研究目的
To design and develop a single stage, single channel, LED driver for low-voltage DC distribution system, focusing on reducing cost and size and increasing the reliability of the LED driver.
研究成果
The proposed PSBC driver offers better performance in terms of energy savings, installation cost, and payback period compared to other drivers, making it a suitable alternative for LED lighting systems in buildings or any applications for LVDC systems.
研究不足
The study focuses on low-power lighting applications and may not be directly applicable to high-power applications without further modifications.
1:Experimental Design and Method Selection:
The proposed converter is a phase-shifted buck converter with reduced size of passive components. It is mathematically modelled and designed for a power of 24 W LED lights.
2:Sample Selection and Data Sources:
An experimental prototype is developed for the proposed converter.
3:List of Experimental Equipment and Materials:
The converter consists of a single inductor, two power switches, one diode, and a capacitor.
4:Experimental Procedures and Operational Workflow:
The performance of the proposed topology is compared with conventional buck converter (CBC) and interleaved buck converter (IBC) topologies. A hardware prototype of all the topologies is developed for a power rating of 24 W.
5:Data Analysis Methods:
The hardware implementation, experimental set up, cost analysis, and real-time efficiency results of the proposed converter is validated by a case study in a poultry farm.
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MOSFET
IRL520NPBF
Infineon
Power switching in the converter
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Microcontroller
PIC18F45K20
Microchip
Control and PWM signal generation for the converter
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Diode
SB5H100-E3
Vishay
Current rectification in the converter
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Inductor
Energy storage and filtering in the converter
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Capacitor
Energy storage and filtering in the converter
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LED
Lighting load
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Digital lux meter
LX-101A
Measurement of output lumens of LED light
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