• Title/Summary/Keyword: 가변주파수

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Design of Variable Cutoff Frequency Two-Dimensinal FIR Filters (가변차단 주파수 2차원FIR필터의 설계)

  • Sang-Uk Lee
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.32 no.12
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    • pp.427-434
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    • 1983
  • Singular Value Decomposition of 2-D Finite Impulse Response was used to design a variable cutoff 2-D FIR filters. Basically this approach allows to use 1-D techniques while dealing with 2-D filters. In this paper, our aim is to provide away of easily tuning 2-D FIR filters. For example, one would like to adjust interactively the cutoff frequency of a 2-D Circular Symmetric low-pass filter on an image processing system. The decomposition of 2-D FIR filters along with techniques available for tuning 1-D FIR filters allows such adjustment. Several design examples are shown.

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A Study on Characteristics of Frequency Tunable Resonator using the Donut Type Defected Ground Structure (도넛형 결함접지면 구조를 이용한 주파수 가변 공진기 특성 연구)

  • Kim, Girae
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.2 no.4
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    • pp.59-64
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    • 2009
  • In this paper, we represent characteristics and equivalent circuit of donut type resonator of defected ground structure (DGS), and can control resonant frequency with chip capacitor. In General, DGS operates like with parallel LC resonator. We found out variation of resonance frequency when capacitor is placed on slot of DGS. If the chip capacitor replace with varactor diode, the resonance frequencies can be controlled by voltage. This tualable resonator can apply to voltage controlled oscillator and tunable bandpass filter.

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Time Domain Multiple-channel Signal Processing Method for Converting the Variable Frequency Band (가변 주파수 변환을 위한 시간 영역 다중채널 신호처리 알고리즘)

  • Yoo, Jae-Ho;Kim, Hyeon-Su;Lee, Kyu-Ha;Lee, Jung-Sub;Chung, Jae-Hak
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.35 no.1A
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    • pp.71-79
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    • 2010
  • The algorithm of multiple channel signal processing requires the flexibility of variable frequency band, efficient allocation of transmission power, and flexible frequency band reallocation to satisfy various service types which requires different transmission rates and frequency band. This paper proposes an improved multiple channel signal processing for converting the frequency band of multiple carrier signals efficiently using a window function and DFT in the time domain. In contrast to the previous algorithm of multiple-channel signal processing performing band-pass signal processing in the frequency domain, the proposed algorithm is a method of block signal processing using a window function in the time domain. In addition, the complexity of proposed algorithm of the window function is lower than that of the previous algorithm performing signal processing in the frequency domain, and it performs the frequency band transform efficiently. The computer simulation result shows that the perfect reconstruction of output signal and the flexible frequency band reallocation is performed efficiently by the proposed algorithm.

High Efficiency Frequency Tunable Inverse Class-E Amplifier (고효율 주파수 가변 역 E-급 증폭기)

  • Kim, Young
    • Journal of Advanced Navigation Technology
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    • v.14 no.2
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    • pp.176-182
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    • 2010
  • This paper proposes that an inverse class-E amplifier is used a tunable parallel resonator at output port in order to maintain a high power-added efficiency(PAE) and output power with wide frequency ranges. A tunable circuit has a constant Q factor at operating frequency ranges and because of using varactor diode, the inductor and capacitor values of resonator can be changed. Also, the inductance value for zero-current switching (ZCS) is implemented a lumped element and the capacitance value is made a distributed element for phase compensation. The inverse class E amplifier using tunable parallel resonator is obtained to deliver 25dBm output power and achieve maximum power added efficiency(PAE) of 75% at 65-120MHz frequency ranges.

Design of Frequency-Tunable Microstrip Filter Using Triple-Mode Substrate Integrated Waveguide (SIW) Structure (3중모드 기판집적 도파관(SIW) 구조를 이용한 주파수 가변 마이크로스트립 필터 설계)

  • Kyeong-Min Na;Dong-Woo Kim;Soon-soo Oh
    • Journal of IKEEE
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    • v.28 no.1
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    • pp.72-77
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    • 2024
  • In this paper, a triple-mode frequency-tunable filter is proposed to meet the recent demands of various frequency bands of mobile communication services. This filter has a tunable structure that can adjust the resonance frequency using a variable capacitor. To improve the quality factor, a SIW(Substrate Integrated Waveguide) structure was introduced and a structure that induces three resonance modes was implemented through a circular hole located in the center. The change in electric field distribution and resonance frequency by the variable capacitor was simulated using HFSS, and the change in electric field distribution and resonance frequency of Triple Mode mode was confirmed.

電壓型 Inverter

  • 정연택
    • 전기의세계
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    • v.25 no.4
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    • pp.38-41
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    • 1976
  • 최근 전력용 반도체소자를 이용하여 전력의 변환과 제어를 하는 Power electronics가 많은 발전을 하고 있는데 이것을 가장 많이 이용하는 분야는 전동기의 가변속 구동이다. 이중에서 교류전동기의 구동을 위한 가변 주파수 제어장치의 구성을 보면 전압형 Inverter, 전류형 Inverter 및 Cycloconverter등에 의한 것으로 대별된다. 교류전동기의 가변주파수 제어는 농형유도전동기의 경우가 가장 많고 동기전동기는 약간 있는 정도이다. 여기서는 이러한 제어에 쓴이는 전압형 Inverter의 대표적인 회로와 최근에 개발된 펄스폭 제어 Inverter의 동작 원리 및 특징등에 대하여 소개하고저 한다.

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업계동정

  • Korea Electrical Manufacturers Association
    • NEWSLETTER 전기공업
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    • no.97-13 s.182
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    • pp.30-35
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    • 1997
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주파수 동기화 구현을 위한 가변 발진기 회로

  • Jang, Yu-Jin;Chun, Jeog-In;Kong, Seung-Kon;Shin, Sang-Chul;Goo, Bo-Nam;Gong, Jung-Chul;Min, Byoung-Own
    • Proceedings of the KIPE Conference
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    • 2008.06a
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    • pp.532-534
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    • 2008
  • LCD TV용 Backlight Unit을 구동하는 Inverter 및 SMPS용 IC의 발진기(OSC)는 구동 주파수를 결정하는 블록이다. 종래에는 미리 결정된 전류값과 충방전용 시정수에 의하여 스위칭 주파수가 고정 되어 있다. 이에 반하여 외부에서 스위칭 주파수를 가변하고자 할 때, 신호의 입력에 따라 스위칭 주파수가 가변 가능한 발진기(Oscillator) 블록을 제안한다.

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Design of a High Power Frequency Tuneable Resonator for Wireless Power Transfer (무선 전력 전송용 고출력 주파수 가변 공진기 설계)

  • Park, Jaesu;Choi, Jaehoon
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.24 no.3
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    • pp.352-355
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    • 2013
  • In this paper, a high power tuneable resonator for a wireless power transfer system based on magnetic resonance is proposed. A spiral structure is used for a self-resonant coil and tuneable trimmer capacitors are added at the edges of resonant coils such that the frequency can be easily tuned. 3D simulation tools and equivalent circuit modeling method are used for predicting self-resonant frequency and scattering parameters according to the change of capacitor values. From the measurement of the prototype WPT system, the resonant frequency could be controlled from 3.0 MHz to 4.5 MHz and the transmission efficiency way over 50 % when the distance between transmitting coil and receiving coil was 160 mm.

Design of Variable Active Inductor with Feedback LC-Resonator for Improvement of Q-Factor and Tuning of Operating Frequency (Q 지수의 개선과 동작 주파수 조절을 위해 궤환 LC-공진기를 이용한 가변 능동 인덕터의 설계)

  • Seo, Su-Jin;Ryu, Nam-Sik;Choi, Heung-Jae;Jeong, Yong-Chae
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.19 no.3
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    • pp.311-320
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    • 2008
  • In this paper, a new variable active inductor using a conventional grounded active inductor with feedback variable LC-resonator is proposed. The grounded active inductor is realized by the gyrator-C topology and the variable LC-resonator is realized by the low-Q spiral inductor and varactor. This variable LC-resonator can compensate the degradation of Q-factor due to parasitic capacitance of a transistor, and the frequency range with high Q-factor is adjustable by resonance frequency adjustment of LC-resonator. The fabricated variable active inductor with Magnachip $0.18{\mu}m$ CMOS process shows that high-Q frequency range can be adjusted according to varactor control voltage from 4.66 GHz to 5.45 GHz and Q-factor is higher than 50 in the operating frequency ranges. The measured inductance at 4.9GHz can be controlled from 4.12 nH to 5.97 nH by control voltage.