• 제목/요약/키워드: Voltage transfer curve

검색결과 36건 처리시간 0.023초

Wall Voltage Transfer Characteristics according to Address Bias Voltage

  • Lee, Y.M.;Jeong, D.C.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2007년도 7th International Meeting on Information Display 제7권1호
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    • pp.601-604
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    • 2007
  • In this paper, we report the wall voltage transfer characteristic between sustain electrodes according to the address bias voltage in a 3-electrodes surface discharge type ac PDP by the VT close curve measurement technique. The result shows the change of wall voltage according to the gap voltage variation depends on the address bias voltage.

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The Influence of Xe Content on Wall Voltage Transfer Behavior

  • Baik, Bong-Joo;Choi, Kwang-Yeol;Min, Wong-Kee;Hong, Mun-Heon;Lee, Dong-Woo;Min, Byung-Kuk;Kim, Weo-Dong
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.1555-1558
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    • 2008
  • Various approaches were undertaken by major PDP makers in order to improve the luminous efficacy of the plasma discharge cells. There have been many reports that state that using a high Xe content PDP is one of the most promising key technologies available to improve the luminous efficacy. In the case of the higher Xe content panel, the higher address and sustain voltage were needed to drive the panel under the same reset condition. In this study, a variety of Xe content panels were investigated in order to examine wall voltage transfer behaviors. The transferred wall voltage status after addressing discharge at the same driving condition was analyzed by comparing Vt close curve of high and low Xe content panels. Through this analysis of Vt close curve difference, the driving waveform of a high Xe panel was quantitatively adjusted Under the same address voltage condition, results showed that the amount of the transferred wall voltage and Vt close curve after addressing discharge was matched for the first sustain discharge. Taking these results into consideration, we conclude that the driving waveform for different Xe content panels could be designed for the desired addressing discharge condition and the wall voltage state of the cell could be quantitatively controlled and measured through these approaches.

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전압 안정도 제약계통에 대한 고온초전도 케이블 적용효과 (Effects of HTS Cable Applied to the Voltage Stability Limited Power System)

  • 이근준;황시돌
    • 조명전기설비학회논문지
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    • 제18권5호
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    • pp.169-173
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    • 2004
  • 본 논문은 전력계통의 전압 안정도 제약 문제를 해결하는데 고온 초전도 케이블을 적용하기 위한 기법을 제시하였다. 대전력계통의 유효 송전용량은 종종 전압 안정도 제약에 의해 결정된다. 기존의 초전도 케이블 응용 연구는 주로 도심지역의 고밀도 전력 수송 문제를 해결하는 대안으로 연구의 초점을 두어왔지만, 고온 초전도 케이블의 선로정수 개선효과를 이용하면 전압 안정도로 제약된 계통의 송전용량을 증가시킬 수 있어 그 응용 범위가 확대될 수 있다. 전압 안정도에 의한 최대 수송전력을 결정하는 데는 IPLAN에 의한 P-V곡선을 이용하였고, 대체 대상선로는 부하 증가시 무효전력 손실감도가 가장 큰 선로로 하였다. 결과의 타당성을 검증하기 위해 IEEE 14모선 계통을 사용하였으며, 적용결과 Case II는 70[%], Case III에서는 160[%]의 추가 수송 능력 증가를 가져올 수 있었다.

Assessment of Total Transfer Capability Using IPLAN: An Application of UPFC for Total Transfer Capability Enhancement

  • Lee Byung Ha;Kim Jung-Hoon;Kwak No-Hong;Lee Woon-Hee
    • KIEE International Transactions on Power Engineering
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    • 제5A권3호
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    • pp.244-251
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    • 2005
  • Power transfer capability has been recently highlighted as a key issue in many utilities. It is determined by the thermal stability, dynamic stability and voltage stability limits of generation and transmission systems. In particular, voltage stability affects power transfer capability to a great extent in many power systems. This paper presents a tool for determining total transfer capability from a static voltage stability viewpoint using IPLAN, which is a high level language used with the PSS/E program. The tool was developed so as to analyze static voltage stability and to determine the total transfer capability between different areas from a static voltage stability viewpoint by tracing stationary behaviors of power systems. A unified power flow controller (UPFC) is applied for enhancing total transfer capability between different areas from the viewpoint of static voltage stability. Evaluation of the total transfer capability of a practical KEPCO power system is performed from the point of view of static voltage stability, and the effect of enhancing the total transfer capability by UPFC is analyzed.

전압안정도 제약계통에 대한 고온초전도 케이블 적용효과 (Effects of HTS cable Applied to the Voltage Stability Limited Power System)

  • 이근준;황시돌;이소영;변찬근
    • 한국조명전기설비학회:학술대회논문집
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    • 한국조명전기설비학회 2004년도 춘계학술대회 논문집
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    • pp.447-450
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    • 2004
  • This paper presents the basic application idea of superconductor cable for voltage stability limited power system. In bulk power system, the transfer capability of transmission line is often limited by the voltage stability, and superconductor cable could be on of the countermeasure to enhance heat transfer limit as well as voltage stability limit. Steady state voltage stability approach by P-V curve is used to calculate the maximum transfer capability of initial system and superconductor applied system IEEE-14 bus system is used to demonstrate its applicability.

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AC-PDP특성평가를 위한 전압전달곡선 계측에 관한 연구 (Measurement of Voltage Transfer Curve in AC PDP)

  • 손진부;이성현;김동현;김영대;조정수;박정후
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1999년도 춘계학술대회 논문집
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    • pp.395-398
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    • 1999
  • In ac PDP(plasma Display Panel), the discharge characteristics is very important to display clear images. In this paper, we have studied the measurement of voltage transfer curves which show the discharge characteristics in AC PDP. The change of the effective wall capacitance during a discharge is also studied. These depend on lateral spreading of charge distribution and the strength of the discharge. As a parameter of the frequency, we observed the effects of the frequency in voltage transfer curves and in effective wall capacitance changes. As frequency increases, minimum sustain voltage and firing voltage decrease. In upper region of gap voltage the chance of the effective wall capacitance is independent of frequency.

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Calculation of Active Power Transfer Capability using Repeated Power Flow Program

  • Ham, Jung-Pil;Kim, Jung-Hoon;Lee, Byung-Ha;Won, Jong-Ryul
    • KIEE International Transactions on Power Engineering
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    • 제12A권1호
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    • pp.15-19
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    • 2002
  • The power transfer capability is determined by the thermal, dynamic stability and voltage limits of the generation and transmission systems. The voltage stability depends on the reactive power limit and it affects the power transfer capability to a great extent. Then, in most load flow analysis, the reactive power limit is assumed as fixed, relatively different from the actual case. This paper proposes a method for determining the power transfer capability from a static voltage stability point of view using the IPLAN which is a high level language used with PSS/E program. The f-V curve for determining the power transfer capability is determined using Repeated Power Flow method. It Is assumed that the loads are constant and the generation powers change according to the merit order. The maximum reactive power limits are considered as varying similarly with the actual case and the effects of the varied maximum reactive power limits to the maximum power transfer capability are analyzed using a 5-bus power system and a 19-bus practical power system.

IPLAN을 이용한 UPFC 적용 전력시스템의 전압 안정도 측면에서의 융통전력 향상 효과 분석 (A Study on Enhancing the Total Transfer Capability from Voltage Stability Point of View Using UPFC)

  • 이세정;이병하;김정훈;김용학;곽노홍
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2002년도 추계학술대회 논문집 전력기술부문
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    • pp.151-153
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    • 2002
  • Using UPFC(Unified Power Flow Controlled), it is possible to control three parameters(voltage, impedance, and phase angle). The UPFC can generate or absorb reactive power rapidly so as to enhance the transient and voltage stability and also influence the power flow. In this paper, the effects of application of the UPFC to the power system are analyzed from a viewpoint of improving the total transfer capability by enhancing voltage stability. The IPLAN, which is a high level language used with PSS/E program, is employed for evaluating the total transfer capability from a f-V curve.

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Empirical Equation을 이용한 고분자전해질 연료전지의 전압 손실에 대한 연구 (Study of Voltage Loss on Polymer Electrolyte Membrane Fuel Cell Using Empirical Equation)

  • 김기석;구영모;김준범
    • 공업화학
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    • 제29권6호
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    • pp.789-798
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    • 2018
  • 고분자전해질 연료전지(PEMFC)의 성능을 예측할 수 있는 empirical equation의 역할이 중요하게 대두되고 있다. 본 연구에서는 polarization curve에서 activation loss, ohmic loss, mass transfer loss 영역을 분리하였고, 현재까지 개발된 model 중 Kim의 model과 Hao의 model을 선정하여 각 영역의 fitting을 시행하였다. 온도, 압력, 산소 농도 및 막 두께를 운전변수로 설정하여 조건 변화에 대한 각 loss의 변화를 비교하였다. 기존 model은 전반적으로 좋은 fitting 정확도를 보였지만, 분리된 loss 영역에서는 부정확한 fitting 결과를 보이기도 하였다. 연료전지 성능 예측의 정확도를 개선하기 위하여 converge coefficient를 도입한 새로운 model을 제안하였다. 본 연구에서 제안한 model을 연료전지 성능 예측에 적용한 경우에 신뢰도 평가에서 개선된 결과를 얻을 수 있었다.

Neuron-MOSFET 인버터의 특성 분석 및 설계 가이드라인 (Characterization and design guideline for neuron-MOSFET inverters)

  • 김세환;이재기;박종태;정운달
    • 전기전자학회논문지
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    • 제3권2호
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    • pp.161-167
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    • 1999
  • 표준 2-poly CMOS 공정을 이용하여 3-입력 neuron-MOSFET의 인버터와 증가형 소자를 사용한 3비트 D/A 변환기를 설계 제작하였다. Neuron-MOSFET를 사용한 인버터의 전압전달 특성곡선과 잡음여유를 일반 CMOS 인버터와 같은 방법으로 측정분석하였다. 결합계수가 전압전달 특성곡선과 잡음여유에 미치는 영향을 이론적으로 계산하여 neuron-MOSFET 인버터의 게이트 산화층 두께와 입력게이트 레이아웃에 대한 설계 가이드라인을 설정하였다. 입력게이트 중 하나를 제어게이트로 사용하므로 offset전압이 없는 neuron-MOSFET D/A 변환기를 설계 제작할 수 있었다.

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