• Title/Summary/Keyword: compression speed

검색결과 690건 처리시간 0.029초

저용량, 고화질 비디오 압축 브라우징에 대한 설계 (The Design of Video Compression Browsing for Low Capacity and High Quality)

  • 강진석;김무영;김장형
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 1999년도 추계종합학술대회
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    • pp.193-198
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    • 1999
  • In the 21th century, everyone feels that the multimedia system is close at hand in real life due to the rapid advance of the computer processing ability and high speed and high guality of communication services. Also the limited frequencies resource will be optimized due to rapid advances in digital video technology which is believed superior to analogue technology in information engineering. MEPG-2 has been introduced for broadcasting use such as digital TV Thus it features the high-definition and hyper-low bit rate. But, because of much throughput it has been implemented by high-priced private ASIC chip and is not in general use yet. But in this research, noticing the rapid enhancement of PC processor performance comparing with the price. MPEG-2 was developed by real time software MPEG-2 had been known impossible to implement with S/W, but the research proved the possibility of the S/W implementation and below are the pictures also in the research was improved 'Motion Vector and Compensation' Algorithm which requires the most operations and UT was made possible real time process. Multimedia Info Society has settled and accompanied by the rapid advance of image-processing technology and lots of standards.

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직접분사식 가솔린 엔진을 이용한 CAI 연소특성 및 운전영역 확대를 위한 성층 연소 특성에 관한 연구 (A Study on the CAI Combustion Characteristics and Stratified Combustion to Extend the Operating Region Using Direct Injection Gasoline Engine)

  • 이창희;최영종;임경빈;이기형
    • 한국자동차공학회논문집
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    • 제14권5호
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    • pp.25-31
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    • 2006
  • Controlled Auto Ignition(CAI) combustion has great potential in achieving significant increase in engine efficiency, while simultaneously reducing exhaust emissions. The process itself involves the auto ignition and subsequent simultaneous combustion of a premixed charge. In this study, NVO(Negative Valve Overlap) system was applied to a CAI engine in order to use residual gas. The fuel was injected directly to the cylinder under the high temperature condition resulting from heating the intake port to initiate CAI combustion. This paper introduced the valve timing strategy and experimental set-up. From this study, the effect of engine speed and valve timing on CAI combustion and exhaust emissions was clarified. In addition, stratified charge method was used to extend CAI operating region.

초미세 결정립 조직을 만들기 위한 복합전단가공법에 관한 연구 (A Study on the Hybrid-ECAP Process to Produce Ultra-Fine Materials)

  • 이주현;이진호
    • 한국군사과학기술학회지
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    • 제11권4호
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    • pp.83-91
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    • 2008
  • The development of the equal channel angular pressing(ECAP) process in metals has recently provided a feasible solution to produce ultra-fine or nano-grained bulk materials with tailored material properties. However, ECAP process is difficult to scale up commercially due to requirements of an excessive load. In this paper, a new Hybrid-ECAP process with torsional die is considered to obtain materials of ultra-fine grain structure under low forming load. An upper bound analysis and numerical simulation (DEFORM 3D, a commercial FEM code) are carried out on the torsional die. By the upper bound analysis, analytical expression for the compression force and rotation speed are obtained. By the FEM analysis, the distribution of strain, stress and deformation are obtained. These results show that the Hybrid-ECAP is a useful process because this process can obtain the homogeneous deformations with relatively low forming load. Additionally, due to decreased forming load, die life can be improve.

가선계의 동특성에 관한 연구 (A Study on Dynamic Characteristics of a Catenary System)

  • 김정수;최병두
    • 소음진동
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    • 제9권2호
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    • pp.317-323
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    • 1999
  • Dynamic characteristics of catenary that supplies electrical power to high-speed trains are investigated. A simple catenary is composed of the contact and messenger wires connected by droppers possessing bi-directional stiffness properties. For slender, repeating structures such as catenary, both the wave propagation and vibration properties need to be understood. The influence of parameters that determine catenary dynamics are investiaged through numerical simulations involving finite element models. The effects of the tension and flexural rigidity of the contact wire is first investigated. The effects of dropper characteristics are then investigated. For linear droppers wave propagation as well as modal properties are determined. For large catenary motion, droppers can be modeled as bi-directional elements possessing low stiffness in compression and high stiffness in tension. For this case, impulse response is computed and compared with the cases of linear droppers. It is found that the catenary dynamics are primarily determined by contact wire tension and dropper properties, with large responses observed in 5∼40 Hz frequency range. In particular, the dropper stiffness and spacing are found to have dominant influence on the response frequency and the wave transmission characteristics.

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Development of intelligent model to predict the characteristics of biodiesel operated CI engine with hydrogen injection

  • Karrthik, R.S.;Baskaran, S.;Raghunath, M.
    • Advances in Computational Design
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    • 제4권4호
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    • pp.367-379
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    • 2019
  • Multiple Inputs and Multiple Outputs (MIMO) Fuzzy logic model is developed to predict the engine performance and emission characteristics of pongamia pinnata biodiesel with hydrogen injection. Engine performance and emission characteristics such as brake thermal efficiency (BTE), brake specific energy consumption (BSEC), hydrocarbon (HC), carbon monoxide (CO), carbon dioxide ($CO_2$) and nitrous oxides ($NO_X$) were considered. Experimental investigations were carried out by using four stroke single cylinder constant speed compression ignition engine with the rated power of 5.2 kW at variable load conditions. The performance and emission characteristics are measured using an Exhaust gas analyzer, smoke meter, piezoelectric pressure transducer and crank angle encoder for different fuel blends (Diesel, B10, B20 and B30) and engine load conditions. Fuzzy logic model uses triangular and trapezoidal membership function because of its higher predictive accuracy to predict the engine performance and emission characteristics. Computational results clearly demonstrate that, the proposed fuzzy model has produced fewer deviations and has exhibited higher predictive accuracy with acceptable determination correlation coefficients of 0.99136 to 1 with experimental values. The developed fuzzy logic model has produced good correlation between the fuzzy predicted and experimental values. So it is found to be useful for predicting the engine performance and emission characteristics with limited number of available data.

FPGA 기반 저전력 및 저비용 휴대용 빔포머 설계 (FPGA-Based Low-Power and Low-Cost Portable Beamformer Design)

  • 정갑중;박철영
    • 한국산업정보학회논문지
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    • 제24권1호
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    • pp.31-38
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    • 2019
  • 본 논문에서는 초음파 응용 영상 기술의 다양한 임상 진단 응용이 가능한 파이프라인 회로 구성 방식을 가지는 빔포밍 프런트 엔드 플랫폼을 개발한다. 하드웨어 설계에서는 전력, 통합수준 및 복제 가능성이 중요한 확장 가능한 애플리케이션은 물론 압축 애플리케이션을 대상으로 한다. 펌웨어 디자인으로는 차세대 고수준의 합성 도구인 Vivado HLS 툴을 사용하여 최대의 생산성 향상으로 설계 생산성을 가속화하는 새로운 IP 및 시스템 중심 설계 환경 구축을 통하여 최적의 FPGA 병렬 처리 수준을 달성 하도록 구현하였다. 설계된 디지털 빔포머는 향후 시스템 사양의 재구성이나 변경시 적절한 수정 및 보완이 가능하고, 임의의 이미지 영역을 생성할 수 있는 스캔 데이터의 고속 관리 기능을 지원한다.

Stochastic identification of masonry parameters in 2D finite elements continuum models

  • Giada Bartolini;Anna De Falco;Filippo Landi
    • Coupled systems mechanics
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    • 제12권5호
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    • pp.429-444
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    • 2023
  • The comprehension and structural modeling of masonry constructions is fundamental to safeguard the integrity of built cultural assets and intervene through adequate actions, especially in earthquake-prone regions. Despite the availability of several modeling strategies and modern computing power, modeling masonry remains a great challenge because of still demanding computational efforts, constraints in performing destructive or semi-destructive in-situ tests, and material uncertainties. This paper investigates the shear behavior of masonry walls by applying a plane-stress FE continuum model with the Modified Masonry-like Material (MMLM). Epistemic uncertainty affecting input parameters of the MMLM is considered in a probabilistic framework. After appointing a suitable probability density function to input quantities according to prior engineering knowledge, uncertainties are propagated to outputs relying on gPCE-based surrogate models to considerably speed up the forward problem-solving. The sensitivity of the response to input parameters is evaluated through the computation of Sobol' indices pointing out the parameters more worthy to be further investigated, when dealing with the seismic assessment of masonry buildings. Finally, masonry mechanical properties are calibrated in a probabilistic setting with the Bayesian approach to the inverse problem based on the available measurements obtained from the experimental load-displacement curves provided by shear compression in-situ tests.

식물공장 자동화를 위한 공압 실린더를 이용한 육묘베드 이송장치의 이송력 특성 (Transfer Force Characteristics of Seedling Bed Transfer Equipment Using Pneumatic Cylinder for Automation of Plant Factory)

  • 민영봉;박상민;이공인;김동억;강동현;문성동
    • Journal of Biosystems Engineering
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    • 제37권3호
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    • pp.155-165
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    • 2012
  • This study was performed to offer the data for design of the seedling bed transfer equipment to make the automation of working process in a plant factory. The seedling bed transfer equipment pushing the seedling bed with bearing wheels on the rail for interconnecting each working process by a pneumatic cylinder was made and examined. The examined transfer force to push the seedling bed with a weight of 178.9 N by the pneumatic cylinder with length of 60 cm and section area of 5 $cm^2$ was measured by experiments. The examined transfer forces was compared with theoretical ones calculated by the theoretical formula derived from dynamic system analysis according to the number of the seedling bed and pushing speed of the pneumatic cylinder head at no load. The transfer function of the equipment with the input variable as the pushing speed $V_{h0}$(m/s) and the output variable as the transfer force f(t)(N) was represented as $F(s)=(V_{h0}/k)(s+B/M)/(s(s^2+Bs/M+1/(kM))$ where M(kg), k(m/N) and B(Ns/m) are the mass of the bed, the compression coefficient of the pneumatic cylinder and the dynamic friction coefficient between the seedling bed and the rail, respectively. The examined transfer force curves and the theoretical ones were represented similar wave forms as to use the theoretical formular to design the device for the seedling bed transfer. The condition of no vibration of the transfer force curve was $kB^2>4M$. The condition of transferring the bed by the repeatable impact and vibration force according to difference of transfer distance of the pneumatic cylinder head from that of the bed was as $Ce^{-\frac{3{\pi}D}{2\omega}}<-1$, where ${\omega}=\sqrt{\frac{1}{kM}-\frac{B^2}{4M^2}}$, $C=\{\frac{\frac{B}{2M}-\frac{1}{kB}}{\omega}\}$, $D=\frac{B}{2M}$. The examined mean peak transfer force represented 4 times of the stead state transfer force. Therefore it seemed that the transfer force of the pneumatic cylinder required for design of the push device was 4Bv where v is the pushing speed.

고속철도 터널내 압력파 측정과 공기압 해석모델에 대한 기초연구 (A comparative study of field measurements of the pressure wave with analytical aerodynamic model for the high speed train in tunnels)

  • 김효규;최판규;홍유정;유지오
    • 한국터널지하공간학회 논문집
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    • 제17권3호
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    • pp.319-332
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    • 2015
  • 열차가 고속으로 터널내를 진입할 때 열차의 피스톤 작용에 의해 형성되는 압력파는 터널내를 진행하고, 출구에 도달한 압축파는 터널 출구면의 개구단 조건에 따라 팽창파로 터널입구로 다시 전파된다. 이에 따른 터널내 주행열차와의 간섭현상으로 인해 차량내 승객은 심한 압력변동을 느끼게 되며, 이러한 압력파는 열차의 설계와 운행에 영향을 미치고, 에너지 손실과 소음, 진동, 승객의 이명현상의 원인이 된다. 본 연구에서는 열차가 고속으로 터널내부를 진입시 나타나는 터널내 압력파의 전파특성과 열차의 기밀도에 따른 객실내로 침투하는 압력 변화량을 현장 실험내용과 비교분석을 수행하였다. 또한, 압축성 1-D 모델(MOC)의 적용 가능성을 살펴보기 위해 ThermoTun 프로그램과의 비교연구를 수행하였고, Baron의 압축성 1-D 수치모델에 기초한 지배방정식 해석의 적정성을 검토하기 위해 비교연구도 병행하였다.

단기통 4행정 농용 디젤기관의 개발 연료펌프 성능특성에 관한 연구 (A Study on Performance Characteristics of the Developed Fuel Pump for a Single-cylinder Four-stroke Agricultural Diesel Engine)

  • 배명환;이상해;정화
    • Journal of Advanced Marine Engineering and Technology
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    • 제40권9호
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    • pp.756-761
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    • 2016
  • 본 연구에서는 소형 단기통 4행정 농용 디젤엔진에 장착될 수 있는 플런저 직경 4 mm, 행정 7 mm의 연료펌프를 설계 및 제작하여 성능특성을 조사하는 것이 목적이다. 실린더 내 연소압력은 자체 제작한 모형 실린더 내에 질소가스를 사용하여 1, 6, 11, 16 및 21 bar의 배압을 형성시켜 모사했다. 실험에 있어서는 연료펌프 회전속도를 600, 800, 1000, 1200 및 1400 rpm로 변화시키면서 개발된 연료펌프의 토출구에서 1 cm 떨어진 지점의 토출압력, 30 cm 떨어진 지점의 송출압력과 송출유량을 배압에 대해 측정하였고, 펌프효율을 계산하였다. 그 결과, 연료펌프 회전속도가 증가하면 펌프의 송출유량은 증가하였고, 실린더 내의 압축압력인 배압이 증가하면 송출유량은 감소하였다. 또한, 연료펌프의 회전속도가 증가할수록 펌프효율이 감소되었고, 실린더 내의 배압이 증가함에 따라 펌프효율은 감소되었다.