• 제목/요약/키워드: on current

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자기인지 신경회로망에서 선형 시냅스 트랜지스터에 관한 연구 (A Study on the Linearity Synapse Transistor in Self Learning Neural Network)

  • 강창수;김동진;김영호
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 하계학술대회 논문집
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    • pp.59-62
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    • 2000
  • A VLSI implementation of a self-learning neural network integrated circuits using a linearity synapse transistor is investigated. The thickness dependence of oxide current density, stress current, transient current and channel current has been measured in oxides with thicknesses between 41 and 112 $\AA$, which have the channel width$\times$length 10$\times$1${\mu}{\textrm}{m}$ respectively. The transient current will affect data retention in synapse transistors and the stress current is used to estimate to fundamental limitations on oxide thicknesses. The synapse transistor has represented the neural states and the manipulation which gave unipolar weights. The weight value of synapse transistor was caused by the bias conditions. Excitatory state and inhitory state according to weighted values affected the drain source current.

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A Study on a Catenary Impedance Estimation Technique using Boosting Current Compensation Based on Current Division Characteristics of an AT Feeding System

  • Jung, Hosung;Kim, Hyungchul;Chang, Sang-Hoon;Kim, Joorak;Min, Myung-Hwan;An, Tae-Pung;Kwon, Sung-Il
    • Journal of Electrical Engineering and Technology
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    • 제10권3호
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    • pp.1370-1376
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    • 2015
  • Generally, an autotransformer(AT) feeding system consists of double tracks, up and down, with the trolley wire and feeder wire of the up and down tracks connected in the sectioning post(SP). Consequently, load current or fault current flows on two tracks based on catenary impedance characteristics, making it difficult to estimate catenary impedance accurately. This paper presents a technique for the estimation of catenary impedance using boosting current compensation based on the current division characteristics of an AT feeding system to improve the operation performance of impedance relay. To verify the technique, we model an AT feeding system through a power analysis program (PSCAD/EMTDC) and simulate various operation and fault conditions. Through the simulation, we confirmed that the proposed technique has estimated catenary impedance with a similar degree of accuracy to the actual catenary impedance

Influence of Different Frequency Harmonic Generated by Rectifier on High-speed Permanent Magnet Generator

  • Qiu, Hongbo;Wei, Yanqi;Yang, Cunxiang;Fan, Xiaobin
    • Journal of Electrical Engineering and Technology
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    • 제13권5호
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    • pp.1956-1964
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    • 2018
  • Since the stator winding of High-Speed Permanent Magnet Generator (HSPMG) has few winding turns and low inductance value, it is more prone to be influenced by harmonic current. Moreover, the operation efficiency and the torque stability of HSPMG will be greatly influenced by harmonic current. Taking a 117 kW, 60 000 rpm HSPMG as an example, in order to analyze the effects of harmonic current on HSPMG in this paper, the 2-D finite element electromagnetic field model of the generator was established and the correctness of the model was verified by testing the generator prototype. Based on the model, the losses and torque of the generator under different frequency harmonic current were studied. The change rules of the losses and torque were found out. Based on the analysis of the influence of the harmonic phase angle on torque ripple, it is found that the torque ripple could be weakened through changing the harmonic phase angle. Through the analysis of eddy current density in rotor, the change mechanism of the rotor eddy current loss was revealed. These conclusions can contribute to reduce harmonic loss, prevent demagnetization fault and optimize torque ripple of HSPMG used in distributed power supply system.

3차원 유한요소해석을 이용한 종자게형 진공 인터럽터의 특성고찰 (A Study of the Characteristics on the Vacuum Interrupter with Axial Magnetic Field Type using 3 Dimension Finite Element Analysis)

  • 하덕용;강형부
    • 한국전기전자재료학회논문지
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    • 제15권5호
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    • pp.460-467
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    • 2002
  • This paper deals with the distribution characteristics of the current density and axial magnetic flux density on the vacuum interrupter with axial magnetic field type using 3 dimension finite element analysis. An axial magnetic field parallel to the current flow in the arc column can improve the current breaking capacity of vacuum interrupter by affecting the arc mode. The axial magnetic flux density on the contact electrode surface is analyzed by inputting external current as a function of the transient time for sine half wave. And it also is analyzed within the gap distance of the contact electrode. The peak value of current but is decreased with the descending current on the contact electrode surface and within the gap distance of the contact electrode. The residual magnetic field is generated on the contact electrode surface and within the gap distance in the instant of zero current, which is due to the influence of eddy currents. The phase shift due to eddy currents, defined as time difference between the maximum value of current and axial magnetic field, is about 1ms in the center point of gap distance.

누설전류측정에 의한 피뢰기 열화진단에 있어 전원고조파의 영향 (Influence of Harmonics in Power System Voltage on Arrester Deterioration Diagnostics by Leakage Current Measurement)

  • 길경석;한주섭;주문노
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제52권1호
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    • pp.42-46
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    • 2003
  • Arresters are deteriorated by overvoltages or impulse currents, and the resistive leakage current of arresters increases as the deterioration of the arrester progresses, showing an increase in the 3$^{rd}$ harmonic component of the leakage current. In this reason, arrester diagnostic techniques based on the 3$^{rd}$ harmonic leakage current as a reference parameter of deterioration are widely used. The technique, however, includes an error due to the harmonics of power system voltage. Therefore, the influence of the harmonics on arrester diagnostics should be considered. In this paper, we designed a PSpice ZnO arrester model to simulate the influence of the voltage harmonics described above. A pure sinusoidal voltage and its the 3r harmonic voltage were applied to the model, and the leakage current components were analyzed. From the simulation results, it is confirmed that the peak value of resistive leakage current depends not only on the phase of the 3$^{rd}$ harmonic voltage but also on the magnitude of it. Consequently, the errors caused 1)y the harmonic voltage could be minimized by correcting the magnitude of leakage current upon analyzing the harmonics.cs.

고온에서 Schottky Barier SOI nMOS 및 pMOS의 전류-전압 특성 (Current-Voltage Characteristics of Schottky Barrier SOI nMOS and pMOS at Elevated Temperature)

  • 가대현;조원주;유종근;박종태
    • 대한전자공학회논문지SD
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    • 제46권4호
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    • pp.21-27
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    • 2009
  • 본 연구에서는 고온에서 Schottky barrier SOI nMOS 및 pMOS의 전류-전압 특성을 분석하기 위해서 Er 실리사이드를 갖는 SB-SOI nMOSFET와 Pt 실리사이드를 갖는 SB-SOI pMOSFET를 제작하였다. 게이트 전압에 따른 SB-SOI nMOS 및 pMOS의 주된 전류 전도 메카니즘을 온도에 따른 드레인 전류 측정 결과를 이용하여 설명하였다. 낮은 게이트 전압에서는 온도에 따라 열전자 방출 및 터널링 전류가 증가하므로 드레인 전류가 증가하고 높은 게이트 전압에서는 드리프트 전류가 감소하여 드레인 전류가 감소하였다. 고온에서 ON 전류가 증가하지만 드레인으로부터 채널영역으로의 터널링 전류 증가로 OFF 전류가 더 많이 증가하게 되므로 ON/OFF 전류비는 감소함을 알 수 있었다. 그리고 SOI 소자나 bulk MOSFET 소자에 비해 SB-SOI nMOS 및 pMOS의 온도에 따른 문턱전압 변화는 작았고 subthreshold swing은 증가하였다.

불규칙 파랑의 영향을 받는 유사제트류의 수치모의 (Numerical Simulation of Jet-like Currents Influenced by Irregular Waves)

  • 최준우;박원경;배재석;윤성범
    • 한국해안·해양공학회논문집
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    • 제20권5호
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    • pp.491-497
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    • 2008
  • 수치실험을 통해 파랑과 흐름의 상호작용이 파랑전파방향과 반대방향으로 유출되는 유사제트류에 미치는 영향을 연구하였다. 파랑모형인 REF/DIF S와 흐름모형인 SHORECIRC의 결합모형을 이용하여 수치모의를 수행하였다. 유사제트류의 영향으로 굴절된 파랑은 흐름의 중심영역을 따라 집중화되고 높은 파고를 갖는 파랑에서 유사제트류가 더 일찍 퍼지는 현상이 나타났다. 수치결과로부터 유출구 부근에서 유사제트류 진행의 횡방향으로 급격한 파고변화가 유사제트류를 진행방향 좌우로 퍼지게 하는 데 중요한 역할을 한다는 것을 알 수 있었다. 즉, 흐름의 횡방향으로 작용하는 파잉여응력 기울기항이 흐름의 진행방향으로 작용하여 흐름을 강화시키는 파잉여응력 기울기항보다 유사제트류에 더 큰 영향을 미치게 된다. 결론적으로 하구에서처럼 흐름과 반대방향으로 입사하는 파랑이 있는 곳에서는 파랑과 흐름사이의 상호영향이 반드시 고려되어야 한다.

Ionic Dependence and Modulatory Factors of the Background Current Activated by Isoprenaline in Rabbit Ventricular Cells

  • Leem, Chae-Hun;Lee, Suk-Ho;So, In-Suk;Ho, Won-Kyung;Earm, Yung-E
    • The Korean Journal of Physiology
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    • 제26권1호
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    • pp.15-25
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    • 1992
  • In order to elucidate the properties of the background current whole cell patch clamp studies were performed in rabbit ventricular cells. Ramp pulses of ${\pm}80\;mV$ from holding potential of 40 mV(or 20 mV) at the speed of 0.8 V/sec were given every 30 sec(or 10 sec) and current-voltage diagrams(I-V curve) were obtained. For the activation of the background current isoprenaline, adenosine 3',5'-cyclic monophosphate(dBcAMP), guanosine 3',5'-cyclic monophosphate(cGMP), and $N^6$-2'-o-dibutyryladenosine 3',5'-cyclic monophosphate(dBcAMP) were applied after all known current systems were blocked with 2mM Ba, 1 mM Cd ,5 mM Ni, 10 ${\mu}M$ diltiazem, 10 ${\mu}m$ ouabain, and 20 mM tetraethylammonium(TEA). The conductance of background current in control was $0.65{\pm}0.69$ nS at 0 mV, its I-V curves was almost linear and reversed near 50 mV. When there was no taurine in pipette solution, isoprenaline hardly activated the background current but when taurine existed in pipette solution, isoprenaline activated the larger background current. Cyclic AMP or cyclic GMP alone had little effect on the activation of the background current, while cGMP potentiated cGMP effect. When the background current was activated with cGMP and cAMP, isoprenaline could not further increased the background current. The background current activated by isoprenaline depended on extracellular $Cl^-$ concentration and its reversal potential was shifted according to chloride equilibrium potential. The change of extracellular $Na+$ concentration had little effect on reversal potential of the background current activated by isoprenaline.

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The effect of non-uniform current distribution on transport current loss in stacked high-Tc superconductor tapes

  • Choi, Se-Yong;Nah, Wan-Soo;Joo, Jin-Ho;Ryu, Kyung-Woo;Lee, Byoung-Seob;Yoon, Jang-Hee;Ok, Jung-Woo;Park, Jin-Yong;Won, Mi-Sook
    • 한국초전도ㆍ저온공학회논문지
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    • 제14권2호
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    • pp.16-19
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    • 2012
  • The influence of current distribution on the transport current loss in vertically stacked high-$T_c$ superconductor (HTS) tapes was evaluated. AC loss was analyzed as a function of current distribution by introducing a current distribution parameter through a numerical method (finite element analysis). AC loss under non-uniform current distribution is always higher than that for a uniformly distributed transport current in a conductor. Although the effect of non-uniformity is relatively insignificant in low transport current, AC loss increases substantially in high transport current regions as non-uniformity is enlarged. The results verify that non-uniform current distribution causes extra loss by examining the cross-sectional view of current densities in stacked conductor.

상분리 모선의 자계 및 와전류 특성 해석 (Analysis of the Magnetic Field and Eddy Current Characteristics in Isolated Phase Bus System)

  • 김진수;하덕용;최승길;강형부
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제50권10호
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    • pp.509-516
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    • 2001
  • Isolated phase bus(IPS) has a special structure for carrying large current generated by a generator to a main transformer. In the analysis of IPB, the understanding of the magnetic field distribution generated by large current is important. Especially, while the bus conductor current is flowing, almost same amount of current as bus conductor current is induced in the enclosures under the influence of time varying magnetic field, and therefore the large electric loss and the deterioration of insulating capability might occur due to Joule heating effect. Hence for the optimal design of IPB satisfying the condition to minimize the loss, the accurate analysis of magnetic field distribution and the eddy current characteristics of three phase isolated phase bus have been investigated. In the analysis of time varying magnetic field, instead of finite difference method(FDM) which is generally used, finite element method with phasor concept is investigated under the assumption that the bus current is purely sinusoidal. The characteristics is studied along the phase angle by comparing the effect of eddy current on the magnetic field distribution with the case that eddy current is not considered, and also the effect of material, thickness and radius of enclosure on the eddy current distribution is discussed.

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