한 개의 프라이머 'CMGAN12'는 양친간에 뚜렷한 다형성 밴드를 나타내었다. 이 프라이머를 192개의 $F_1$ 종자에 대하여 검정하였을 때 자식주로 보이는 개체가 분석된 종자 내에서 명확하게 구분되었다. 본 연구 결과에서 선정된 멜론 품종 식별용 microsatellite 표지는 멜론 품종의 지문화뿐만 아니라 $F_1$ 종자의 순도 검정이 가능하여 종자회사에서 매우 유용하게 활용될 수 있는 것으로 나타났다.

하이브리드 판형 열교환기 적용 컴팩트 스팀 유닛 개발을 위한 성능 평가에 관한 실험적 연구 (An experimental study on performance evaluation for development of compact steam unit applied with hybrid plate heat exchanger)

  • 박재홍;조성열;이준석;이상래;김승현;임계훈;서정완;김정훈
    • Journal of Advanced Marine Engineering and Technology
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    • 제41권4호
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    • pp.296-301
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    • 2017
  • 발전 플랜트, 석유 화학 플랜트, 단위 공장과 같은 다양한 플랜트에서 사용 후 스팀이나 잉여 스팀을 이용하여 온수나 급탕수를 생산하는 시스템의 수요가 증가하고 있다. 컴팩트 스팀 유닛(Compact Steam Unit, 이하 CSU)은 이러한 (폐)스팀 등을 이용하여 온수와 급탕수를 생산하는 시스템으로서 에너지 재활용 측면에서 매우 좋은 대안이 되고 있다. 본 연구에서는 CSU의 핵심 기자재 중 하나인 열교환기를 기존 판형 열교환기에서 성능이 개선된 하이브리드 판형 열교환기를 사용하였고, 개선된 온도 조절 밸브 및 제어 시스템 등으로 새로운 형태의 CSU(1,600 kW급)를 구성하여, CSU의 성능 시험을 수행하였으며 시험 결과를 CSU의 상용화를 위한 자료로 삼고자 하였다. 실험 결과, 1차측(고온측, 스팀)과 2차측(저온측, 냉수) 사이의 에너지 밸런스는 ${\pm}0.77%$ 이내였으며, CSU의 성능 평가 요소 중 가장 중요한 2차측 냉수 출구 온도 편차는 $(0{\sim}0.3)^{\circ}C$ 이었다.