• 제목/요약/키워드: complex impedance

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목재단면(木材斷面)의 흡음계수(吸音係數)와 음향(音響)임피이던스 (Acoustic Absorption Coefficient and Impedance of Wood Sections)

  • 홍병화
    • Journal of the Korean Wood Science and Technology
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    • 제17권2호
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    • pp.26-33
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    • 1989
  • The acoustic absorption coefficient and acoustic impedance of 5 species of softwood(sonamoo, sam namoo, gusang namoo, hwaback, sitka spruce) and 5 species of hardwood (Mulgusul namoo, Italian popular, white meranti, red meranti, kalantas) were measured by the standing wave method. which is simple in the setup and gives more accurate result than does any other measuring method. The dependence of the absorption coefficient and complex acoustic impedance on the wood sections. thickness of the sample itself and the back air gap was investigated experimentally in the frequency range from 200Hz to 1800Hz, and the result are as follows: 1. The acoustic absorption coefficient of wood sections was higher on the cross section than radial and tangential sections. 2) The acoustic absorption coefficient were higher in the frequency range from 400Hz to 600Hz, but decreased in the frequency above 600Hz. 3. The genenal tendency of the variation of the normal acoustic impedance was increased according to the frequency. 4. The acoustic absortion coefficient was increased in the to 7mm-thick sample and decreased in 9mm-thick sample. 5. The higher acoustic absorption coefficient was shown in the case with the backing an gap than in the case without the gap.

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Detection for folding of the thrombin binding aptamer using label-free electrochemical methods

  • Cho, Min-Seon;Kim, Yeon-Wha;Han, Se-Young;Min, Kyung-In;Rahman, Md. Aminur;Shim, Yoon-Bo;Ban, Chang-Ill
    • BMB Reports
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    • 제41권2호
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    • pp.126-131
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    • 2008
  • The folding of aptamer immobilized on an Au electrode was successfully detected using label-free electrochemical methods. A thrombin binding DNA aptamer was used as a model system in the presence of various monovalent cations. Impedance spectra showed that the extent to which monovalent cations assist in folding of aptamer is ordered as $K^+$ > $NH_4^+$ > $Na^+$ > $Cs^+$. Our XPS analysis also showed that $K^+$ and $NH_4^+$ caused a conformational change of the aptamer in which it forms a stable complex with these monovalent ions. Impedance results for the interaction between aptamer and thrombin indicated that thrombin interacts more with folded aptamer than with unfolded aptamer. The EQCM technique provided a quantitative analysis of these results. In particular, the present impedance results showed that thrombin participates a folding of aptamer to some extent, and XPS analysis confirmed that thrombin stabilizes and induces the folding of aptamer.

Structural and electrical properties of lead free ceramic: Ba(Nd1/2Nb1/2)O3

  • Nath, K. Amar;Prasad, K.;Chandra, K.P.;Kulkarni, A.R.
    • Advances in materials Research
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    • 제2권2호
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    • pp.119-131
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    • 2013
  • Impedance and electrical conduction studies of $Ba(Nd_{1/2}Nb_{1/2})O_3$ ceramic prepared using conventional high temperature solid-state reaction technique are presented. The crystal symmetry, space group and unit cell dimensions were estimated using Rietveld analysis. X-ray diffraction analysis indicated the formation of a single-phase cubic structure with space group $Pm\bar{3}m$. Energy dispersive X-ray analysis and scanning electron microscopy studies were carried to study the quality and purity of compound. The circuit model fittings were carried out using the impedance data to find the correlation between the response of real system and idealized model electrical circuit. Complex impedance analyses suggested the dielectric relaxation to be of non-Debye type and negative temperature coefficient of resistance character. The correlated barrier hopping model was employed to successfully explain the mechanism of charge transport in $Ba(Nd_{1/2}Nb_{1/2})O_3$. The ac conductivity data were used to evaluate the density of states at Fermi level, minimum hopping length and apparent activation energy.

Seismic equivalent linear response of a structure by considering soil-structure interaction: Analytical and numerical analysis

  • Maroua Lagaguine;Badreddine Sbartai
    • Structural Engineering and Mechanics
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    • 제87권2호
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    • pp.173-189
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    • 2023
  • For a given structural geometry, the stiffness and damping parameters of the soil and the dynamic response of the structure may change in the face of an equivalent linear soil behavior caused by a strong earthquake. Therefore, the influence of equivalent linear soil behavior on the impedance functions form and the seismic response of the soil-structure system has been investigated. Through the substructure method, the seismic response of the selected structure was obtained by an analytical formulation based on the dynamic equilibrium of the soil-structure system modeled by an analog model with three degrees of freedom. Also, the dynamic response of the soil-structure system for a nonlinear soil behavior and for the two types of impedance function forms was also analyzed by 2D finite element modeling using ABAQUS software. The numerical results were compared with those of the analytical solution. After the investigation, the effect of soil nonlinearity clearly showed the critical role of soil stiffness loss under strong shaking, which is more complex than the linear elastic soil behavior, where the energy dissipation depends on the seismic motion amplitude and its frequency, the impedance function types, the shear modulus reduction and the damping increase. Excellent agreement between finite element analysis and analytical results has been obtained due to the reasonable representation of the model.

고속 직렬 인터페이스 커넥터의 설계 및 분석에 대한 연구 (A Study of Design and Analysis on the High-Speed Serial Interface Connector)

  • 이호상;신재영;최대일;나완수
    • 한국전자파학회논문지
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    • 제27권12호
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    • pp.1084-1096
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    • 2016
  • 본 논문에서는 12.5 Gbps의 전송 속도를 갖는 고속 직렬 인터페이스 커넥터(high-speed serial interface connector)의 설계 및 분석 방법을 제안한다. 고속 직렬 인터페이스 커넥터는 다양한 매질로 구성되며, 내부 선로도 복잡한 구조를 가지고 있으므로, 선로의 불연속 부분의 각각을 임피던스 정합하기가 매우 어렵다. 따라서 커넥터의 각 부분을 단순화한 커넥터 라인(connector line)의 구조를 제안하였으며, 이 구조에서 R, L, C, G 파라미터를 추출하고 차동 모드 임피던스를 분석하며, TDT(Time Domain Transmissometry)와 TDR(Time Domain Reflectometry)을 이용하여 임피던스 불연속(impedance discontinuity)을 최소화 하는 방법을 제시한다. 본 논문은 단순화한 커넥터 라인에서 추출된 분석 방법 및 결과를 고속 직렬 인터페이스 커넥터에 적용하였다. 제안한 커넥터는 총 44개의 핀(pin)으로 구성되며, 본 논문에서는 4개의 핀의 폭과 간격을 변경하여 신호 전달 특성을 분석하였다. 분석결과, 접지 핀의 폭이 증가할수록 임피던스는 소폭으로 감소하고, 접지핀과 신호 핀 사이의 간격이 증가할수록 임피던스가 증가했다. 또한, 신호 핀의 폭을 증가시키면 임피던스가 감소하며, 신호 핀과 신호 핀 사이의 간격을 늘리면 임피던스가 증가하였다. 최초 커넥터 임피던스 특성은 $96{\sim}139{\Omega}$ 사이에서 변화되는 값을 나타내었으나, 제안된 커넥터 구조를 적용했을 때 임피던스 특성은 $92.6{\sim}107.5{\Omega}$ 사이의 값으로 나타나, 설계 목표 $100{\Omega}{\pm}10%$를 만족함을 보였다.

전기화학적 임피던스법에 의한 철근콘크리트의 부식연구 (Studies on the Concrete Reinforcement Corrosion by Electrochemical Impedance Spectroscopy)

  • 강태혁;조원일;조병원;주재백;윤경석
    • 공업화학
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    • 제9권6호
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    • pp.907-913
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    • 1998
  • 전기화학적 임피던스법(electrochemical impedance spectroscopy, EIS)을 사용하여 염소이온에 의한 철근 콘크리트의 부식현상을 연구하였다. 콘크리트를 만들 때 물에 용해된 상태의 염소이온은 콘크리트 내부에 존재하게 되며, 이 염소이온의 농도를 변화시키며 실험을 수행하였다. 재령 400일 이상 EIS법으로 측정한 결과, 세밀한 전기화학적 등가회로 및 물리적 모델을 구성하였으며, 얻어진 임피던스 파라미터로부터 철근 콘크리트의부식현상을 물리적 모델로 설명할 수 있었다. 실험에서 얻은 측정값과 CNLS(complex nonlinear least squares) fitting법으로 구한 값은 잘 일치하였으며, 모델로부터 얻어진 임피던스 상수를 이용하여 부식 속도를 계산할 수 있어 이를 통한 부식 속도 예측이 가능함을 알 수 있었다.

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Dynamic impedance of a floating pile embedded in poro-visco-elastic soils subjected to vertical harmonic loads

  • Cui, Chunyi;Zhang, Shiping;Chapman, David;Meng, Kun
    • Geomechanics and Engineering
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    • 제15권2호
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    • pp.793-803
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    • 2018
  • Based on the theory of porous media, an interaction system of a floating pile and a saturated soil in cylindrical coordinates subjected to vertical harmonic load is presented in this paper. The surrounding soil is separated into two distinct layers. The upper soil layer above the level of pile base is described as a saturated viscoelastic medium and the lower soil layer is idealized as equivalent spring-dashpot elements with complex stiffness. Considering the cylindrically symmetry and the pile-soil compatibility condition of the interaction system, a frequency-domain analytical solution for dynamic impedance of the floating pile embedded in saturated viscoelastic soil is also derived, and reduced to verify it with existing solutions. An extensive parametric analysis has been conducted to reveal the effects of the impedance of the lower soil base, the interaction coefficient and the damping coefficient of the saturated viscoelastic soil layer on the vertical vibration of the pile-soil interaction system. It is shown that the vertical dynamic impedance of the floating pile significantly depends on the real stiffness of the impedance of the lower soil base, but is less sensitive to its dynamic damping variation; the behavior of the pile in poro-visco-elastic soils is totally different with that in single-phase elastic soils due to the existence of pore liquid; the effect of the interaction coefficient of solid and liquid on the pile-soil system is limited.

인덕턴스 변화에 강인한 계통연계형 인버터의 복소 벡터 전류제어기 (Complex Vector Current Control of Grid Connected Inverter Robust for Inductance Variation)

  • 이태진;조종민;신창훈;차한주
    • 전기학회논문지
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    • 제65권10호
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    • pp.1648-1654
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    • 2016
  • This paper analyzes complex vector current control for the enhanced cross-coupling compensation in accordance with parameter variation in grid-connected inverter system, and verifies through simulation and experiment. Complex vector current control is performed in the synchronous reference frame through d-q transformation. It generates cross-coupling components with rotating nominal angular frequency. In general, cross-coupling elements are compensated by decoupling terms added to output of conventional decoupling PI controller. But, it is impossible to compensate them perfectly which transient response is especially deteriorated such as large overshoot and slow tracking, when variation of grid impedance or measurement error occurs. However, complex vector current control can improve stability and response characteristic of current control regardless of the situation as before. Decoupling controller and complex vector controller are represented through complex forms, and these controllers are analyzed by using frequency response in s-domain, respectively. It is verified that complex vector controller has more superior response characteristic than decoupling controller through MATALB, PSIM and experimental in 5kW grid-connected inverter when L filter parameter is varied from 1.1mH to increase double, 2.2mH.

Grain Size Dependence of Ionic Conductivity of Polycrystalline Doped Ceria

  • Hong, Seong-Jae
    • The Korean Journal of Ceramics
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    • 제4권2호
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    • pp.122-127
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    • 1998
  • Conductivities of polycrystalline ceria doped with several rare earth oxides were measured by AC admittance and DC four probe method. The conductions were separated into grain and grain boundary contributions using the complex admittance technique as well as grain size dependence of conductivity. The grain size dependence of polycrystalline conductivity, which can be adequately described by the so-called brick layer model, appears to give a more reliable measure of the grain conductivity compared to the complex admittance method. Polycrystalline resistivity(1/conductivity) increases linearly with the reciprocal of grain size. The intercept of resistivity vs. inverse grain size plot gives a measure of the grain resistivity and the slope gives a measure of the grain boundary resistivity. It was also noted that errors involved in the analysis of experimental data may be different between the complex admittance method and the impedance method. A greater resolution of the spectra was found in the complex admittance method, insofar as the present work is concerned, suggesting that the commonly used equivalent circuit may require re-evaluation.

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