• 제목/요약/키워드: Operation timing

검색결과 486건 처리시간 0.023초

통행시간 자료를 이용한 신호시간계획의 결정 방법 (Determination Method of Signal Timing Plan Using Travel Time Data)

  • 정영제
    • 한국콘텐츠학회논문지
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    • 제18권3호
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    • pp.52-61
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    • 2018
  • 본 연구에서는 구간통행시간 정보를 기반으로 하는 신호교차로의 신호시간 산정모형을 개발하였다. 도시교통정보시스템 UTIS와 같이 구간통행시간 정보를 수집할 수 있는 검지체계를 적용하였으며, 결정적 지체모형을 이용하여 통행시간 정보로 부터 포화도 및 수요교통량을 산정하기 위한 모형을 정립하였다. 또한 본 모형은 수요교통량을 이용하여 Webster 모형 기반의 신호최적화를 수행함으로써 교차로 지체를 최소화 시키는 신호시간을 산정할 수 있다. 알고리즘의 효과평가를 위해 VISSIM과 API 도구인 ComInterface를 적용한 미시적 시뮬레이션 분석을 시행하였으며, 이동류의 포화상태를 확인하여 지체 최소화를 위한 신호시간이 산정됨을 확인하였다. 최근 국내 교통관리분야에서는 도시교통정보시스템 UTIS, 첨단교통관리시스템 ATMS와 같아 구간통행시간을 수집할 수 있는 검지체계가 급격히 확산되고 있으며, 본 연구에서는 교통신호운영 분야에서 교통정보시스템을 적용하였다는데 의의가 있겠다.

장-행정 저속 4 사이클 디젤기관의 제작 및 최적 연소조건에 관한 연구 (A Study on Optimal Combustion Conditions with a Design and Manufacture of the Long-Stroke Slow Speed 4 Cycle Diesel Engine)

  • 장태익
    • Journal of Advanced Marine Engineering and Technology
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    • 제28권3호
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    • pp.551-558
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    • 2004
  • Recently, fuel prices have been continually raised in diesel engine. Such a change in the fuel price influences enormously the development trend of marine diesel engines for slow speed, In other words, the focus was shifted from large diameter and high speed to low fuel consumption. Accordingly, more efforts are being made for engine manufacturing and development to develop highly efficient engines. In this study. a single cylinder 4 stroke cycle DI slow speed diesel engine was designed and manufactured, a 4 stroke cycle was configured and basic performances were evaluated. The results are as follows. The optimal fuel injection timing had the lowest value when specific fuel consumption was in BTDC 8~$10^{\circ}$, a little more delayed compared to high speed diesel engines. Cycle variation of engines showed about 5% difference at full loads. This is a significantly small value compared to the cycle variation in which stable operation is possible, showing the high stability of engine operation is good. The torque and brake thermal efficiency of engine increased with an increase of engine 250-450 rpm. but fuel consumption ratio increased from the 450 rpm zone and thermal efficiency abruptly decreased. Mechanical efficiency was maximally 70% at a 400 rpm that was lower than normal engines according to the increase of mechanical frictional loss for cross head part. The purpose of this study was to get more practical engines by comparing the above results with those of slow speed 2 stroke cycle diesel engines.

실험계획법에 의한 가솔린 GDI+MPI 엔진의 연비 및 성능향상 관점에서의 운전영역별 연료분사 전략에 관한 연구 (A Study of GDI+MPI Engine Operation Strategy Focusing on Fuel Economy and Full Load Performance using DOE)

  • 김도완;이승환;임종석
    • 한국자동차공학회논문집
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    • 제22권3호
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    • pp.42-49
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    • 2014
  • The gasoline direct injection (GDI) system is considerably spreading in automotive market due to its advantages. Nevertheless, since GDI system emit higher particle matter (PM) due to its combustion characteristics, it is difficult to meet strengthened emission regulation in near future. For this reason, a combined GDI with MPI system, so-called, dual injection (DUI) system is being investigated as a supplemental measure for the GDI system. This paper focused on power and fuel consumption effect by injection mode strategy of DUI system in part load and idle engine operating condition. In this study, port fuel injectors are installed on 2.4 liters GDI production engine in order to realize DUI system. And, at each injection mode, DOE (design of experiment) method is used to optimize engine control parameters such as dual injection ratio, start of injection timing, end of injection timing, CAM position and so on. As a consequence, DUI mode shows slightly better or equivalent fuel efficiency compared to conventional GDI engine on 9 points fuel economy mode as well as MPI mode shows less fuel consumption than GDI mode during idle operation. Furthermore, DUI system shows improvement potential of maximum 2.0% fuel consumption and 1.1% performance compared to GDI system in WOT operating condition.

저압 SCR을 위한 디젤발전기 배기가스 온도 변화 (Temperature Variation of Exhaust Gas in Diesel Generator for Low Pressure SCR)

  • 홍철현;이창민;이상득
    • 해양환경안전학회지
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    • 제27권2호
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    • pp.355-362
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    • 2021
  • L.P SCR의 촉매 반응을 위해 선박의 발전기용 4행정 디젤엔진의 배기가스 온도를 높게 설계 할 수밖에 없었다. 본 연구의 목적은 밸브개폐시기와 연료분사시기를 조정을 통한 배기가스의 온도 감소가 L.P SCR의 운전조건을 만족시키고 고온으로 인한 발전기 엔진의 사고를 예방하기 위함이었다. 배기가스 온도를 하강시키기 위해 캠샤프트의 각도를 조정하고 연료분사펌프의 Shim을 추가하였다. 그 결과 최대폭발압력은 12.8 bar 증가하였고 터보차저 출구온도 평균값은 13.3 ℃ 하강하였다. 터보차저 출구에서 SCR 입구까지의 열손실을 감안하더라도 L.P SCR 운전조건인 SCR 챔버 입구 온도인 290 ℃를 만족하였다. 배기가스 온도 하강을 통해 디젤발전기의 안전운전이 가능하게 한 연구였다.

Phase Jitter Analysis of Overlapped Signals for All-to-All TWSTFT Operation

  • Juhyun Lee;Ju-Ik Oh;Joon Hyo Rhee;Gyeong Won Choi;Young Kyu Lee;Jong Koo Lee;Sung-hoon Yang
    • Journal of Positioning, Navigation, and Timing
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    • 제12권3호
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    • pp.245-255
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    • 2023
  • Time comparison techniques are necessary for generating and keeping Coordinated Universal Time (UTC) and distributing standard time clocks. Global Navigation Satellite System (GNSS) Common View, GNSS All-in-View, Two-Way Satellite Time and Frequency Transfer (TWSTFT), Very Long Baseline Interferometry (VLBI), optical fiber, and Network Time Protocol (NTP) based methods have been used for time comparison. In these methods, GNSS based time comparison techniques are widely used for time synchronization in critical national infrastructures and in common areas of application such as finance, military, and wireless communication. However, GNSS-based time comparison techniques are vulnerable to jamming or interference environments and it is difficult to respond to GNSS signal disconnection according to the international situation. In response, in this paper, Code-Division Multiple Access (CDMA) based All-to-All TWSTFT operation method is proposed. A software-based simulation platform also was designed for performance analysis in multi-TWSTFT signal environments. Furthermore, code and carrier measurement jitters were calculated in multi-signal environments using the designed simulation platform. By using the technique proposed in this paper, it is anticipated that the TWSTFT-based time comparison method will be used in various fields and satisfy high-performance requirements such as those of a GNSS master station and power plant network reference station.

고장을 고려한 공정평균 이동에 대한 조정시기 결정 (Determination of Resetting Time to the Process Mean Shift with Failure)

  • 이도경
    • 산업경영시스템학회지
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    • 제42권4호
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    • pp.145-152
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    • 2019
  • All machines deteriorate in performance over time. The phenomenon that causes such performance degradation is called deterioration. Due to the deterioration, the process mean of the machine shifts, process variance increases due to the expansion of separate interval, and the failure rate of the machine increases. The maintenance model is a matter of determining the timing of preventive maintenance that minimizes the total cost per wear between the relation to the increasing production cost and the decreasing maintenance cost. The essential requirement of this model is that the preventive maintenance cost is less than the failure maintenance cost. In the process mean shift model, determining the resetting timing due to increasing production costs is the same as the maintenance model. In determining the timing of machine adjustments, there are two differences between the models. First, the process mean shift model excludes failure from the model. This model is limited to the period during the operation of the machine. Second, in the maintenance model, the production cost is set as a general function of the operating time. But in the process mean shift model, the production cost is set as a probability functions associated with the product. In the production system, the maintenance cost of the equipment and the production cost due to the non-confirming items and the quality loss cost are always occurring simultaneously. So it is reasonable that the failure and process mean shift should be dealt with at the same time in determining the maintenance time. This study proposes a model that integrates both of them. In order to reflect the actual production system more accurately, this integrated model includes the items of process variance function and the loss function according to wear level.

OFDM 기반 WAVE 시스템의 시간동기 하드웨어 설계 (Hardware Design for Timing Synchronization of OFDM-Based WAVE Systems)

  • 현트롱안;김진상;조원경
    • 한국통신학회논문지
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    • 제33권4A호
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    • pp.473-478
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    • 2008
  • 5.9 GHz WAVE(Wireless Access for the Vehicular Environment)는 노변-차량, 차량-차량 통신을 통하여 공공안전과 개인통신을 지원하기 위한 중단거리 무선통신 방식이다. WAVE 물리계층의 핵심기술은 시간동기오류에 민감한 OFDM 방식이며 통신링크상의 지연을 최소화하여 고속의 차량통신 환경을 제공하는 것이 매우 중요하다. 본 논문에서는 오류에 강인하고 복잡도가 낮고 지연시간이 적은 WAVE 시스템 응용을 위한 시간동기 알고리즘과 하드웨어 구조를 제안한다. 제안된 알고리즘은 기존의 알고리즘에 비교하여 연산의 복잡도와 지연시간이 감소되며 하드웨어 구조는 파이프라인 구조와 고속 동작에 영향을 줄 수 있는 RAM이 필요하지 않다는 장점이 있다. Matlab과 FPGA를 이용한 하드웨어 구현을 통한 동기화 오차율(SER) 실험결과, 제안된 알고리즘이 고속 이동환경에 대해 강인하고 효율적이라는 확인하였다.

펄스 타이밍 제어를 활용한 Ka-대역 10 W 전력증폭기 모듈 (A Ka-band 10 W Power Amplifier Module utilizing Pulse Timing Control)

  • 장석현;김경학;권태민;김동욱
    • 대한전자공학회논문지TC
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    • 제46권12호
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    • pp.14-21
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    • 2009
  • 본 논문에서는 7개의 MMIC 전력증폭기 칩과 박막기판을 결합하여 MIC 모듈을 구성함으로써 Ka-대역 중심주파수 영역에서 10 W 이상의 출력전력을 가지는 펄스모드 전력증폭기 모듈을 설계하고 제작하였다. 전력증폭기 모듈의 제작에는 밀리미터파 대역에 적합한 수정된 형태의 윌킨슨 전력분배기/합성기와 모듈의 조림과정에서 공진을 억제하고 작은 삽입손실 특성을 보이는 CBFGCPW-Microstrip 천이구조를 활용하였다. 전력용 MMIC 바이어스 회로에 사용된 큰 값의 바이패스 캐패시터에 의해 발생되는 펄스모드 출력전력의 감소를 개선하고자 TTL 펄스 타이밍 제어 기법을 제안하였다. 제안된 방법을 10 kHz, $5\;{\mu}sec$ 펄스모드로 동작하는 전력증폭기 모듈에 적용한 결과 펄스모드 동작시간을 200 nsec 이상 개선할 수 있었고 0.62 W의 출력전력을 향상시킬 수 있었다. 구현된 전력증폭기 모듈은 59.5 dB의 전력이득과 11.89 W의 출력전력을 보여주었다.

리니어엔진을 이용한 파워팩의 운전조건에 따른 발전출력에 관한 연구 (A Study for Generating Power on Operating Parameters of Powerpack utilizng Linear Engine)

  • 오용일;김강출;임옥택
    • 한국수소및신에너지학회논문집
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    • 제23권2호
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    • pp.183-190
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    • 2012
  • The research shows the experiment results according to the combustion characteristics and configuration of the linear generator of powerpack for the generating power applying the 2-stroke compact linear engine. The powerpack used in this paper consists of 2-stroke linear engine, linear generator and air compressor parts. For identifying the combustion characteristics and generating power of linear engine, some parameters were varied sucha as electric load, fuel input calorie, spark timing delay and equivalence ratio. Also generating power was confirmed at each operation conditions, when the air gap length of linear generator part was changed as each 1.0 mm and 2.0 mm. During the all operations, intake air was inputted under the wide open throttle. Mass flow rate of air and fuel was changed using mass flow controller, after these were premixed by premixture device, and then premixed gas was supplied directly into each cylinder. As a result, piston frequency and combustion characteristics were different at each conditions according to parameters affecting the combustion such as fuel input calorie, resistive load, spark timing delay and equivalence ratio. Consequently, these had an effect on generating power.