• 제목/요약/키워드: Resonant coupling

검색결과 268건 처리시간 0.021초

Implementation of Wireless Power Transfer Circuit by Using Magnetic Resonant Coupling Method

  • Lho, Young-Hwan
    • 전기전자학회논문지
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    • 제23권1호
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    • pp.306-309
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    • 2019
  • Wireless charging is a technology of transmitting power through an air gap to an electrical load for the purpose of energy dissemination. Compared to traditional charging with code, wireless power charging has many benefits of avoiding the hassle from connecting cables, rendering the design and fabrication of much smaller devices without the attachment of batteries, providing flexibility for devices, and enhancing energy efficiency, etc. A transmitting coil and a receiving coil for inductive coupling or magnetic resonant coupling methods are available for the near field techniques, but are not for the far field one. In this paper, the wireless power transfer (WPT) circuit by using magnetic resonant coupling method with a resonant frequency of 13.45 Mhz for the low power system is implemented to measure the power transmission efficiency in terms of mutual distance and omnidirectional angles of receiver.

Wind-induced responses of Beijing National Stadium

  • Yang, Q.S.;Tian, Y.J.
    • Wind and Structures
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    • 제14권3호
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    • pp.239-252
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    • 2011
  • The wind-induced mean, background and resonant responses of Beijing National Stadium are investigated in this paper. Based on the concepts of potential and kinetic energies, the mode participation factors for the background and the resonant components are presented and the dominant modes are identified. The coupling effect between different modes of the resonant response and the coupling effect between the background and resonant responses are analyzed. The coupling effects between the background and resonant components and between different modes are found all negligible. The mean response is approximately analogous to the peak responses induced by the fluctuating wind. The background responses are significant in the fluctuating responses and it is much larger than the resonant responses at the measurement locations.

Design of Capacitive Power Transfer Using a Class-E Resonant Inverter

  • Yusop, Yusmarnita;Saat, Shakir;Nguang, Sing Kiong;Husin, Huzaimah;Ghani, Zamre
    • Journal of Power Electronics
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    • 제16권5호
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    • pp.1678-1688
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    • 2016
  • This paper presents a capacitive power transfer (CPT) system using a Class-E resonant inverter. A Class-E resonant inverter is chosen because of its ability to perform DC-to-AC inversion efficiently while significantly reducing switching losses. The proposed CPT system consists of an efficient Class-E resonant inverter and capacitive coupling formed by two flat rectangular transmitter and receiver plates. To understand CPT behavior, we study the effects of various coupling distances on output power performance. The proposed design is verified through lab experiments with a nominal operating frequency of 1 MHz and 0.25 mm coupling gap. An efficiency of 96.3% is achieved. A simple frequency tracking unit is also proposed to tune the operating frequency in response to changes in the coupling gap. With this resonant frequency tracking unit, the efficiency of the proposed CPT system can be maintained within 96.3%-91% for the coupling gap range of 0.25-2 mm.

Magnetic Field Analysis of Wireless Power Transfer via Magnetic Resonant Coupling or Electric Vehicle

  • Kesamaru, Katsumi
    • Journal of international Conference on Electrical Machines and Systems
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    • 제3권1호
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    • pp.83-87
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    • 2014
  • This paper describes the magnetic field analysis of wireless power transfer via magnetic resonant coupling. The wireless power transfer system for supplying power to electric vehicle is developed. The parameters of coil transfer system are simulated by the finite element method (FEM). Therefore the coil structure of power transfer system can be accurately analyzed. This paper deals with 3kW wireless transfer system.

무선 유도 및 공진 충전방식의 전송효율 연구 (A Study on Transmission Efficiency of Wireless Power Induction and Resonant Charging Methodologies)

  • 노영환
    • 전기전자학회논문지
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    • 제23권2호
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    • pp.747-750
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    • 2019
  • 웨어러블 디바이스는 일상생활에서 실질적으로 필수적이며 사용자들에게 편리하게 이용되고 건강관리와 의학 분야 등에 활용되고 있다. 전력분야에서 전원 배터리의 사용시간의 한계를 극복하고 효율적인 충전방법에 관한 많은 연구가 진행되고 있다. 무선전력전송은 전선을 사용하지 않고 무선으로 전기장을 부하에 전력을 전달하는 기술이다. 이 전송기술은 저 전력의 스마트폰에서부터 고 전력을 사용하는 철도 충전시스템까지 응용분야가 다양하다. 충전방식은 유도방법과 자기공진방법의 2 종류로 나누는데 자기공진주파수는 13.45 Mhz를 사용하였다. 본 연구에서는 전송효율을 측정 비교하기 위하여 2 종류의 하드웨어를 구현한 후 비교하는데 있다.

결합계수 해석에 의한 유도가열용 인버터의 공진회로 설계법 (A Resonant Circuit Design of the Inverter for Induction Heating by Analysis of the Coupling Coefficient)

  • 이광직;김주홍
    • 한국조명전기설비학회지:조명전기설비
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    • 제11권6호
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    • pp.90-95
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    • 1997
  • 고주파 유도가열을 위한 인버터의 공진회로 설계에서 인덕턴스 L의 작용과, 출력전달 요소로 사용된 변압기의 결합계수, 그리고 코일을 사용한 가열부하의 결합계수가 공진회로의 출력, 회로의 Q와 공진주파수에 큰 영향을 주고 있음을 등가회로를 도출하여 그 특성을 해석하였다. 또한 변압기를 테브난 등가회로로 구성할 경우, 변압기의 이차측 임피던스를 일차측 임피던스고 환산하면, 권선비 n$^2$에 비례 할 뿐만 아니라 결합계수 $K^2$에도 비례함을 도출하여 결합계수형 테브난 등가회로에 의한 정확성이 큰 인버터 공진회로 설계의 기초방식을 나타냈다.

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결합계수 및 공진 주파수 조절이 가능한 내장형 PIFA에 관한 연구 (A Study on Coupling Coefficient and Resonant Frequency Controllable Internal PIFA)

  • 이상현;이문우
    • 한국컴퓨터정보학회논문지
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    • 제15권10호
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    • pp.99-104
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    • 2010
  • 본 논문은 PIFA의 방사체와 접지면의 물리적 변화없이 안테나의 결합 계수와 공진 주파수를 조절할 수 있는 이동 통신 단말기용 내장형 안테나를 제안하였다. 제안된 안테나는 하나의 단락점에 추가된 인덕턴스에 따라 급전점과 단락점 사이의결합계수 뿐만 아니라 안테나의 공진 주파수도 조절한다. 제안된방법은 전계의 세기가 약한단락점에 인덕터를 연결하여 안테나의 성능 변화를 최소화 했다. PIFA의 단락점과 접지면 사이에 추가된 인덕터의 값이 0nH ~ 3.3nH로 변할 때 조절 가능한 공진 주파수 범위는 1650MHz ~ 1830MHz (약 180MHz)이고 인덕터의 값이 커질수록 안테나의 결합계수는 커진다. 이를 통하여 이동 통신 단말기의 형태 및 사용자의 환경에 따른 임피던스 및 공진 주파수의 변화를 전기적으로 조절하여 부정합에 의한 손실을 최소화했고 안테나 방사 성분의 어떠한 변형 없이 10%의 크기 감소효과를 얻을 수 있다. 1650MHz ~ 1830MHz의 주파수 영역에서 측정된 PIFA의 이득 감소는 0 ~ 3.3nH의 인덕터 값의 변화에 따라 0.93dB 이내이다.

원통형 유전체 공진기 필터 특성 연구 (The study of the characteristic of the cylindrical dielectric resonator filter)

  • 김주영;박도영;김종철;이기진
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 하계종합학술대회 논문집(1)
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    • pp.431-434
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    • 2002
  • In this paper, The resonant frequencies of any modes in the dielectric resonator filter is determined by numberical analysis. The theoretical analysis for the dielectric resonator filter used Ansoft HFSS. We designed the dielectric resonator filter with resonant frequency 4.5 GHz. We describe the characteristics of delivering Power to resonator in different shaped coupling loops. Tile resonant mode of T $E_{01{\delta}}$ and T $E_{01{\delta}}$ could be selected by the horizontal and the vertical coupling loop.p.

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무접점 전력용 변환기의 다중공진형 토폴로지 비교 (Comparison of Higher-Order Resonant Topologies for Contact-less Power Converter Systems)

  • 다니엘;박종후
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2014년도 전력전자학술대회 논문집
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    • pp.323-324
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    • 2014
  • A higher-order power converter topology for an extremely low coupling (less than 0.15) transformer with high efficiency and wide air-gap (23 mm) is presented in this paper. Among the typical resonant converter topologies for contact-less power transferring systems, Series-Series Resonant Converter (SSRC) and Series-Parallel Resonant Converter (SPRC) are widely used in number of power electronic applications. However, when coupling coefficient of a transformer is seriously low (k<0.5), the series-series resonant converter will possibly operate at short circuited condition because of the small magnetizing impedance. To solve this problem, a modified and improved topology of seventh-order resonant converter for contact-less power converter system is proposed and the results are presented.

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전기자동차의 유리를 통한 커패시티브 커플링 LLC 무선 전력 전송 컨버터 (Capacitive Coupling LLC Wireless Power Transfer Converter Through Glasses of Electric Vehicles)

  • 유영수;이강현
    • 전력전자학회논문지
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    • 제21권6호
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    • pp.542-545
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    • 2016
  • This work proposes a capacitive coupling-based wireless battery charging circuit that is built with vehicle glasses for electric vehicles. A capacitive coupling wireless power transfer offers many advantages, such as low metal impact and low energy transfer efficiency changes in accordance with changes in position. However, a large coupling capacitor is needed for high power transfer. Therefore, a new capacitive coupling-based wireless power transfer LLC resonant converter built with the glasses of an electric vehicle is proposed. The proposed converter is composed of coupling capacitors with glasses of an electric vehicle and two transformers for impedance transformation. The proposed LLC converter can transfer large power and obtain high efficiency with zero voltage switching. The validity and features of the proposed circuit is verified by experimental results with a 1.2 kW prototype.