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Light & Engineering 26 (1)

Light & Engineering 26 (1)

Volume 26
Date of publication 03/30/2018
Pages 63-68

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Analysis of LED Driver Topologies with Respect to Power Factor and THD. L&E 26 (1) 2018
Articles authors:
Aniruddha Mukherjee, Trilok Chandra Bansal, Amit Soni

M. Degree in engineering, he is in staff of Gyan Vihar University, and he has 18 years experience of work in field of industry and aducation. His field of interest is life time of different types light sources

has spent over 45 years in the realm of academics. He did his Ph.D. in ionospheric physics. He has been associated with Gyan Vihar University as Dean Academics. He has guided many research works in the field of semiconductor physics. He is also headed many reputed scientific societies

Prof., Dr. was awarded M. Tech. and Ph.D. degree in Electrical Engineering from Malaviya National Institute of Technology (MNIT), Jaipur, India in 2005 and 2012 respectively, with specialization in “Power System”. His current research field is “Solar Photovoltaic Materials and Light Emitting Diodes”. He is presently working as Professor & Head, Department of Electrical & Electronics Engineering, Manipal University Jaipur and is also actively working to find out new perspectives related to his research interest

Abstract
Light Emitting Diodes (LEDs) are fast replacing incandescent lamps and CFLs in most of the developing nations. The reason can be attributed mainly to the enhanced lifetime and less energy consumption as compared to the other mentioned types. However one important aspect needs attention, the impact of driver on LEDs. LEDs are current controlled devices and hence emit maximum light with increase in current input to the device. This feature, boost up the light output but it increases the junction temperature of the device. Hence additional heat sinks are required to vent out the excessive heat generated due to increase current input to the LEDs. Those additional heat sinks are at times difficult to accommodate. So, designers have made arrangements to vent out the heat from the device. This is achieved by designing fins. However this arrangement is not suitable in places where the ambient temperature is more than normal. Thus, design of LED driver with controlled current input is essential in order to maintain the thermal limit of the device. Secondly, the AC-DC LEDs driver circuits, which are available in the market, are seldom equipped with input power factor and THD improvement circuitry as prescribed in IEC61000– 3–2. This is essential for maintaining the energy efficiency of the nearest utility services and in addition also improves on the current drawn by the device. The following work envisages these issues and proposes corrective driver circuit based on two different driver topologies, buck-boost topology and flyback topology. Both these topologies are proposed in order to address the aspects of power quality and its impact on the life of the device. The simulation were done using Green Point simulation tool from On Semiconductors.
References
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