• Title/Summary/Keyword: Low-frequency range

검색결과 1,821건 처리시간 0.026초

Dynamic Characteristics of an Unsteady Flow Through a Vortex Tube

  • Kim, Chang-Soo;Sohn, Chang-Hyun
    • Journal of Mechanical Science and Technology
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    • 제20권12호
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    • pp.2209-2217
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    • 2006
  • Dynamic flow characteristics of a counter-flow vortex tube is investigated using hot-wire and piezoelectric transducer (PZT) measurements. The experimental study is conducted over a range of cold air outlet ratios (Y=0.3, 0.5, 0.7, and 1.0) and inlet pressure 0.15 MPa. Temperatures are measured at the cold air outlet and along the vortex tube wall. Hot-wire is located at cold outlet and PZT is installed at inner vortex tube by mounting at throttle valve. The cold outlet temperature results show that the swirl flow of vortex tube is not axisymmetric. The hot-wire and PZT results show that there exist two distinct kinds of frequency, low frequency periodic fluctuations and high frequency periodic fluctuations. It is found that the low frequency fluctuation is consistent with the Helmholtz frequency and the high frequency fluctuation is strongly related with precession oscillation.

UWB 주파수 합성기용 1 GHz 광 대역 시그마 델타 성긴 튜닝형 전압 제어 발진기 (A 1 GHz Tuning range VCO with a Sigma-Delta Modulator for UWB Frequency Synthesizer)

  • 남철;박안수;박준성;부영건;허정;이강윤
    • 대한전자공학회논문지SD
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    • 제47권8호
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    • pp.64-72
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    • 2010
  • 본 논문은 UWB주파수 합성기용 광대역 전압 제어 발진기로 시그마-델타 모듈레이션을 이용하여 미세한 성긴 튜닝을 구현하였다. 제안된 성긴 튜닝 방법은 위상 잡음 성능의 저하 없이 작은 유효 주파수 해상도를 제공한다. 3단계의 성긴 튜닝구조로 전압제어 발진기는 광대역과 미세 튜닝 단계를 동시에 구현한다. 본 전압 제어기를 포함한 주파수 합성기는 0.13 ${\mu}m$ CMOS공정으로 구현되었고, 5.8-6.8 GHz의 대역에 3.9 kHz의 유효 주파수 해상도를 갖는다. 측정된 위상 잡음은 1 MHz 오프셋에서 -108 dBc/Hz이고, 5.9 mW 전력 소모로 16.8 %의 튜닝 범위를 갖으며, 튜닝 범위를 갖는 Figure-of-merit(FoM)은 -181.58 dBc/Hz이다.

Multi-scale wireless sensor node for health monitoring of civil infrastructure and mechanical systems

  • Taylor, Stuart G.;Farinholt, Kevin M.;Park, Gyuhae;Todd, Michael D.;Farrar, Charles R.
    • Smart Structures and Systems
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    • 제6권5_6호
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    • pp.661-673
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    • 2010
  • This paper presents recent developments in an extremely compact, wireless impedance sensor node (the WID3, $\underline{W}$ireless $\underline{I}$mpedance $\underline{D}$evice) for use in high-frequency impedance-based structural health monitoring (SHM), sensor diagnostics and validation, and low-frequency (< ~1 kHz) vibration data acquisition. The WID3 is equipped with an impedance chip that can resolve measurements up to 100 kHz, a frequency range ideal for many SHM applications. An integrated set of multiplexers allows the end user to monitor seven piezoelectric sensors from a single sensor node. The WID3 combines on-board processing using a microcontroller, data storage using flash memory, wireless communications capabilities, and a series of internal and external triggering options into a single package to realize a truly comprehensive, self-contained wireless active-sensor node for SHM applications. Furthermore, we recently extended the capability of this device by implementing low-frequency analog-to-digital and digital-to-analog converters so that the same device can measure structural vibration data. The compact sensor node collects relatively low-frequency acceleration measurements to estimate natural frequencies and operational deflection shapes, as well as relatively high-frequency impedance measurements to detect structural damage. Experimental results with application to SHM, sensor diagnostics and low-frequency vibration data acquisition are presented.

자기센서용 Fe78B13Si9/PZT/Fe78B13Si9 적층구조 소자의 ME 특성 (Magnetoelectric Characteristics on Layered Fe78B13Si9/PZT/Fe78B13Si9 Composites for Magnetic Field Sensor)

  • 류지구;전성즙
    • 센서학회지
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    • 제24권3호
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    • pp.181-187
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    • 2015
  • The magnetoelectric characteristics on layered $Fe_{78}B_{13}Si_9/PZT$ and $Fe_{78}B_{13}Si_9/PZT/Fe_{78}B_{13}Si_9$($t_m=0.017$, 0.034mm) composites by epoxy bonding for magnetic field sensor were investigated in the low-frequency range and resonance frequency range. The optimal bias magnetic field $H_{dc}$ of these samples was about 23~63 Oe range. The Me coefficient of $Fe_{78}B_{13}Si_9/PZT/Fe_{78}B_{13}Si_9(t_m=0.034mm)$ composites reaches a maximum of $186mV/cm{\cdot}Oe$ at $H_{dc}=63Oe$, f=50 Hz and a maximum of $1280mV/cm{\cdot}Oe$ at $H_{dc}=63Oe$, resonance frequency $f_r=95.5KHz$. The output voltage shows linearity proportional to ac fields $H_{ac}$ and is about U=0~130.6 mV at $H_{ac}=0{\sim}7Oe$, f=50 Hz, U=0~12.4 V at $H_{ac}=0{\sim}10Oe$, $f_r=95.5KHz$(resonance frequency). The optimal frequency(f=50 Hz) of this sample is around the utility ac frequency(f=60 Hz). Therefore, this sample will allow for ac magnetic field sensor at utility frequency and low bias magnetic fields $H_{dc}$.

환경특성에 따른 안주애기박쥐(Vespertilio sinensis)의 반향정위 특징 (Characteristics of Echolocation Calls of the Parti-coloured Bat, Vespertilio sinensis, in Relation to Environment Type)

  • 정철운;한상훈
    • 한국환경과학회지
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    • 제24권3호
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    • pp.353-358
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    • 2015
  • In this study, we analyzed two types of echolocation calls used by the parti-coloured bat, Vespertilio sinensis. Bats were captured in the Naejangsan National Park in October 2013. Call sounds of hand-released bats were recorded at the location of capture within the National Park. We analyzed pulse duration (PD), pulse interval (PI), peak frequency (PF), maximum frequency ($F_{MAX}$), minimum frequency ($F_{MIN}$), and bandwidth (BW). V. sinensis emitted the different types of the echolocation calls depending on the surrounding environment. Frequency modulated-constant frequency (FM-CF) signal of audible range was emitted when they flew in the uncluttered space over the canopy. However, when flying in the cluttered space below the canopy, they only emitted FM signal. FM-CF signal is in the audible range (e.g., low frequency), and FM signal has a harmonic broadband frequency range of two. There were significant differences in PD, PI, PF, FMAX, FMIN, and BW between the calls emitted over and below the canopy. Considering the functional characteristics of FM and CF signals, we conclude that the foraging activity of V. sinensis was observed below the canopy, and recommend the use of FM signal and broadband as echolocation signals.

극 저주파 및 휴대전화 전자파 환경 변수를 고려한 새포막 활동 전위 모형 (A Computational Model for a Neuronal Membrane Considering the Extremely Low Frequency and Mobile Phone Frequency Electromagnetic Field Effect)

  • 서영준;이은주;안재목;이용업;황태금;이재선;서정선
    • 대한의용생체공학회:의공학회지
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    • 제24권4호
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    • pp.347-354
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    • 2003
  • 본 논문에서는 극 저주파와 휴대전화 전자파 (외부전자파) 환경의 영향이 고려된 세포막 활동 전위의 모의실험 모형을 제안하였다. Hodgkin과 Huxley 모형을 기초로 한 이 모형은 주사 전류 (injection current)에 전자파 효과를 적용하였으며 전자파의 주파수 영역에 대한 수치적 모의실험을 통하여 Strength-Duration 곡선을 얻는데 사용되었다 모의실험에서 사용된 수치해석 방법은 Runge-Kutta Fehlberg 방법이다. 모의실험에 고려된 주파수 영역은 1 Hz에서 100 Hz 사이와 이동통신에서 사용되는 900 티Hz의 주파수였다. 모의실험을 통하여 얻은 Strength-Duration 곡선은 Hodgkin과 Huxley가 제안한 방정식과 잘 일치함을 보여주었다.

페라이트-페라이트 복합형 전파흡수체의 거동 (Behavior of Ferrite-Ferrite composite on Electromagnetic Wave Absorber)

  • 김경용;김왕섭;강선모;정형진
    • 한국세라믹학회지
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    • 제28권7호
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    • pp.556-560
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    • 1991
  • The behavior of Ni-Zn ferrite/Mn-Zn ferrite composite electromagnetic absorber was investigated. The imaginary part of complex permeability of the composite was higher than that of either ferrite alone at all frequency range (50∼1400MHz) studied. The difference, which was pronounced in low frequency range, was reached the maximum value when the composite consisted of constituent ferrites with equal amount. Since the thickness in inversely proportional to the imaginary part of complex permeability for the ferrite absorber, it was possible to reduce the thickness of electromagnetic absorber by employing a composite of two different ferrites.

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Fully Differential 5-GHz LC-Tank VCOs with Improved Phase Noise and Wide Tuning Range

  • Lee, Ja-Yol;Park, Chan-Woo;Lee, Sang-Heung;Kang, Jin-Young;Oh, Seung-Hyeub
    • ETRI Journal
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    • 제27권5호
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    • pp.473-483
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    • 2005
  • In this paper, we propose two LC voltage-controlled oscillators (VCOs) that improve both phase noise and tuning range. With both 1/f induced low-frequency noise and low-frequency thermal noise around DC or around harmonics suppressed significantly by the employment of a current-current negative feedback (CCNF) loop, the phase noise in the CCNF LC VCO has been improved by about 10 dB at 6 MHz offset compared to the conventional LC VCO. The phase noise of the CCNF VCO was measured as -112 dBc/Hz at 6 MHz offset from 5.5 GHz carrier frequency. Also, we present a bandwidth-enhanced LC VCO whose tuning range has been increased about 250 % by connecting the varactor to the bases of the cross-coupled pair. The phase noise of the bandwidth-enhanced LC-tank VCO has been improved by about 6 dB at 6 MHz offset compared to the conventional LC VCO. The phase noise reduction has been achieved because the DC-decoupling capacitor Cc prevents the output common-mode level from modulating the varactor bias point, and the signal power increases in the LC-tank resonator. The bandwidth-enhanced LC VCO represents a 12 % bandwidth and phase noise of -108 dBc/Hz at 6 MHz offset.

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A 41dB Gain Control Range 6th-Order Band-Pass Receiver Front-End Using CMOS Switched FTI

  • Han, Seon-Ho;Nguyen, Hoai-Nam;Kim, Ki-Su;Park, Mi-Jeong;Yeo, Ik-Soo;Kim, Cheon-Soo
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제16권5호
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    • pp.675-681
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    • 2016
  • A 41dB gain control range $6^{th}$-order band-pass receiver front-end (RFE) using CMOS switched frequency translated impedance (FTI) is presented in a 40 nm CMOS technology. The RFE consists of a frequency tunable RF band-pass filter (BPF), IQ gm cells, and IQ TIAs. The RF BPF has wide gain control range preserving constant filter Q and pass band flatness due to proposed pre-distortion scheme. Also, the RF filter using CMOS switches in FTI blocks shows low clock leakage to signal nodes, and results in low common mode noise and stable operation. The baseband IQ signals are generated by combining baseband Gm cells which receives 8-phase signal outputs down-converted at last stage of FTIs in the RF BPF. The measured results of the RFE show 36.4 dB gain and 6.3 dB NF at maximum gain mode. The pass-band IIP3 and out-band IIP3@20 MHz offset are -10 dBm and +12.6 dBm at maximum gain mode, and +14 dBm and +20.5 dBm at minimum gain mode, respectively. With a 1.2 V power supply, the current consumption of the overall RFE is 40 mA at 500 MHz carrier frequency.

접수 전선 모델을 이용한 장비 받침대 모빌리티 평가 (Mobility Assessment of Equipment Foundation using Fluid-loaded Whole Ship Model)

  • 이동섭;조대승;김국현
    • 대한조선학회논문집
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    • 제51권3호
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    • pp.179-183
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    • 2014
  • The fluid loading effect has been investigated for the shipboard equipment foundation mobility with finite element model. For the purpose, two kinds of finite element models for 60m class ship have been developed: global and local model. The former is for low frequency range and the latter for middle frequency range. These finite element models contain added mass explaining fluid loading effect. Added mass has been implemented with virtual mass matrix derived from Laplace equation governing fluid surrounding ship hull. The mobility assessment result for diesel generator foundation of the objective model shows that the fluid loading effect should be considered, especially in low frequency range, to more accurately assess shipboard equipment foundation mobility.