Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps
碩士 === 國立中山大學 === 電機工程學系研究所 === 91 === A high-frequency electronic ballast with auto-tracking control was proposed to operate the metal halide lamps at a specific frequency free from acoustic resonance. In case the acoustic resonance should happen, the operating frequency is changed step by step wit...
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ndltd-TW-091NSYS54420372016-06-22T04:20:47Z http://ndltd.ncl.edu.tw/handle/31025163667133653292 Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps 複金屬燈電子安定器之自動頻率追蹤控制 Chun-Kai Huang 黃俊凱 碩士 國立中山大學 電機工程學系研究所 91 A high-frequency electronic ballast with auto-tracking control was proposed to operate the metal halide lamps at a specific frequency free from acoustic resonance. In case the acoustic resonance should happen, the operating frequency is changed step by step with the auto-tracking control, until the lamp is operated at a frequency with stable operation. The electrical characteristics of the lamps are first investigated. Based on the investigated results, a detection circuit is designed to identify the occurrence of acoustic resonance. With the auto-tracking control, the Class-D half-bridge series-resonant inverter can be adopted for the high-frequency electronic ballast to achieve high efficiency and high power density. The control strategy of auto-tracking is practically realized by a single-chip microprocessor. The proposed approach is implemented on a 70 W test lamp with an operating frequency range from 20 kHz to 30 kHz. To regulate the lamp power at its rated value, a buck-boost converter is used as a pre-regulator, which serves also as a power-factor-corrector to achieve a high power factor at the input line. Chin-Sien Moo 莫清賢 2003 學位論文 ; thesis 56 zh-TW |
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碩士 === 國立中山大學 === 電機工程學系研究所 === 91 === A high-frequency electronic ballast with auto-tracking control was proposed to operate the metal halide lamps at a specific frequency free from acoustic resonance. In case the acoustic resonance should happen, the operating frequency is changed step by step with the auto-tracking control, until the lamp is operated at a frequency with stable operation.
The electrical characteristics of the lamps are first investigated. Based on the investigated results, a detection circuit is designed to identify the occurrence of acoustic resonance. With the auto-tracking control, the Class-D half-bridge series-resonant inverter can be adopted for the high-frequency electronic ballast to achieve high efficiency and high power density. The control strategy of auto-tracking is practically realized by a single-chip microprocessor. The proposed approach is implemented on a 70 W test lamp with an operating frequency range from 20 kHz to 30 kHz. To regulate the lamp power at its rated value, a buck-boost converter is used as a pre-regulator, which serves also as a power-factor-corrector to achieve a high power factor at the input line.
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author2 |
Chin-Sien Moo |
author_facet |
Chin-Sien Moo Chun-Kai Huang 黃俊凱 |
author |
Chun-Kai Huang 黃俊凱 |
spellingShingle |
Chun-Kai Huang 黃俊凱 Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps |
author_sort |
Chun-Kai Huang |
title |
Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps |
title_short |
Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps |
title_full |
Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps |
title_fullStr |
Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps |
title_full_unstemmed |
Auto-Tracking Control for High-Frequency Electronic Ballast of Metal Halide Lamps |
title_sort |
auto-tracking control for high-frequency electronic ballast of metal halide lamps |
publishDate |
2003 |
url |
http://ndltd.ncl.edu.tw/handle/31025163667133653292 |
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