• 제목/요약/키워드: required velocity

검색결과 984건 처리시간 0.022초

중첩 이종 무선 망 환경에서 단말의 이동 속도를 고려한 효과적인 망 자원 예약 (An Efficient Network Resource Reservation Mechanism with Mobility in Nested Heterogeneous Mobile Networks)

  • 박인수;탁동국;김원태;박용진
    • 대한전자공학회논문지TC
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    • 제44권10호
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    • pp.83-98
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    • 2007
  • 이동 무선 환경에서 핸드오버 특히, 이종 망이 중첩된 네트워크 환경에서의 핸드오버는 서로 다른 서비스 특성과 서비스 영역의 영향을 받는다. 핸드오버로 인한 서비스 단절 현상과 서비스 품질 저하를 방지하기 위해서는 서비스 요구 사항(bandwidth, throughput, delay 등)을 지속적으로 유지시킬 수 있는 자원 예약 알고리즘은 필수적인 요소이다. 자원 예약은 이동 단말의 핸드오버 처리 시간과 자원 낭비를 최소화시키기 위해 사전에 미리 진행되어야 하는데, 이는 단말의 위치 정보, 이동 속도 이동 경로, 서비스 요구 사항, 주변 셀 정보 등이 개개의 단말과 서비스에 대한 정확한 예측과 높은 신뢰도를 바탕으로 이루어져야 한다. 본 논문에서는 단말 이동에 따른 셀 변경 확률 및 셀 선정 알고리즘을 기반으로 이동 속도별 서비스 계층을 두어 특정 속도에 대해 핸드오버를 효과적으로 처리하고, 네트워크 오버헤드 및 자원 낭비를 최소화시킬 수 있는 사전 자원 예약 알고리즘을 제안한다. 또한 3개 계층으로 구성된 네트워크 모델 상에서 가상 시나리오에 따라 PMS(Predictive Mobility Support) 및 VCDS(Velocity and Call Duration Support scheme)와의 성능 비교를 통해 제안 알고리즘의 효율성을 살펴본다.

중간 속도 규모를 이용한 바람장의 균질성 평가 및 영향요소 분석 (The assessment of the Spatial Variation of the Wind Field using the Meso-velocity Scale and its Contributing Factors)

  • 이성은;신선희;하경자
    • 대기
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    • 제20권3호
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    • pp.343-353
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    • 2010
  • A regional wind network with complex surface conditions must be designed with sufficient space and time resolution to resolve the local circulations. In this study, the spatial variations of the wind field observed in the Seoul and Jeju regional networks were evaluated in terms of annual, seasons, and months to assess the spatial homogeneity of wind fields within the regional networks. The coherency of the wind field as a function of separation distance between stations indicated that significant coherency was sometimes not captured by the network, as inferred by low correlations between adjacent stations. A meso-velocity scale was defined in terms of the spatial variability of the wind within the network. This problem is predictably most significant with weak winds, dull prevailing wind, clear skies and significant topography. The relatively small correlations between stations imply that the wind at a given point cannot be estimated by interpolating winds from the nearest stations. For the Seoul and Jeju regional network, the meso-velocity scale has typically a same order of magnitude as the speed of the network averaged wind, revealing the large spatial variability of the Jeju network station imply topography and weather. Significant scatter in the relationship between spatial variability of the wind field and the wind speed is thought to be related to thermally-generated flows. The magnitude of the mesovelocity scale was significantly different along separation distance between stations, wind speed, intensity of prevailing wind, clear and cloudy conditions, topography. Resultant wind vectors indicate much different flow patterns along condition of contributing factors. As a result, the careful considerations on contributing factors such as prevailing wind in season, weather, and complex surface conditions with topography and land/sea contrast are required to assess the spatial variations of wind field on a regional network. The results in the spatial variation from the mesovelocity scale are useful to represent the characteristics of regional wind speed including lower surface conditions over the grid scale of large scale atmospheric model.

Coilgun 성능향상을 위한 솔레노이드 코일 설계 (Parameter Study on the Design of Solenoid to Enhance the Velocity of Coilgun)

  • 장재환;김진호;이수정
    • 한국자기학회지
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    • 제25권3호
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    • pp.87-91
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    • 2015
  • 본 논문에서는 코일건 발사 시스템의 성능 향상을 위한 솔레노이드 설계에 대해 연구하였다. 즉, 코일건 솔레노이드의 코일 직경에 따른 피투사체의 발사속도에 대한 분석을 수행하였다. 코일건은 자기력을 이용하여 피투사체를 발사시키는 시스템이다. 솔레노이드에 순간적으로 큰 전류를 흘려주면 코일 주위에 순간적인 자기장이 만들어지고, 발사체는 플레밍의 오른손 법칙에 따라 코일의 중심 방향으로 자기력을 받아 발사된다. 피투사체의 발사 속도는 솔레노이드 코일이 생성하는 자기력과 비례한다. 하지만, 솔레노이드 코일은 규격에 따른 최대허용 전류가 존재한다. 따라서, 한계 전류 내에서 피투사체에 작용하는 자기력이 최대가 되는 솔레노이드 코일의 설계가 필요하다. 본 논문에서는 솔레노이드 코일의 설계를 위해 AWG(American Wire Gauge)6부터 AWG18까지의 코일의 직경에 따른 최적의 권수를 찾아서 발사가능여부와 그에 따른 발사속도를 비교 분석한다.

디스포저에 의한 음식물류폐기물 횡지관 유동성 평가 (Liquidity Evaluation on the Horizontal Branch Pipe Connected to a Food Waste Disposer)

  • 장춘만;이상문;김철규;박세준;유종찬
    • 한국유체기계학회 논문집
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    • 제20권1호
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    • pp.53-58
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    • 2017
  • This paper describes liquidity evaluation on the horizontal branch pipe connected to a food waste disposer and performance of five disposers marketed. Experimental apparatus for analyzing the five disposers has been introduced to measure vibration, sound level and power consumption of the disposers. Simulator for analyzing the required water velocity to avoid waste jam inside the pipe connected to a food waste disposer has been designed and constructed. The simulator can control some experimental parameters: pipe slope, disposer supply water quantity, food waste materials and operation time of a disposer. Throughout the experimental measurements of the disposers marketed, it is found that the time need to crash food waste is about 20 seconds on the average. At the same flow condition, increase rate of internal water velocity is accelerated as the pipe slope increases. The water velocity inside the pipe having 50 A and slope of 1/50 is 0.26 m/s when the water flowrate to supply the disposer is 16 l pm. Considering the specific gravity and adhesion property of food waste, water velocity of the horizontal branch pipe connected to a food waste disposer need to excess 0.26 m/s at least to avoid the waste blockage inside the pipe.

Particle Image Velocimetry of the Blood Flow in a Micro-channel Using the Confocal Laser Scanning Microscope

  • Kim, Wi-Han;Kim, Chan-Il;Lee, Sang-Won;Lim, Soo-Hee;Park, Cheol-Woo;Lee, Ho;Park, Min-Kyu
    • Journal of the Optical Society of Korea
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    • 제14권1호
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    • pp.42-48
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    • 2010
  • We used video-rate Confocal Laser Scanning Microscopy (CLSM) to observe the motion of blood cells in a micro-channel. Video-rate CLSM allowed us to acquire images at the rate of 30 frames per second. The acquired images were used to perform Particle Image Velocimetry (PIV), thus providing the velocity profile of the blood in a micro-channel. While previous confocal microscopy-assisted PIV required exogenous micro/nano particles as the tracing particles, we employed blood cells as tracing particles for the CLSM in the reflection mode, which uses light back-scattered from the sample. The blood flow at various depths of the micro-channel was observed by adjusting the image plane of the microscope. The velocity profile at different depths of the channel was measured. The confocal micro-PIV technique used in the study was able to measure blood velocity up to a few hundreds ${\mu}m/sec$, equivalent to the blood velocity in the capillaries of a live animal. It is expected that the technique presented can be applied for in vivo blood flow measurement in the capillaries of live animals.

Early adjusting damping force for sloped rolling-type seismic isolators based on earthquake early warning information

  • Hsu, Ting-Yu;Huang, Chih-Hua;Wang, Shiang-Jung
    • Earthquakes and Structures
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    • 제20권1호
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    • pp.39-53
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    • 2021
  • By means of installing sloped rolling-type seismic isolators (SRI), the horizontal acceleration transmitted to the to-be-protected object above can be effectively and significantly reduced under external disturbance. To prevent the maximum horizontal displacement response of SRI from reaching a threshold, designing large and conservative damping force for SRI might be required, which will also enlarge the transmitted acceleration response. In a word, when adopting seismic isolation, minimizing acceleration or displacement responses is always a trade-off. Therefore, this paper proposes that by exploiting the possible information provided by an earthquake early warning system, the damping force applied to SRI which can better control both acceleration and displacement responses might be determined in advance and accordingly adjusted in a semi-active control manner. By using a large number of ground motion records with peak ground acceleration not less than 80 gal, the numerical results present that the maximum horizontal displacement response of SRI is highly correlated with and proportional to some important parameters of input excitations, the velocity pulse energy rate and peak velocity in particular. A control law employing the basic form of hyperbolic tangent function and two objective functions are considered in this study for conceptually developing suitable control algorithms. Compared with the numerical results of simply designing a constant, large damping factor to prevent SRI from pounding, adopting the recommended control algorithms can have more than 60% reduction of acceleration responses in average under the excitations. More importantly, it is effective in reducing acceleration responses under approximately 98% of the excitations.

3 MWth 급 매체순환연소 시스템의 운전변수 변화에 따른 성능 예측 (Performance Prediction of 3 MWth Chemical Looping Combustion System with Change of Operating Variables)

  • 류호정;남형석;황병욱;김하나;원유섭;김대욱;김동원;이규화;전명훈;백점인
    • 한국수소및신에너지학회논문집
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    • 제33권4호
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    • pp.419-429
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    • 2022
  • Effects of operating variables on temperature profile and performance of 3 MWth chemical looping combustion system were estimated by mass and energy balance analysis based on configuration and dimension of the system determined by design tool. Air reactor gas velocity, fuel reactor gas velocity, solid circulation rate, and solid input percentage to fluidized bed heat exchanger were considered as representative operating variables. Overall heat output and oxygen concentration in the exhaust gas from the air reactor increased but temperature difference decreased as air reactor gas velocity increased. Overall heat output, required solid circulation rate, and temperature difference increased as fuel reactor gas velocity increased. However, overall heat output and temperature difference decreased as solid circulation rate increased. Temperature difference decreased as solid circulation rate through the fluidized bed heat exchanger increased. Effect of each variables on temperature profile and performance can be determined and these results will be helpful to determine operating range of each variable.

연속탈진형 충격기류식 여과집진장치의 여과포 유효탈진거리 예측 (A Study on Prediction of On-line Type Pulse Air Jet Bag Filter Effective Pulsing Distance)

  • 손정삼;서정민;박정호
    • 한국환경과학회지
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    • 제32권8호
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    • pp.555-561
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    • 2023
  • A study is to predict the effective pulsing distance following to the pulsing pressure, nozzle diameter, filtration velocity using numercial analysis techniques and use it as an efficient operation condition and economic data for on-line type pulse air jet bag filter. Filtration area 6 m2 condition, calculate filter resistance coefficient for simulation through the primary experiments using coke dust. For CFD simulation, analysis pulsing characteristics about nozzle diameter, filtration velocity and pulsing pressure. The maximum pulsing length of on-line type pulse air jet bag filter, in 10mm nozzle, filtration velocity 1.5m/min and pulsing pressure 5 bar conditions, is 2,285 mm, maximum length is 76.2% of the total filter bag, which is sufficient to pulsing. In 12mm nozzle, pulsing pressure 5 bar and filtration area 1.22 m2 conditions, the maximum pulsing length of on-line type pulse air jet bag filter is 1,744~2,952 mm, and the maximum length is 2,952 mm indicates pulsing air can be reached to the bottom of filter bag. When the nozzle diameter is increased 8mm to 10mm, maximum pulsing length is extended 40~47%, and increased 10mm to 12 mm, maximum pulsing length is extended 10~17%. For effective pulsing, over the 5bar of pulsing pressure and larger than 10 mm of nozzle diameter are required.

GPS로 추정한 지각변동 속도 및 판 거동 모델과의 비교 (Crustal Deformation Velocities Estimated from GPS and Comparison of Plate Motion Models)

  • 송동섭;윤홍식
    • 대한토목학회논문집
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    • 제26권5D호
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    • pp.877-884
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    • 2006
  • GPS는 지각판 속도 추정과 같은 높은 정밀도가 요구되는 연구 분야에서 필수적이다. 본 연구에서는 GPS 상시관측소 8개소의 3년간 관측 데이터를 Gipsy-OasisII 소프트웨어를 이용하여 한반도의 지각변동량을 계산하였다. 지각변동 속도벡터는 일별 처리 결과의 시계열 분석에 의한 선형 회귀분석으로 추정하였다. 추정된 변동 속도의 표준편차는 0.1mm/yr 이하였으며, 그 크기는 25.1~31.1mm/yr의 범위로 매우 작게 나타났다. SOPAC에서 계산한 IGS의 계산결과와 비교한 결과 보편적으로 지각변동의 크기와 방향이 잘 일치되는 경향을 나타내었다. 본 연구 결과를 평가하기 위하여 6개의 판 거동 모델의 결과와도 비교를 하였다.

배관내 압력변동 신호를 이용한 유량 추정 방법 연구 (A Study on Flow Rate Estimation Using Pressure Fluctuation Signals in Pipe)

  • 이정한;장대식;박진호
    • 한국압력기기공학회 논문집
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    • 제19권2호
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    • pp.155-162
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    • 2023
  • In nuclear power plants, the flow rate information is a major indicator of the performance of rotating equipment such as pumps, and is a very important one required for facility operation and maintenance. To measure a flow rate, various types of methods have been developed and used. Among them, the differential pressure type using orifice and the direct doppler type using ultrasonic waves are the most commonly used. However, these flow rate measurement methods have limitations in installation, conditions and status of the measuring part, etc. To solve this problem, we have studied a new technique for measuring flow rate from scratch. In this paper, we have devised a technique to estimate the flow rate using an average moving velocity of large-scale eddy in turbulence that occurs in the piping flow field. The velocity of the large-scale eddy can be measured using the pressure fluctuation signals on the inner surface of the pipe. To estimate the flow rate, at first a cross-correlation function is applied to the two pressure fluctuation signals located at different positions in the down stream for calculating the time delay between the moving eddies. In order to validate the proposed flow rate estimation method, CFD analyses for the internal turbulence flow in pipe are conducted with a fixed flow condition, where the pressure fluctuation signals on the pipe inner surface are simulated. And then the average flow velocity of the large scale eddy is to be estimated. The estimated flow velocity is turned out to be similar to the fixed (known) flow rate.