Title :
High frequency electronic ballast for HID lamps based on /spl lambda//4-long distributed constant line with buck-boost AC-DC converter suitable for half bridge inverter
Author :
Hayashi, Makoto ; Ohguchi, Hideki ; Shimizu, Toshihisa ; Kimura, Gunji ; Takagi, Hiroyuki
Author_Institution :
Dept. of Electr. Eng., Tokyo Metropolitan Univ., Japan
Abstract :
A novel type of solid-state ballast, which operates in the MHz-range frequency, is presented in this paper. A circuit composed of a buck-boost type AC-DC power converter (rectifier), a voltage-source half-bridge inverter, a distributed constant line and a parallel LC resonant circuit has been developed for use in this new ballast. The HID (high intensity discharge) lamp is connected to the output terminal of the inverter through the distributed constant line. Here, since the length of the line is adjusted to 1/4 of the propagation wavelength /spl lambda/(/spl lambda//4 condition), the output voltage of the voltage-source inverter can be converted to a current source at the load side. Therefore, the ballast can supply the HID lamp not only with high voltage to initiate discharge but also with stable current during lamp running conditions. Further, the proposed ballast enables the HID lamps to control luminous intensity and to re-ignite automatically with the novel buck-boost AC-DC power converter and the discharge current feedback control. The experimental results from a prototype system verify the theory underlying this research.
Keywords :
AC-DC power convertors; DC-AC power convertors; bridge circuits; discharge lamps; invertors; lamp accessories; rectifying circuits; HF electronic ballast; HID lamps; VSI; automatic re-ignition; buck-boost AC-DC power converter; discharge current feedback control; distributed constant line; high intensity discharge; luminous intensity; parallel LC resonant circuit; propagation wavelength; voltage source half-bridge inverter; AC-DC power converters; Electronic ballasts; Fault location; Frequency; High intensity discharge lamps; Inverters; RLC circuits; Rectifiers; Solid state circuits; Voltage;
Conference_Titel :
Industry Applications Conference, 1998. Thirty-Third IAS Annual Meeting. The 1998 IEEE
Conference_Location :
St. Louis, MO, USA
Print_ISBN :
0-7803-4943-1
DOI :
10.1109/IAS.1998.729979