LED street lighting: A power quality comparison among street light technologies

Author:

Gil-de-Castro A1,Moreno-Munoz A1,Larsson A2,de la Rosa JJG3,Bollen MHJ2

Affiliation:

1. Department of Computer Architecture, Electronics and Electronic Technology, University of Cordoba, Cordoba, Spain

2. Luleå University of Technology, Electric Power Engineering, Skellefteå, Sweden

3. Department of Electronics, University of Cádiz, Algeciras-Cádiz, Spain

Abstract

High-pressure sodium lamps are currently the main lamps used in public lighting. However, the possibility of using high-power light emitting diode (LEDs) for street lighting is growing continuously due to their greater energy efficiency, robustness, long life and light control. The aim of this paper is to study the power quality of high-power lighting networks based on LED and high-pressure sodium lamps. Both electromagnetic and dimmable electronic ballasts, which can dim the lamp output smoothly and uniformly, have been used connected to high-pressure sodium lamps. High-pressure sodium lamps connected to electronic equipment have been tested with different arc power levels using dimming on a 230 V power supply. The study presented in this paper is completely based on measurements, including harmonic currents in the frequency range up to 150 kHz for all the technologies. The main results show a broadband spectrum in LED lamps which confirms other research in fluorescent lamps powered by high-frequency ballasts. Results also indicate a decrease in the harmonic value with increasing harmonic order, and a decrease in the harmonic value at half load (60%) compared with full load (100%). Although total harmonic distortion of the current is lower with high-pressure sodium lamps connected to electronic rather than electromagnetic ballasts, LED lamps achieved the lowest total harmonic distortion of current.

Publisher

SAGE Publications

Subject

Electrical and Electronic Engineering

Reference14 articles.

1. European Commission. EURELECTRIC, Electricity for More Efficiency: Electric Technologies and their Energy Savings Potential, Brussels: European Commission, 2004, pp. 121–121.

2. Grow RT. Energy Efficient Streetlights – Potentials for Reducing Greater Washington’s Carbon Footprint, Alexandria, VA: American Chamber of Commerce Executives, 2008, pp. 26–26.

3. Harmonic analysis of some light sources used for domestic lighting

4. Power Quality

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