• Title/Summary/Keyword: Lamp modeling

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New Modeling Method for an Electrodeless Fluorescent Lamp Using the Relation of Lamp Output Power and the Modeling Coefficients of the Lamp (무전극램프의 출력전력 변화에 따른 새로운 모델링 기법)

  • Lim, Byoung-Noh;Jang, Mog-Soon;Sin, Dong-Seok;Park, Chong-Yeun
    • The Transactions of The Korean Institute of Electrical Engineers
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    • 제56권9호
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    • pp.1626-1631
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    • 2007
  • This paper presents a new modeling method using lamp output power and the modeling coefficients of the lamp. The proposed method utilizes the lamp modeling coefficients such as equivalent impedance Z(p), coupling coefficient of the transformer k(p), turns ratio of the transformer n(p), and plasma resistance Rp(p) as a function of lamp output power. The equivalent impedance Z(p) was developed from the equivalent resistance Req(p) and equivalent inductance Leq(p) of the lamp. Simulation and experimental results of the proposed model are presented in order to validate the proposed method. The modeling method can use to design an impedance matching circuit for a Class-D inverter.

Modeling and Simulation of an Electrodeless lamp system (무전극등 시스템의 모델 및 시뮬레이션 연구)

  • 한수빈;박석인;정봉만;정학근;김규덕;유승원
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 한국조명전기설비학회 2003년도 학술대회논문집
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    • pp.237-239
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    • 2003
  • Characteristics of electrodeless lamp as a load of the ballast is different compared to normal fluorescent lamp because the lamp includes the magnetics for inductive discharging process. So somewhat different modeling is necessary to make a proper power match between the lamp and ballast. Modeling of an electrodeless lamps, Endura of Osram, is presented in this paper. Simulation with a result of experiment is given for a verification of proposed model.

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Modeling and Simulation of Endura Electrodeless lamp system (엔두라 무전극 램프용 안정기 개발을 위한 모델 및 시뮬레이션 연구)

  • Han Soo-Bin;Park Suck-In;Jung Hak-Kun;Kim Gue-Duck;Jung Bong-Man
    • Proceedings of the KIPE Conference
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    • 전력전자학회 2004년도 전력전자학술대회 논문집(2)
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    • pp.902-905
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    • 2004
  • Characteristics of electrodelss lamp as a load of the ballast is different compared to normal fluorescent lamp because the lamp includes the magnetics for inductive discharging process. So somewhat different modeling is necessary to make a proper power match between the lamp and ballast. Modeling of an electrodeless lamps, Endura of Osram, is presented in this paper. Simulation with a result of experiment is given for a verification of proposed model.

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Modeling and Simulation of an Electrodeless lamp system (무전극등 안정기 시뮬레이션 연구)

  • Han, Soo-Bin;Park, Suck-In;Jung, Bong-Man;Jeoung, Hak-Guen;Kim, Kue-Duck
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 한국조명전기설비학회 2004년도 춘계학술대회 논문집
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    • pp.131-134
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    • 2004
  • Characteristics of electrodelss lamp as a load of the ballast is different compared to normal fluorescent lamp because the lamp includes the magnetics for inductive discharging process. So somewhat different modeling is necessary to make a proper power match between the lamp and ballast. Modeling of an electrodeless lamps, Endura of Osram, is presented in this paper. Simulation with a result of experiment is given for a verification of proposed model.

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Modeling and Controller Design of an Automotive HID Lamp Ballast (자동차 헤드라이트용 고압 방전등 안정기 시스템의 모델링 및 제어기 설계)

  • Lee, In-Gyu;Choe, Seong-Jin;Lee, Gyu-Chan;Jo, Bo-Hyeong
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • 제49권8호
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    • pp.545-550
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    • 2000
  • This paper presents design and analysis of an HID lamp ballast for a fast turn on characteristics and stable operation. It produces a high open circuit voltage for the ignition and it is controlled to supply effectively the power required to shorten the warm-up period after the breakdown. The lamp modeling by empirical data is presented. It is very effective in the designing of the control loop in the steady-state operating region. A stable operation of the lamp power regulation in the steady state is achieved, which is crucial for the long life time and constant light output. Stability analysis of the system is performed and the results are verified through various simulation results and the hardware experiments.

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Modeling of fluorescent Lamp for Electronic Ballast (전자식 안정기를 위한 형광램프 모델링)

  • 이진우
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 한국조명전기설비학회 1999년도 학술대회논문집-국제 전기방전 및 플라즈마 심포지엄 Proceedings of 1999 KIIEE Annual Conference-International Symposium of Electrical Discharge and Plasma
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    • pp.106-109
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    • 1999
  • This paper introduces a fluorescent lamp model based on gas discharge phenomena. This model was applied to electronic ballast. Simulation and experimental results were presented to verify the feasibility of the modeling.

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Modeling and Analysis of Power Piezoelectric Transformer and Its Application to Fluorescent Lamp Ballasts (압전 변압기의 모델링과 형광등 안정기회로에의 응용)

  • Choe, Seong-Jin;Lee, Gyu-Chan;Jo, Bo-Hyeong
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • 제48권7호
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    • pp.376-383
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    • 1999
  • The piezoelectric transformer (PT) is an electro-mechanical device that transfers electrical energy through a mechanical vibration. In this paper, a PT operating in the contour vibration mode is introduced for an application of fluorescent lamp ballast. Utilizing its inherent characteristics of the LC resonator and a high voltage gain to ignite the lamp in light load condition, an investigation of a power piezoelectric transformer as a potential component for a fluorescent lamp ballast is discussed. PT is easy to be produced in mass and reduces the cost of the ballast. The modified equivalent circuit model of the PT considering the operating current level is derived to design the fluorescent lamp ballast. This model describes the voltage gain of the PT in wide load variations and various input current levels. The experimental and simulation results are provided to verify theoretical analysis. The power capacity of the currently developed PT is relatively low (15W), but it can be increased by adopting a multi-layer structure and is currently under investigation. It is also possible to parallel the PT for higher power processing.

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Modeling and Simulation for Development of Self-Oscillation Ballast of Endura Electrodeless lamp (엔두라 무전극 램프용 자려식 안정기 개발을 위한 모델 및 시뮬레이션 연구)

  • Han, Soo-Bin;Park, Suk-In;Jung, Hak-Geun;Jung, Bong-Man;Seong, Eu-Gene
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • 제21권8호
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    • pp.1-9
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    • 2007
  • Characteristics of electrodeless lamp as a load of the ballast are different compared to normal fluorescent lamp because the lame includes an inductance due to coupling magnetics for inductive discharging process. This increased parameter makes the development of self-oscillation type ballast more complex and time consuming. Practical simulation method for an easy design of self-oscillation type ballast especially for Endura lamp, is presented by using a model and various analysis of simulation. Results of experiment are given for a verification of proposed method.

Modeling and Stability Analysis of Automotive HID Lamp Ballast (자동차 헤드라이트용 고압 방전등 안전기 시스템의 모델링 및 안정도 해석)

  • 이인규;최성진;이규찬;조보형
    • Proceedings of the KIPE Conference
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    • 전력전자학회 1999년도 전력전자학술대회 논문집
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    • pp.411-414
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    • 1999
  • This paper presents design and analysis of an HID lamp ballast for a fast turn on characteristics and stable operation. It produces a high open circuit voltage for the ignition and it is controlled to supply effectively the power required to shorten the warm-up period after the breakdown. The lamp modeling by empirical data is presented. It is very effective in the designing of the control loop in the steady-state operating region. A stable operation of the lamp power regulation in the steady state is achieved, which is crucial for the long life time and constant light output. Stability analysis of the system is performed and the results are verified through various simulation results and the hardware experiments.

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