DocumentCode
1681456
Title
Modeling the electrical behavior of fluorescent lamps on the basis of a self-consistent collisional-radiative model
Author
Loo, K.H. ; Stone, David A. ; Tozer, R.C.
Author_Institution
Dept. of Electron. & Electr. Eng., Univ. of Sheffield, UK
Volume
3
fYear
2004
Firstpage
1646
Abstract
Due to the highly complex nature of fluorescent lamp discharge, its electrical behavior and interaction with ballast can only be fully investigated and understood in the framework of a self-consistent model. Collisional-radiative modeling provides the capability to describe in details the microscopic reactions in the discharge on the basis of three groups of continuity equations: particle balance, electron energy and gas temperature. This paper discusses the formulation of these equations and later applies them to modeling the lamp´s electrical behavior in a ballast environment. Prototypes of the conventional magnetic ballast and half-bridge LCC inverter ballast were constructed to verify the model accuracy. The self-consistency of the model has enabled the computer design of lamp ballast for any given lamp parameters, that is: lamp radius, wall temperature, buffer gas pressure, power supply voltage or current, frequency and power.
Keywords
fluorescent lamps; invertors; lamp accessories; power engineering computing; MATLAB; buffer gas pressure; computer design; continuity equations; electron energy; electronic ballast; fluorescent lamp discharge; gas discharge lamp; gas temperature; half-bridge LCC inverter ballast; lamp electrical behavior; lamp parameters; lamp radius; magnetic ballast; microscopic reactions; particle balance; power supply voltage; self-consistent collisional-radiative model; wall temperature; Current supplies; Electron microscopy; Electronic ballasts; Equations; Fluorescent lamps; Inverters; Power supplies; Prototypes; Temperature; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Industry Applications Conference, 2004. 39th IAS Annual Meeting. Conference Record of the 2004 IEEE
ISSN
0197-2618
Print_ISBN
0-7803-8486-5
Type
conf
DOI
10.1109/IAS.2004.1348691
Filename
1348691
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