• 제목/요약/키워드: gap coupling

검색결과 219건 처리시간 0.021초

4,7-Di-thiophen-2-yl-benzo[1,2,5]thiadiazole을 기본으로 한 고분자의 합성 및 광전변환 특성 (Synthesis and Photovoltaic Properties of Low Band Gap π-Cojugated Polymer Based on 4,7-Di-thiophen-2-yl-benzo[1,2,5]thiadiazole)

  • 신웅;유혜리;박정배;박상준;정미선;문명준;김주현
    • 공업화학
    • /
    • 제21권2호
    • /
    • pp.137-141
    • /
    • 2010
  • 4,7-Di-thiophen-2-yl-benzo(1,2,5)thiadiazole과 1,4-bis(dodecyloxy)-2,5-divinylbenzene을 Heck coupling 중합법을 이용하여 poly[4,7-Di-thiophen-2-yl-benzo(1,2,5)thiadiazole]-alt-1,4-bis(dodecyloxy)-2,5-divinylbenzene (PPVTBT) 공중합체를 합성하였다. 합성한 PPVTBT의 최대흡수파장과 band gap은 각각 550 nm와 1.74 eV이고 HOMO와 LUMO enegry level은 각각 -5.24 eV, -3.50 eV로 나타났다. 합성한 공중합체인 PPVTBT와 (6)-1-(3-(methoxycarbonyl)propyl)-{5}-1-phenyl[5,6]-$C_{61}$(PCBM)을 1 : 6의 중량비로 blend하여 제작한 소자의 효율은 AM 1.5 G, 1 sun 조건($100mA/cm^{2}$)에서 0.16%의 효율을 보였다. 그리고 소자의 Jsc (short circuit current), FF (fill factor)와 Voc (open circuit voltage)는 각각 $0.74mA/cm^{2}$, 31%, 0.71 V로 나타났다.

개선된 지향성을 갖는 마이크로스트립 방향성 결합기 설계 (A Design of Microstrip Directional Coupler with the Improved Directivity Characteristic)

  • 김철수;임종식;김동주;안달
    • 한국전자파학회논문지
    • /
    • 제15권6호
    • /
    • pp.548-553
    • /
    • 2004
  • 본 논문에서는 높은 지향성을 갖는 1∼3단까지의 마이크로스트립 방향성 결합기 구조를 제시하였다. 마이크로스트립 구조의 우, 기모드의 위상차에 의한 지향성 특성이 저하되는 구조적인 문제점을 개선하고자 결합선로의 입출력단에 위상 보상용 커패시턴스를 구현해 주어 격리특성을 개선하였다. 용량성 보상은 결합선로의 보조선로에 형성해준 개방 스터브를 이용하여 구현되었다. 따라서 개방 스터브에 의한 삽입손실의 증가, 입사전력제어에 영향을 받지 않는다. 위상 보상용 커패시터는 평면형으로 구현되어 제작이 편리하고 재현성이 우수하며 다른 소자와 연계가 쉬워 집적화를 가능하게 한다. 제작된 1∼3단 방향성 결합기는 마이크로스트립 구조임에도 불구하고 각각 30 ㏈, 27 ㏈, 25 ㏈의 높은 지향성을 얻을 수 있었다.

Cross-Shaped Magnetic Coupling Structure for Electric Vehicle IPT Charging Systems

  • Ren, Siyuan;Xia, Chenyang;Liu, Limin;Wu, Xiaojie;Yu, Qiang
    • Journal of Power Electronics
    • /
    • 제18권4호
    • /
    • pp.1278-1292
    • /
    • 2018
  • Inductive power transfer (IPT) technology allows for charging of electric vehicles with security, convenience and efficiency. However, the IPT system performance is mainly affected by the magnetic coupling structure which is largely determined by the coupling coefficient. In order to get this applied to electric vehicle charging systems, the power pads should be able to transmit stronger power and be able to better sustain various forms of deviations in terms of vertical, horizontal direction and center rotation. Thus, a novel cross-shaped magnetic coupling structure for IPT charging systems is proposed. Then an optimal cross-shaped magnetic coupling structure by 3-D finite-element analysis software is obtained. At marking locations with average parking capacity and no electronic device support, a prototype of a 720*720mm cross-shaped pad is made to transmit 5kW power at a 200mm air gap, providing a $1.54m^2$ full-power free charging zone. Finally, the leakage magnetic flux density is measured. It indicates that the proposed cross-shaped pad can meet the requirements of the International Commission on Non-Ionizing Radiation Protection (ICNIRP) according to the Australian Radiation Protection and Nuclear Safety Agency (ARPANSA).

낮은 커플링 변압기를 갖는 비접촉 전원의 개선된 고효율 공진 컨버터 (An Improved High Efficiency Resonant Converter for the Contactless Power Supply with a Low Coupling Transformer)

  • 공영수;김은수;이현관
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
    • /
    • 제54권1호
    • /
    • pp.33-39
    • /
    • 2005
  • Comparing with the conventional transformer without the air gap, a contactless transformer with the large air gap between the long primary winding and the secondary winding has increased leakage inductance and reduced magnetizing inductance. For transferring the primary power to the secondary one, the high frequency series resonant converter has been widely used for the contactless power supply system with the large air gap and the increased leakage inductance of the contactless transformer However, the high frequency series resonant converter has the disadvantages of the low efficiency and high voltage gain characteristics in the overall load range due to the large air gap and the circulating magnetizing current. In this paper, the characteristics of the high efficiency and unit voltage gain are revealed in the proposed three-level series-parallel resonant converter. The results are verified on the simulation based on the theoretical analysis and the 5kW experimental prototype.

축류형 인공심장의 자기베어링 제어를 위한 와전류 센서 시스템 개발 (A Development of Eddy Current Sensor System for An Axial-flow type Blood Pump with The Magnetic Bearing)

  • 안치범;문기철;정기석;남경원;이정주;선경
    • 대한의용생체공학회:의공학회지
    • /
    • 제28권2호
    • /
    • pp.310-315
    • /
    • 2007
  • The axial-flow type blood pump(XVAD) which has been developed in our group consists of mechanical parts (an impeller, a diffuser and a flow straightener) and electrical parts (a motor and a magnetic bearing). The magnetic bearing system fully levitates the impeller to remove mechanical coupling with other parts of the pump with constant gap, which needs non-contact type gap sensing. Conventional gap sensors are too large to be adopted to the implantable axial -flow type blood pump. Thus, in this paper, the compact eddy current type gap sensor system proper for the implantable axial-flow type blood pump was developed and its performance was evaluated in vitro. The developed eddy current type gap sensor system is a transformer type and has a differential probe. Sensor coil(probe) has small dimensions(6 mm diameter, 2 mm thickness) and its optimal inductance was determined as 0.068 mH for the measurement range of $0\sim3mm$. It could be manufactured with 130 turns of the 0.04 mm diameter copper coil. The characteristics of the developed eddy current type gap sensor system was evaluated by in vitro experiment. At experiment, it showed satis(actory performance to apply to the magnetic bearing system of the XVAD. It could measure the gap up to 3mm, but the linearity was decreased at the range of $1.8\sim3.0mm$. Moreover, it showed no difference in different media such as the water and the blood at the temperature range of $35\sim40^{\circ}C$.

Improvement of the Beam-Wave Interaction Efficiency Based on the Coupling-Slot Configuration in an Extended Interaction Oscillator

  • Zhu, Sairong;Yin, Yong;Bi, Liangjie;Chang, Zhiwei;Xu, Che;Zeng, Fanbo;Peng, Ruibin;Zhou, Wen;Wang, Bin;Li, Hailong;Meng, Lin
    • Journal of the Korean Physical Society
    • /
    • 제73권9호
    • /
    • pp.1362-1369
    • /
    • 2018
  • A method aimed at improving the beam-wave interaction efficiency by changing the coupling slot configuration has been proposed in the study of extended interaction oscillators (EIOs). The dispersion characteristics, coupling coefficient and interaction impedance of the high-frequency structure based on different types of coupling slots have been investigated. Four types of coupled cavity structures with different layouts of the coupling slots have been compared to improve the beam-wave interaction efficiency, so as to analyze the beam-wave interaction and practical applications. In order to determine the improvement of the coupling slot to a coupled cavity circuit in an EIO, we designed four nine-gap EIOs based on the coupled cavity structure with different coupling slot configurations. With different operating frequencies and voltages takes into consideration, beam voltages from 27 to 33 kV have been simulated to achieve the best beam-wave interaction efficiency so that the EIOs are able to work in the $2{\pi}$ mode. The influence of the Rb and the ds on the output power is also taken into consideration. The Rb is the radius of the electron beam, and the ds is the width of the coupling slot. The simulation results indicate that a single-slot-type EIO has the best beam-wave interaction efficiency. Its maximum output power is 2.8 kW and the efficiency is 18% when the operating voltage is 31 kV and electric current is 0.5 A. The output powers of these four EIOs that were designed for comparison are not less than 1.7 kW. The improved coupling-slot configurations enables the extended interaction oscillator to meet the different engineering requirements better.

VCR 주행장치의 2축 플랜지 반력 측정장치 개발 (Two-Axis Force Rransducer for Measuring Flange Reaction Forces in the Tape Transport of VCR)

  • 주진원;김승환;김갑순;이경원
    • 대한기계학회논문집A
    • /
    • 제20권7호
    • /
    • pp.2213-2222
    • /
    • 1996
  • This paper presents the design process and evaluaation results of a two-axis force transducer for measuring flange reaction forces. A double-cantilever beam structure is used as a sensing element, and its optimal configuration is determined based on the derived strain equations to maximize the sensitivity and minimize the regid body displacements. To reduce the coupling errors between two-axis forces, strain distributions by finite elemetns analysis are utilized and the Wheaststone bridge cricuits composed of strain gages are built such that the output voltage should be zero, although strains of four strain gages are not zero. Calibration test shows that the two-azxis force transducer developed in this paper is useful in measuring flange reaction forces within the coupling error of 5.53%.

Horizontal hydrodynamic coupling between shuttle tanker and FPSO arranged side-by-side

  • Wang, Hong-Chao;Wang, Lei
    • Ocean Systems Engineering
    • /
    • 제3권4호
    • /
    • pp.275-294
    • /
    • 2013
  • Side-by-side offloading operations are widely utilized in engineering practice. The hydrodynamic interactions between two vessels play a crucial role in safe operation. This study focuses on the coupled effects between two floating bodies positioned side-by-side as a shuttle tanker-FPSO (floating production, storage and offloading) system. Several wave directions with different side-by-side distances are studied in order to obtain the variation tendency of the horizontal hydrodynamic coefficients, motion responses and mean drift forces. It is obtained that the coupled hydrodynamics between two vessels is evidently distinguished from the single body case with shielding and exaggerating effects, especially for sway and yaw directions. The resonance frequency and the peak amplitude are closely related with side-by-side separation distance. In addition, the horizontal hydrodynamics of the shuttle tanker is more susceptible to coupled effects in beam waves. It is suggested to expand the gap distance reasonably in order to reduce the coupled drift forces effectively. Attention should also be paid to the second peaks caused by hydrodynamic coupling. Since the horizontal mean drift forces are the most mainly concerned forces to be counteracted in dynamic positioning (DP) system and mooring system, prudent prediction is beneficial in saving consumed power of DP system and reducing tension of mooring lines.

A High Isolation 4 by 4 MIMO Antenna for LTE Mobile Phones using Coupling Elements

  • Lee, Won-Woo;Yang, Hyung-kyu;Jang, Beakcheol
    • KSII Transactions on Internet and Information Systems (TIIS)
    • /
    • 제11권12호
    • /
    • pp.5745-5758
    • /
    • 2017
  • In this paper, we develop a simple but very effective 4 by 4 Multiple-Input Multiple-Output (MIMO) antenna system for mobile phones consisting of different types of antennas to achieve low correlation property at the frequency ranges of 1710 to 2170 MHz, which covers wide LTE service bands, from band 1 to band 4. The proposed antenna system consists of two pair of antennas. Each pair consists of a planar inverted-F antenna (PIFA) and a coupling antenna which has the property of the loop. The use of two different antenna types of IFA and a coupling achieves high isolation. Proposed antenna system occupies relatively small area and positions at the four corners of a printed circuit board. The gap between the two antennas is 4 mm, in order to realize the good isolation performance. To evaluate the performance of our proposed antenna system, we perform various experiments. The proposed antenna shows a wide operating bandwidth greater than 460 MHz with isolation between the feeding ports higher than 17.5-dB. It also shows that the proposed antenna has low Envelop Correlation Coefficient (ECC) values smaller than 0.08 over the all desired frequency tuning ranges.

Feasible approach of contactless power transfer technology combined with HTS coils based on electromagnetic resonance coupling

  • Chung, Yoon Do;Yim, Seong Woo;Hwang, Si Dole
    • 한국초전도ㆍ저온공학회논문지
    • /
    • 제15권1호
    • /
    • pp.40-44
    • /
    • 2013
  • The contactless power transfer (CPT) systems have been recently gaining popularity widely since it is an available option to realize the power delivery and storage with connector-free devices across a large air gap. Especially, the CPT with electromagnetic resonance coupling method is possible to exchange energy within 2 m efficiently. However, the power transfer efficiency of CPT in commercialized products has been limited because the impedance matching of coupled coils is sensitive. As a reasonable approach, we combined the CPT system with HTS wire technology and called as, superconducting contactless power transfer (SUCPT) system. Since the superconducting coils have an enough current density, the superconducting antenna and receiver coils at CPT system have a merit to deliver and receive a mass amount of electric energy. In this paper, we present the feasibility of the SUCPT system and examine the transmission properties of SUCPT phenomenon between room temperature and very low temperature at 77 K as long as the receiver is within 1.0 m distance.