Title :
Single electronic ballast for HPS and HPMV lamp testing
Author :
Rodrigues, Cláudio R B S ; Guedes, Luiz F A ; Rodrigues, Márcio C B P ; Braga, Henrique A C
Author_Institution :
NIMO Niicleo de Iluminacao Moderna, Univ. Fed. de Juiz de Fora, Juiz de Fora, Brazil
fDate :
Sept. 27 2009-Oct. 1 2009
Abstract :
This paper describes the analysis and design of an electronic ballast devised to drive both, high pressure sodium vapor (HPS) and high pressure mercury vapor (HPMV) lamps, in dimmed operation with no need of parameter modification. The main objective is to achieve weight and volume reduction of a public lighting components bench test equipment, used to perform basic operational tests in a Brazilian electric utility company. Specifically, the analysis, design and implementation of an electronic ballast, based on a series-parallel loaded resonant inverter, for 70W HPS and 125W HPMV lamps testing is presented. Experimental results from a lab prototype, performing high intensity discharge (HID) lamp tests in dimmed operation and no discharge arc instability, evidences the feasibility of the proposed ballast concerning the intended application.
Keywords :
discharge lamps; lamp accessories; resonant invertors; Brazilian electric utility company; bench test equipment; dimmed operation; high intensity discharge lamp tests; high pressure mercury vapor lamps; high pressure sodium vapor; no discharge arc instability; power 125 W; power 70 W; public lighting components; series-parallel loaded resonant inverter; single electronic ballast; volume reduction; weight reduction; Circuit testing; Electronic ballasts; Electronic equipment testing; High intensity discharge lamps; Performance evaluation; Power industry; Protection; Prototypes; Resonant inverters; Test equipment; HID lamps; electronic ballast; resonant inverter;
Conference_Titel :
Power Electronics Conference, 2009. COBEP '09. Brazilian
Conference_Location :
Bonito-Mato Grosso do Sul
Print_ISBN :
978-1-4244-3369-8
Electronic_ISBN :
2175-8603
DOI :
10.1109/COBEP.2009.5347702