• 제목/요약/키워드: power increased design

검색결과 953건 처리시간 0.025초

인간동력항공기의 항력저감 및 동력증강 설계 (Drag Reduced and Power Increased Design of Human Powered Aircraft)

  • 신병준;조영희;김학윤
    • 항공우주기술
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    • 제12권2호
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    • pp.221-229
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    • 2013
  • 인간동력항공기의 개념을 분석하여 최고 성능의 인간동력항공기 개발을 위하여 필요시되는 동력증강 및 항력감소 설계에 대하여 연구하였다. 2012년 인간동력항공기 시범경진대회에 출전하기 위하여 유선형 동체 채택에 의한 항력저감 및 팔과 다리 힘 동시사용에 의한 동력증강개념을 제시하였으며 개념 확인을 위하여 동체의 전산해석 및 동력장치 설계를 수행하였다. 유선형 동체의 효과를 최대한 이용하기 위해서는 동체형상 설계가 중요하며 팔의 동력을 이용하기 위해서는 조종 장치의 설계가 중요하고 비행실험이 요구된다.

플라즈마 유동제어를 위한 DBD 플라즈마 액츄에이터의 설계변수에 따른 특성 연구 (Study on Characteristics of DBD Plasma Actuator as Design Parameters for Plasma Flow Control)

  • 윤수환;권혁빈;김태규
    • 한국항공우주학회지
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    • 제40권6호
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    • pp.492-498
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    • 2012
  • DBD(Dielectric Barrier Discharge) 플라즈마 액츄에이터의 설계 파라미터에 따른 특성을 연구하였다. 방전전압, 주파수, 전극의 간격, 폭, 길이, 유전체 두께에 따른 DBD 플라즈마 액츄에이터의 유속 및 소모전력을 측정하였다. 방전전압과 주파수가 클수록 유속과 소모전력은 증가하였다. 전극간격은 클수록 소모전력은 감소하면서 유속은 증가하였으나, 플라즈마 방전을 위해 높은 전압이 요구되었다. 상부전극폭은 좁을수록, 하부전극폭은 넓을수록 일정한 소모전력으로 유속을 증가시킬 수 있었다. 주어진 방전조건과 전극형상에서 DBD 플라즈마 액츄에이터의 성능을 예측할 수 있을 것으로 기대된다.

Taguchi 방법을 이용한 순수 유압식 브레이커의 성능 최적화 (Performance Optimization of a Fully Hydraulic Breaker using Taguchi Method)

  • 곽광순;장효환
    • 유공압시스템학회논문집
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    • 제5권3호
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    • pp.1-8
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    • 2008
  • The optimal design of a large-size fully hydraulic breaker is studied in this paper. Mathematical modeling of the breaker is established and verified by experiments. Through sensitivity analysis, the key design parameters of the breaker are selected, which mostly affect the performance of the breaker. Taguchi method is used to optimize the key design parameters in order to maximize the output power through simulation using AMESim. As a result, the impact energy is increased by 18.9% and the output power is increased by 12.4% compared with the current design. The pressure pulsation in the supply line is also reduced by the optimization.

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위성용 전장품 탑재보드의 Power Integrity 및 Signal Integrity 설계 분석을 통한 노이즈 성능 개선 (Improvement of Noise Characteristics by Analyzing Power Integrity and Signal Integrity Design for Satellite On-board Electronics)

  • 조영준;김철영
    • 한국항공우주학회지
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    • 제48권1호
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    • pp.63-72
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    • 2020
  • 본 연구에서는 위성용 전장품 보드의 성능 요구조건과 설계 복잡도가 높아지면서 증가되는 노이즈 문제를 최소화하기 위해 전원 건전성(Power Integrity) 및 신호 건전성(Signal Integrity)의 설계 분석이 수행되었고 이를 통해 적용된 설계 개선 내용을 기술하였다. 전원 건전성은 정전류 전압강하(DC IR drop) 해석을 통해 정적 전원의 특성을 분석하였고, 각 전원의 임피던스 해석을 통해 동적 전원의 특성을 분석하여 각 분석 결과를 이용한 설계 개선 방안들이 적용되었다. 신호 건전성 측면에서는 주요 데이터버스 신호에 대한 시간영역 파형 분석과 PCB(Printed Circuit Board) 설계 수정을 통해 노이즈가 개선된 결과를 확인하였다. 또한 설계된 PCB 보드의 전원 층에 대한 공진모드를 분석하여 발생된 공진 영역들에 완화 조치를 적용하였고 조치결과를 시뮬레이션을 통해 확인하였다. 최종적으로 분석을 통해 설계 개선이 적용된 유닛에 대해 수정 전과 후의 EMC(Electro Magnetic Compatibility) RE(Radiated Emission) 노이즈 측정결과를 비교함으로써 방사성 노이즈가 감소되었음을 확인하였다.

Aerodynamic design and optimization of a multi-stage axial flow turbine using a one-dimensional method

  • Xinyang Yin;Hanqiong Wang;Jinguang Yang;Yan Liu;Yang Zhao;Jinhu Yang
    • Advances in aircraft and spacecraft science
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    • 제10권3호
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    • pp.245-256
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    • 2023
  • In order to improve aerodynamic performance of multi-stage axial flow turbines used in aircraft engines, a one-dimensional aerodynamic design and optimization framework is constructed. In the method, flow path is generated by solving mass continuation and energy conservation with loss computed by the Craig & Cox model; Also real gas properties has been taken into consideration. To obtain an optimal result, a multi-objective genetic algorithm is used to optimize the efficiencies and determine values of various design variables; Final design can be selected from obtained Pareto optimal solution sets. A three-stage axial turbine is used to verify the effectiveness of the developed optimization framework, and designs are checked by three-dimensional CFD simulation. Results show that the aerodynamic performance of the optimized turbine has been significantly improved at design point, with the total-to-total efficiency increased by 1.17% and the total-to-static efficiency increased by 1.48%. As for the off-design performance, the optimized one is improved at all working points except those at small mass flow.

대면적 Multi busbar 모듈 전력 손실 저감을 위한 태양전지 설계 (Solar Cell Design for Large Area Multi Busbar Module Power Loss Reduction)

  • 김주휘;이재형
    • Current Photovoltaic Research
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    • 제11권1호
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    • pp.34-37
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    • 2023
  • Solar energy had become the main energy industry of renewable energy along with hydroelectric power generation. One of the technologies that contributed to the popularization of photovoltaic power and the decrease in the unit price of photovoltaic modules was the large-area solar cell. However, as the area increased, the light receiving area increased and the current value increased accordingly. Since power loss occurs when the current value was large, the number of busbar was increased to increase the current collection rate, and a technology to lower the current value through half-cutting was developed. The bus bar of the solar cell served as a passage through which the generated current was transmitted. This was because when the number of busbar decreases, the moving distance of electrons increased, so the amount of power generation decreases and when it increases, shadows occured. An important aspect of the electrode design was the optimal balance of these busbars and number of fingers. Therefore, in this study, the characteristics of the solar cell according to the number of front bus bars of the large-area solar cell were simulated using Griddler 2,5 pro. After selecting the number of busbar with the best characteristics, the difference was compared by varying the number of fingers and a better direction for the number of cutting was presented.

500 W 급 무선전력전송 컨버터의 고효율 설계 방법 (Design Methodology of 500 W Wireless Power Transfer Converter for High Power Transfer Efficiency)

  • 김민아;박화평;정지훈
    • 전력전자학회논문지
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    • 제21권4호
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    • pp.356-363
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    • 2016
  • The design methodology of an adequate input voltage and magnetizing inductance to minimize reactive power is suggested to design a wireless power transfer (WPT) converter for high-power transfer efficiency. To increase the magnetizing inductance, the turn number of the WPT coil is increased, thus causing high parasitic resistance in the WPT coil. Moreover, the high coil resistance produces high conduction loss in the transfer and receive coils. Therefore, the analysis of conduction loss is used in the design of the WPT coil and the operating point of the WPT converter. To verify the proposed design methodology, the mathematical analysis of the conduction loss is presented by experimental results.

The Software Algorithm Design a Suitable Ultra-Low Power RF System

  • Kim, Jung-won;Choi, Ung-Se
    • 전기전자학회논문지
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    • 제12권1호
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    • pp.27-33
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    • 2008
  • The demand of wireless communication is increased rapidly due to the development of wireless communication systems, and many people have the great interest about the "RF system". The trend of the RF audio system is to design the system with less power consumption. In this paper, we explain the Software Algorithm Design of RF systems that is suitable for low power consumption.

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태양광발전 시스템의 일사량에 따른 전력 패턴 분석 (Analysis of Power Pattern According to Irradiation for Photovoltaic Generation System)

  • 이경섭
    • 전기학회논문지P
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    • 제58권4호
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    • pp.602-608
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    • 2009
  • In this thesis, output voltage, current and power of solar module were classified by irradiation from data of overall operating characteristics collected for one year in order to manage efficient photovoltaic generation system and deliver maximum power. In addition, from these data, correlations between irradiation of photovoltaic cell and amount of power given by photovoltaic cell was quantitatively examined to deduce optimization of the design and construction of photovoltaic generation system. As I-V characteristics according to a temperature range of 10~50[$^{\circ}C$], the area of I-V characteristics were increased with an increase in temperature. Since this area corresponds to the power, output power is thought to have increased with temperature. As output power characteristics according to a temperature range of 10~50[$^{\circ}C$], output power was increased with an increase in temperature. Since output power increases with temperature increase, the result corresponds well to the related equation on temperature and output power. As I-V characteristics according to a irradiation range of 100~900 [$W/m^2$], voltage and current were increased with an increase in irradiation. The result is thought of as an increase in output power with increasing irradiation. As output power characteristics according to a irradiation range of 100~900 [$W/m^2$], output power was increased with increasing irradiation. This result corresponds well to the related equation on irradiation and output power.

모듈레이팅 밸브 및 유압 클러치의 설계 변수가 전후진 파워시프트 변속기의 변속 품질에 미치는 영향 (Effect of Design Parameters of Modulating Valve and Hydraulic Clutch on Shift Quality of a Power Shuttle Transmission)

  • 김경욱;정병학;박영준
    • Journal of Biosystems Engineering
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    • 제28권3호
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    • pp.187-198
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    • 2003
  • This study was conducted to investigate the effect of design parameters of modulating valve and hydraulic clutch on the shift quality of a power shuttle transmission using a computer simulation. Computer simulation models of a hydraulic control system and a power shuttle drive train were developed and verified by an experimental power train in a laboratory. The software EASY5 was used for the modeling and simulation of the power shuttle transmission. Results of the study were summarized as follows: For a good shift quality. it is required to reduce the transient torque transmitted to the output shaft of the transmission as much as possible. This may be achieved by reducing the modulating time and clutch pressure. It was found that the design parameters most significantly affecting the modulating time and clutch pressure were the spring constant and displacement of a load piston of the modulating valve, and the spring constant and damping of the clutch piston. The modulating time decreased as the spring constant increased and increased as the displacement of the load piston decreased. The transient torque decreased as the modulating time increased. However their relationships were not always linear. As the damping decreased, both the modulating pressure and time decreased, which also resulted in a decrease in the transient torque. The spring constant of the clutch piston affected the modulating time and the peak transient torque. As the spring constant of the clutch increased, the peak transient torque decreased.