TY - JOUR
T1 - Nonlinear high-intensity discharge lamp model including a dynamic electrode voltage drop
AU - Yan, W.
AU - Hui, S. Y R
AU - Chung, H.
PY - 2003/7
Y1 - 2003/7
N2 - Based on the physical laws of plasma arc discharge, an accurate nonlinear dynamic high-intensity discharge (HID) lamp model that includes the dynamic electrode voltage drop equation has been developed. The physical model includes the hysteresis effect in the high, frequency V-I characteristic caused by the physical process of electrode regions and can predict lamp terminal characteristics accurately over a wide frequency range. The key advantage of the model is that all parameters can be obtained from typical electrical terminal measurements of the HID lamps without using information that is either unavailable from lamp manufacturers or difficult to measure practically. Simulated and measured results have been used to verify the model. The proposed model provides a powerful tool for simulating the electrical behaviour of the HID lamps and thus can be used as a design tool for electronic ballasts for HID lamps.
AB - Based on the physical laws of plasma arc discharge, an accurate nonlinear dynamic high-intensity discharge (HID) lamp model that includes the dynamic electrode voltage drop equation has been developed. The physical model includes the hysteresis effect in the high, frequency V-I characteristic caused by the physical process of electrode regions and can predict lamp terminal characteristics accurately over a wide frequency range. The key advantage of the model is that all parameters can be obtained from typical electrical terminal measurements of the HID lamps without using information that is either unavailable from lamp manufacturers or difficult to measure practically. Simulated and measured results have been used to verify the model. The proposed model provides a powerful tool for simulating the electrical behaviour of the HID lamps and thus can be used as a design tool for electronic ballasts for HID lamps.
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UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-0042843426&origin=recordpage
U2 - 10.1049/ip-smt:20030584
DO - 10.1049/ip-smt:20030584
M3 - RGC 22 - Publication in policy or professional journal
SN - 1350-2344
VL - 150
SP - 161
EP - 167
JO - IEE Proceedings: Science, Measurement and Technology
JF - IEE Proceedings: Science, Measurement and Technology
IS - 4
ER -