High intensity discharge (HID) lamps are typically operated at low frequency to avoid damage from acoustic resonance. Accordingly, an electronic ballast normally comprises a buck converter to control the lamp current magnitude, and a bridge to commutate the lamp current at a low frequency. These functions can be combined in a stacked buck converter [1]. The resulting system performance depends on the dynamics of the lamp as well as the ballast, the so-called lamp-ballast interaction [2]. Competitor lamps, production spread, reduced power operation and lifetime effects lead to a wide spread in lamp parameters. Some lamp-ballast combinations tend to be poorly damped, resulting in oscillatory lamp current. In such a system, the negative increm...
One of the results of the EU COST action nr 529, “Efficient Lighting for the 21st century ” [1], is ...
Author name used in this publication: K. W. E. ChengRefereed conference paper2006-2007 > Academic re...
© 2019, School of Electrical Engineering and Informatics. All rights reserved. In order to reduce th...
High intensity discharge (HID) lamps are typically operated at low frequency to avoid damage from ac...
HID lamps are typically operated at low frequency (100 Hz to 200 Hz) to avoid damage from acoustic r...
High intensity discharge lamps are typically operated at low frequency to avoid damage from acoustic...
The ever increasing amount of global energy consumption based on the application of fossil fuels is ...
Ceramic metal halide lamps have been widely used due to long lifetime, high luminous efficiency and ...
The paper presents a single-stage high-power-factor electronic ballast for metal halide lamps. The p...
Abstract — Metal Halide HID lamps are becoming popular because of its high efficacy. The operating c...
The control circuit of electronic power supplies for a High Intensity Discharge (HID) lamp is relati...
The increasing speed of modern power electronics opens a way to study the stability of high-intensit...
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: D. H. Wang...
This paper provides some qualitative insights into, and a quantitative analysis of, the interrelatio...
An one-stage electronic ballast for metal halide lamp is presented. Employing an AC/AC regulator wit...
One of the results of the EU COST action nr 529, “Efficient Lighting for the 21st century ” [1], is ...
Author name used in this publication: K. W. E. ChengRefereed conference paper2006-2007 > Academic re...
© 2019, School of Electrical Engineering and Informatics. All rights reserved. In order to reduce th...
High intensity discharge (HID) lamps are typically operated at low frequency to avoid damage from ac...
HID lamps are typically operated at low frequency (100 Hz to 200 Hz) to avoid damage from acoustic r...
High intensity discharge lamps are typically operated at low frequency to avoid damage from acoustic...
The ever increasing amount of global energy consumption based on the application of fossil fuels is ...
Ceramic metal halide lamps have been widely used due to long lifetime, high luminous efficiency and ...
The paper presents a single-stage high-power-factor electronic ballast for metal halide lamps. The p...
Abstract — Metal Halide HID lamps are becoming popular because of its high efficacy. The operating c...
The control circuit of electronic power supplies for a High Intensity Discharge (HID) lamp is relati...
The increasing speed of modern power electronics opens a way to study the stability of high-intensit...
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: D. H. Wang...
This paper provides some qualitative insights into, and a quantitative analysis of, the interrelatio...
An one-stage electronic ballast for metal halide lamp is presented. Employing an AC/AC regulator wit...
One of the results of the EU COST action nr 529, “Efficient Lighting for the 21st century ” [1], is ...
Author name used in this publication: K. W. E. ChengRefereed conference paper2006-2007 > Academic re...
© 2019, School of Electrical Engineering and Informatics. All rights reserved. In order to reduce th...