• 제목/요약/키워드: Microwave energy transmission

검색결과 29건 처리시간 0.028초

Power Beaming and Its Application to Aerospace Propulsion

  • Komurasaki, Kimiya
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2008년 영문 학술대회
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    • pp.881-885
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    • 2008
  • Wireless energy transmission system to a Micro Aerial Vehicle is now under development. A 5.8 GHz microwave phased array antenna and rectenna array receiver have been developed. An electric motor on a circling MAV model was driven by the transmitted power. In addition, 140GHz millimeter-waves of up to 1MW was beamed to a "Microwave Rocket" and its thrusting has been successfully demonstrated.

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고효율 마이크로파 무선 전력 수신 집적회로 설계 및 구현 (A Design of High Efficiency Microwave Wireless Power Acceptor IC)

  • 정원재;정효빈;김상규;장종은;박준석
    • 전기학회논문지
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    • 제62권8호
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    • pp.1125-1131
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    • 2013
  • Wireless power transmission technology has been studied variety. Recently, wireless power transmission technology used by resonance and magnetic induction field is applied to various fields. However, magnetic resonance and inductive coupling are have drawbacks - power transmission distance is short. Microwave transmission and accept techniques have been developed to overcome short distance. However, improvement in efficiency is required. This paper, propose a high-efficiency microwave energy acceptor IC(EAIC). Suggested EAIC is consists of RF-DC converter and DC-DC converter. Wide Input power range is -15 dBm ~ 20 dBm. And output voltage is boosted up to 5.5 V by voltage boost-up circuit. EAIC can keep the output voltage constant. Available efficiency of RF-DC converter is 95.5 % at 4 dBm input. And DC-DC efficiency is 94.79 % at 1.1 mA load current. Fully EAIC efficiency is 90.5 %.

전력계통 연계를 대비한 마이크로파 무선전력 송수신기 에레이 구성 고찰 (Array Topology of Microwave Wireless Power Transmission on Electronic Power System)

  • 이동호
    • 한국위성정보통신학회논문지
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    • 제10권1호
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    • pp.88-91
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    • 2015
  • 무선전력전송은 별도의 전송선로 없이 에너지를 전달하는 기법으로, 기존의 무선통신에서의 신호가 아닌 에너지 자체의 전달을 목적으로 한다. 원거리 마이크로파 전력송수신기는 RF 발진회로, 고이득 안테나, 정류회로 등으로 구성되는데, 상용화를 위해서는 저렴한 고출력 발진회로 및 설치가 용이한 안테나 설계의 어려움이 해결되어야할 과제이다. 이것 때문에 발진회로와 개별 안테나가 각각 연결된 에너이로 구성된 시스템 채택이 예상된다. 본 고찰는 무선전력 송수신기의 전력계통의 영향 분석 일환으로 수행하였다.

실내 마이크로파 배전용 완전 정합형 전력 분배 스위치의 설계 (Matching-type Power Dividing Switch for Low Reflection in Indoor Microwave Power Distribution)

  • 최영규
    • 전기학회논문지
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    • 제62권6호
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    • pp.792-797
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    • 2013
  • In a indoor microwave power distribution system, matching-type power dividing switch is proposed and designed with a various power dividing ratio. A matching coaxial cable probe is used behind the output probe for the reflecting power absorption. Reflecting characteristics of the matching coaxial cable probe are calculated by analyzing the S-parameter of this structure. Newly proposed matching-type switch shows a very low return loss less than -30dB at the operating frequency of 2.45GHz with a dividing power ratio of 50.2%. The simulated results by use of 3-stage power divider shows a good agreement with the theoretical estimation for the various combination of the different switching ratio.

마이크로파 전력전송시스템의 프로토타입 설계 및 구현 (A Design and Implementation of a Prototype Microwave Power Transmission System)

  • 박민우;박진우;백승진;구자경;임종식;안달
    • 한국산학기술학회논문지
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    • 제10권9호
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    • pp.2227-2235
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    • 2009
  • 본 논문에서는 마이크로파를 이용하는 무선 전력전송시스템의 간단한 구성과 측정한 동작 특성을 제시한다. 마이크로파 전력전송시스템은 건물 안, 회의실과 같은 좁은 공간내에서 저전력을 이동 단말 기기에 공급하는 것을 목표로 한다. 실험실 수준에서 프로토타입 시스템의 제작 및 측정이 용이하도록 각 구성 회로 소자들을 직접 설계 및 제작, 측정하였는데, 마이크로파 발진기, 고출력증폭기, 마이크로스트립 패치 안테나, 저역통과여파기, 검파 및 정류회로이다. 마이크로파 무선전력전송 시스템은 중심주파수 2.4GHz에서 고정 전력 29.3dBm을 생성하여 전송하고, 수신측 패치 안테나를 수신한 전력을 정류기를 통해서 DC 전력으로 변환한다. 두 안테나간 이격 거리에 따라 측정되는 DC 전압값의 차이를 제시하고, 각 거리별로 수신측에 전달되는 DC전력량이 서로 다름을 측정값으로 제시한다.

Wireless Energy Supply for a MAV Propulsion System

  • Shimane, Eri;Komatsu, Shuhei;Komaru, Takashi;Komurasaki, Kimiya;Arakawa, Yoshihiro
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2008년 영문 학술대회
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    • pp.862-865
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    • 2008
  • Wireless energy supply for an MAV propulsion system using microwave was developed. This system consists of three sub system; the transmitter system, the rectenna system, and the tracking system. In the transmitter system five horn antennas were used as the antenna elements for the phased array system and both the beam divergence and steering angle was about 9deg. Eight rectennas were arrayed in parallel to obtain enough power to drive the electric motor on the MAV(the voltage was 250mV and the current was 6.8mA) in rectenna system. In tracking system two units of antenna system with leaf pattern which received the linearly-polarized wave despite the MAV yaw angle were set in each axis(x, y) for tracking an MAV in a 2-Dimentional space. And three output voltages $V_{com},\;V_1$ and $V_2$ were loaded in the PC to detect if the distance between transmitter and receiver was not constant. Finally when the microwave beam was steered by the phased array system the output voltage from rectenna was measured at 62cm while the MAV circled around above the transmitter system.

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Effects of Atmospheric Pressure Microwave Plasma on Surface of SUS304 Stainless Steel

  • Shin, H.K.;Kwon, H.C.;Kang, S.K.;Kim, H.Y.;Lee, J.K.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.268-268
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    • 2012
  • Atmospheric pressure microwave induced plasmas are used to excite and ionize chemical species for elemental analysis, for plasma reforming, and for plasma surface treatment. Microwave plasma differs significantly from other plasmas and has several interesting properties. For example, the electron density is higher in microwave plasma than in radio-frequency (RF) or direct current (DC) plasma. Several types of radical species with high density are generated under high electron density, so the reactivity of microwave plasma is expected to be very high [1]. Therefore, useful applications of atmospheric pressure microwave plasmas are expected. The surface characteristics of SUS304 stainless steel are investigated before and after surface modification by microwave plasma under atmospheric pressure conditions. The plasma device was operated by power sources with microwave frequency. We used a device based on a coaxial transmission line resonator (CTLR). The atmospheric pressure plasma jet (APPJ) in the case of microwave frequency (880 MHz) used Ar as plasma gas [2]. Typical microwave Pw was 3-10 W. To determine the optimal processing conditions, the surface treatment experiments were performed using various values of Pw (3-10 W), treatment time (5-120 s), and ratios of mixture gas (hydrogen peroxide). Torch-to-sample distance was fixed at the plasma edge point. Plasma treatment of a stainless steel plate significantly affected the wettability, contact angle (CA), and free energy (mJ/$m^2$) of the SUS304 surface. CA and ${\gamma}$ were analyzed. The optimal surface modification parameters to modify were a power of 10 W, a treatment time of 45 s, and a hydrogen peroxide content of 0.6 wt% [3]. Under these processing conditions, a CA of just $9.8^{\circ}$ was obtained. As CA decreased, wettability increased; i.e. the surface changed from hydrophobic to hydrophilic. From these results, 10 W power and 45 s treatment time are the best values to minimize CA and maximize ${\gamma}$.

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Facile Fabrication of Carbon Nanotubes@CuO Composites by Microwave Method

  • Kim, Tae Hyeong;Cha, Dun Chan;Jeong, Jung-Chae;Lee, Seunghyun
    • Elastomers and Composites
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    • 제56권3호
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    • pp.113-116
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    • 2021
  • In this study, we report a facile fabrication of multi-walled carbon nanotubes (MWCNTs)-CuO composites synthesized by a microwave method using MWCNTs and copper oxide (CuO). The number of copper hydrate precursors affect the size and number of CuO domains formed along the MWCNTs in the composites. The domain size is controllable from 239 nm to 348 nm. The composites are characterized by transmission electron microscopy, energy dispersive spectrometry, X-ray diffraction (XRD), Raman spectroscopy, and UV-Vis spectroscopy. The CuO produced in the composites is confirmed to be tenorite with a monoclinic crystal structure through the XRD patterns of (-111), (111) and (-202).

Evolution pathway of CZTSe nanoparticles synthesized by microwave-assisted chemical synthesis

  • Reyes, Odin;Sanchez, Monica F.;Pal, Mou;Llorca, Jordi;Sebastian, P.J.
    • Advances in nano research
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    • 제5권3호
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    • pp.203-214
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    • 2017
  • In this study we present the reaction mechanism of $Cu_2ZnSnSe_4$ (CZTSe) nanoparticles synthesized by microwave-assisted chemical synthesis. We performed reactions every 10 minutes in order to identify different phases during quaternary CZTSe formation. The powder samples were analyzed by x-ray diffraction (XRD), Raman spectroscopy, energy dispersive spectroscopy (EDS), X-ray photoelectron spectroscopy (XPS) and transmission electron microscopy (TEM). The results showed that in the first minutes copper phases are predominant, then copper and tin secondary phases react to form ternary phase. The quaternary phase is formed at 50 minutes while ternary and secondary phases are consumed. At 60 minutes pure quaternary CZTSe phase is present. After 60 minutes the quaternary phase decomposes in the previous ternary and secondary phases, which indicates that 60 minutes is ideal reaction time. The EDS analysis of pure quaternary nanocrystals (CZTSe) showed stoichiometric relations similar to the reported research in the literature, which falls in the range of Cu/(Zn+Sn): 0.8-1.0, Zn/Sn: 1.0-1.20. In conclusion, the evolution pathway of CZTSe synthesized by this novel method is similar to other synthesis methods reported before. Nanoparticles synthesized in this study present desirable properties in order to use them in solar cell and photoelectrochemical cell applications.

마이크로웨이브를 이용한 고분자 전해질 연료전지용 복합 탄소 촉매 지지체 (ACF/Graphene)의 합성과 전기화학적 거동 (Synthesisand Electrochemical Behaviors of Hybrid Carbon (ACF/Graphene) as Supports by Microwaves-irradiation Method for Polymer Exchange Membrane Fuel Cells (PEMFC))

  • 조용일;전유권;박대환;전소미;김태언;오경석;설용건
    • 한국수소및신에너지학회논문집
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    • 제24권2호
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    • pp.142-149
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    • 2013
  • Carbon materials are mainly used as catalyst supports for polymer exchange membrane fuel cell (PEMFC). Catalyst supports are required specific characteristics of the carbon materials, such as large surface area and high electrical conductivity. Attempted were to improve electrical conductivity and to maintain high surface area of carbon materials using a microwave treatment. Microwave treatment, as a relatively new technique, takes short reaction time and reduce the consumption of the gases used for carbon treatment compared to a traditional heat treatment. Hybrid carbon (ACF/Graphene) as catalyst supports by microwave-irradiation method for PEMFC increase the cell performance because of increased electrical conductivity resulting in triple-phase contact and reduced the interfacial resistance. Scanning electron microscopy (SEM), transmission electron microscopy (TEM) and X-Ray Diffraction (XRD) were employed to analyze carbon materials. The performance of microwave-treated carbon materials was evaluated by measuring current-voltage (I-V) characteristics and electrode impedance.