• Title/Summary/Keyword: sustain voltage

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The Current Boost Type Static Excitation Systems for Synchronous Generator (전류 부스터 정류기를 갖는 정지형 여자시스템 특성 개선 연구)

  • 임익헌;김장목;김경철
    • Proceedings of the KIPE Conference
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    • 1999.07a
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    • pp.193-196
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    • 1999
  • The current boost type atatic excitation system for synchronous generator that can sustain prope output voltage level even at fault condition is proposed. The proposed excitation system is capabl of supplying level 60% of the rated voltage. The proposed system is verified and tested using computer simulations as well as load tests. The load tests are performed with a 5KVA synchronous generator driven by a ac motor. The actual tests results indicated a good performance.

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Low Cost Power System Design for Plasma Display Panel(PDP)

  • Yoo, Kwang-Min;Lee, Jun-Young;Lim, Sung-Kyoo
    • 한국정보디스플레이학회:학술대회논문집
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    • 2006.08a
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    • pp.250-255
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    • 2006
  • A low cost PDP sustain power supply is proposed based on flyback topology using Boundary Conduction Mode(BCM) to control input current regulation. This method guarantees DCM condition to regulate the input current harmonics under all load conditions. An excessive voltage stress due to the link voltage increase can be suppressed by removing link capacitor and adjusting transformer turns ratios, which makes it possible to be used for universal line applications. The proposed converter is tested with a 400W(200V-2A output) prototype circuit.

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Wall charge & Wall Voltage Characteristics on Sustain Driving Voltage in AC PDP

  • 김태영
    • Proceedings of the Korean Vacuum Society Conference
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    • 1999.07a
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    • pp.237-237
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    • 1999
  • 전극폭 300um, 전극간격 100um, 격벽높이 130um로 자체 제작한 테스트 패널에서 방전개시전압과 최소 방전유지전압 사이에서 방전유지전압 변화에 따른 벽전하, 벽전압을 측정하였다. 이 실험에서는 Ne가스와 Ne-Xe 혼합가스를 이용하였다. 이 결과로부터 방전유지전압 변화에 따른 벽전하, 벽전압을 통하여 최적의 방전유지전압 조건을 결정할 수 있으며, 이는 AC-PDP의 효율 향상에 기여할 것으로 판단되어 진다.

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Cost-effective Single Board PDP Sustaining Driver with Dual Resonant Method

  • Lee, Jun-Young
    • Journal of Power Electronics
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    • v.9 no.1
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    • pp.93-99
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    • 2009
  • A new plasma display panel sustaining driver using single side sustaining technique with a dual resonant method is proposed in this paper. Since this circuit enables to keep device voltage stress same as the prior circuit, it can be a low cost circuit compared to a conventional driver. To integrate the sustaining function into one side with a single power source in the driver, a charge pump method is adopted to make negative sustaining voltage and to achieve dual resonant energy recovery on the sustaining modes.

A Study on Excitation System for Synchronous Generator using Current Mode Controlled PWM Converter (전류제어형 PWM컨버터를 이용한 동기발전기용 여자시스템에 관한연구)

  • 장수진;류동균;서민성;김준호;원충연;배기훈
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2002.11a
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    • pp.151-156
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    • 2002
  • The output voltage of Synchronous Generator is regulated constantly by field current control in excitation system. A synchronous generator is equipped with an automatic voltage regulator(AVR), which is responsible for keeping the constant output voltage under normal operating conditions about various levels. High frequency PWM converter (Current Mode Control Buck converter) type excitation system for synchronous generator is able to sustain output voltage level properly when the fault condition happened. This paper deals with the design and evaluation of the excitation system controller for a synchronous generator to improve the steady state and transient stability. The simulation and experimental results show that the proposed excitation system is improve the respons time by the AVR(automatic voltage regulator) of 50kW synchronous generator that is applied the current mode control excitation system.

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The effects of SCOPF solution to Transient Stability on Voltage Limited Power System (전압안정도로 제약된 계통에서 최적조류계산해가 과도안정도에 미치는 영향)

  • Lee, Geun-Joon;Kim, Bal-Ho
    • Proceedings of the KIEE Conference
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    • 2001.05a
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    • pp.245-247
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    • 2001
  • This paper presents a series of simulation results of transient stability on SCOPF operated power system whose transmission capabilities are limited by voltage stability. Three steps of voltage security guidelines, 5[%], 7[%], 10[%] are introduced to increase power transfer from generation centers to load center and observed the effects of voltage guidelines to transient stability for three kinds of load level(peak, medium, off-peak). As a result, dynamic characteristics weren't affected by the voltage security limits in model system, but became worse for the off-peak level than peak case, and sustain oscillations are observed for the all load level. This gives us some intitutions for the development and applications of security limits to use SCOPF program in open electric market.

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Effect of Hump Electrode on the Discharge Voltage of ac PDP with Fence Electrode (Fence 전극을 가진 ac PDP의 방전전압특성에 미치는 돌기 전극의 영향)

  • Dong, Eun-Joo;Ok, Jung-Woo;Yoon, Cho-Rom;Lee, Hae-June;Lee, Ho-Joon;Park, Chung-Hoo
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.2
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    • pp.261-267
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    • 2008
  • One of the most important issues in fence-type PDP is low luminance and luminous efficiency. To improve luminance and luminous efficiency, new sustain electrode structure which contains long discharge gap is necessary. However, it causes rise of firing voltage. In this paper, a new fence electrode structure is proposed in order to solve these problems. To drop the firing voltage, tow hump shaped electrodes is added on the main discharge electrode, and distance between two humps is controlled. The experimental results show that the test panel with the narrow horizontal gap(40um) between two humps shows low firing voltage by 17V compared with 80um gap in spit of similar luminance and luminous efficiency.

Design of a High Frequency PWM Converter for Synchronous Generator Excitation System (동기발전기 여자시스템용 고주파 PWM 컨버터 설계)

  • Jang Su-Jin;Ryu Dong-Kyun;Won Chung-Yuen;Lee Jin-Kuk;Bae Kee-Hun;Kim Soo-Suck
    • Proceedings of the KIPE Conference
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    • 2002.07a
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    • pp.515-518
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    • 2002
  • A synchronous generator is equipped with an automatic voltage regulator(AVR), which is responsible for keeping the output voltage constant under normal operating conditions at various levels. The output voltage of Synchronous Generator is regulated constantly by field voltage control in excitation system. High frequency PWM converter (Buck converter) type excitation system for synchronous generator that can sustain prefer output voltage level even at the fault condition happened. The proper operation of the proposed excitation system was verified through the simulations and the experiments.

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A Study on Performance Characteristics of Multi-level PDP Driver Circuit in Accordance of Signal Timing Variation (Multi-Level을 사용한 PDP 구동회로에서 Timing 변화에 따른 특성 변화에 관한 연구)

  • Kim Jung-Soo;Roh Chung-Wook;Hong Sung-Soo;Sakong Sug-Chin
    • The Transactions of the Korean Institute of Power Electronics
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    • v.10 no.6
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    • pp.560-568
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    • 2005
  • The proposed Multi-level PDP sustain Driver is composed of the semiconductor devices with low voltage rating compared to those used in the prior circuit proposed by L. Wether, and it has two resonant periods during the charging (rising period) and discharging (falling period) the PDP in the sustaining voltage waveforms. In accordance with the change of timing phase$(T_{r1},\;T_{i1},\;T_{r2})$, the performance characteristics of a commercial PDP module has been carried out and compared the characteristic with the 42V6, made of LG Electronics co., Experimental results show that the performance characteristics of PDP module are greatly influenced by the variation of $T_{i1}\;and\;T_{r2}$. The variation of $T_{r1}$ do not influence much on the performances of PDP. With the conditions that $T_{r1}=60ns,\;T_{i1}=120ns,\;and\;T_{r2}=350ns$, we could get the performances listed as the luminance is increased $14.6\%$, the power consumptions is decreased $5.9\%$, the panel efficiency is increased $24.2\%$, module efficiency is increased $21.2\%$, compared to those shown in the commercial PDP module (42V6). Therefore, the proposed multi-level PDP sustain driver expected to be suitable to actual PDP module application.

The Characteristics of the Discharge According to ITO Gap by the CLHS Driving Method in AC PDP (AC PDP에서 CLHS 구동 방법에 의한 ITO Gap에 따른 방전 특성)

  • Shin, Jae-Hwa;Choi, Myung-Gyu;Kim, Gun-Su
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.1
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    • pp.83-89
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    • 2013
  • In order to reduce the power consumption in international standard IEC62087, the luminance efficiency should be improved at the low discharge load rather than at the high discharge load. Thus, this paper analysed the characteristics of the discharge at the panels with ITO Gap of $65{\mu}m$, $80{\mu}m$, and $100{\mu}m$ in 50-inch PDP with FHD resolution. It was well known that the long gap panel improves the luminance and the luminous efficiency. However, it is very difficult to drive the panel due to high driving voltage. When the normal driving method was applied at the panel with ITO gap of $100{\mu}m$, the phenomenon of the double peak was generated in the sustain period. We confirmed that main factor of the double peak is the self-erasing discharge. When the CLHS driving method was applied at the panel with ITO gap of $100{\mu}m$, the self-erasing discharge was improved in the sustain period. Also, the $V_S$ and $V_A$ minimum voltage of the CLHS driving method decreased about 9V and 12V compared with those of the normal driving method. Moreover, when the CLHS driving method was applied to the panel with ITO gap of $100{\mu}m$, the luminance and the luminous efficiency increased compared with those of the normal driving method. The luminance and the luminous efficiency greatly increased at the low discharge load. The less discharge load, the higher increase rate of the luminance and the luminous efficiency. Especially, the luminous efficiency at ITO gap of $100{\mu}m$ increased about 26.3% at the discharge load of 4% compared with that at ITO gap of $65{\mu}m$.