Title :
Design optimization of the LCC parallel-series inverter with resonant current mode controlfor 250-W HPS lamp ballast
Author :
Cardesín, JesÙs ; Alonso, José Marcos ; López-Corominas, Emilio ; Calleja, Antonio J. ; Ribas, Javier ; Rico-Secades, Manuel ; García, Jorge
Author_Institution :
Dept. de Ingenieria Electr.a y Electron., Univ. de Oviedo, Gijon, Spain
Abstract :
In this paper, the optimum design of the LCC parallel-series inverter with resonant current mode control for 250-W high pressure sodium vapor lamps is presented. With this control method the inverter does not have any reactive energy, and both switching and conduction losses are minimized. Also, the design proposed performs a precise natural power control without exceeding the maximum power recommended by the lamp manufacturer without additional lamp power control circuitry. Since it is desirable implementing a low-cost and efficient power factor correction (PFC) stage for meeting the standard IEC 61000-3-2 Class C about low-frequency harmonic content injected in the line for lighting applications, a low-cost PFC buck pre-regulator is proposed. The ignition process is optimized because no additional circuitry is necessary for the lamp ignition providing low ignition inverter current. The design proposed leads to an important size and cost reduction, avoiding the additional circuitry used in the classic designs. Simulations and experimental results have validated the design proposed in this paper.
Keywords :
IEC standards; cost reduction; electric current control; invertors; lamp accessories; losses; metal vapour lamps; power control; power conversion harmonics; power factor correction; switching convertors; 250 W; IEC 61000-3-2 class C; LCC parallel-series inverter; buck pre-regulator; conduction losses; cost reduction; design optimization; frequency harmonics; high pressure sodium vapor lamps; ignition; lamp ballast; lighting; power control circuitry; power factor correction; resonant current mode control; switching losses; Circuits; Design optimization; Electronic ballasts; IEC standards; Ignition; Inverters; Lamps; Power control; Pressure control; Resonance; LCC parallel-series inverter; power factor correction (PFC);
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2005.854061