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Design and implementation of led driver for dc input/Wong Kok Nian

Design and implementation of led driver for dc input_Wong Kok Nian_E3_2014_NI
Diod pemancar cahaya (LED) digunakan secara leluasa dan akan menggantikan sumber pencahayaan tradisional pada zaman moden ini disebabkan kelebihannya dalam tempoh hayat dan kecekapan. Cabaran utama dalam projek ini adalah jangka hayat, kecekapan dan keberkesanan harga bagi Pemacu LED. Pada masa yang dekat, LED yang baru dibangunkan menawarkan ciri-ciri kelebihan dalam kecerahan dan kecekapan tenaga, akan tetapi ia memerlukan voltan arus terus yang tinggi dalam operasi berbanding dengan LED yang biasa. LED tersebut perlu dipacu dengan menggunakan Penukar AT-AT untuk meningkatkan voltan bekalannya daripada sumber arus terus bervoltan rendah kepada voltan nominal. Tenaga elektrik jenis boleh diperbaharui yang dijana daripada fotovoltaik dan dibekalkan dalam bentuk arus terus telah menjadi sumber tenaga pilihan dalam tren dunia pada masa akan datang. Hasilnya, tenaga daripada fotovoltaik boleh dibekalkan kepada Penukat AT-AT untuk menyalakan LED. Penggunaan komponen berjangka hayat panjang tetapi dalam harga rendah menjadi keutamaan. Untuk menimbangi antara jangka hayat dan harga, kapasitor tantalum dan kapasitor elektrolik berjangka hayat panjang (LLE) telah dipilih dan diaplikasikan ke dalam Pemacu LED ini. Simulasi telah dilaksanakan untuk menilai, mengenalpasti masalah dan pengesahan keputusan ke atas litar yang dipersembahkan dengan menggunakan PSIM ®. Litar yang telah disimulasi dipindahkan ke atas papan litar bercetak untuk operasi dan ujian. Prototaip ini dibina dalam ukuran yang kecil dan dipasangkan pada pemegang lampu biasa dengan pembalikan cahaya untuk membiaskan cahaya. Riak pada voltan keluaran, kecekapan penukar dan kecerahan daripada LED telah diperhatikan dengan menggunakan peralatan dan dianalisis. Kecekapan elektrik yang mencapai 70% dan kecekapan pencahayaan sebanyak 50lumen/watt telah dicatatkan daripada prototaip ini. ______________________________________________________________________________________ Light Emitting Diodes (LEDs) are widely used in this modern era in variety of lighting applications and has become the replacement to the traditional lighting sources due to better lifetime and efficiency. The major challenge in this project is the life span of LED Driver, efficiency and effectiveness of costing. Newly developed LEDs offer brighter and energy- efficient characteristic in near-future, but it require higher operating DC Voltage than conventional type LED. Those LEDs need to be driven by DC-DC Converter to step up the voltage to supply at nominal voltage from low voltage DC sources. The renewable electric energy harvested from photovoltaic and delivery in DC electricity as alternative energy sources is becoming a global trend in future. As a result, photovoltaic energy can be delivered to DC-DC converter to power up LEDs. Use of longer life expectancy components but in low cost is one of the major concerns. To balance between the life span and costing, tantalum capacitor and newly introduced Long Life Electrolyte (LLE) capacitor had been chosen and applied into this LED Driver. A simulation on the presented circuit is done for evaluation, troubleshooting and verifying the results by using PSIM ®. After the simulation, the circuit is transferred into PCB and a prototype is built for operation and testing. The prototype is built in small size and installed on normal lamp holder with reflector to diffuse light beam. The output voltage ripples, efficiency of converter and brightness illuminated from LED was observed using instruments and analysed. Electrical efficiency of 70% and illumination efficacy of 50lumen/watt are recorded from the prototype.
Contributor(s):
Wong Kok Nian - Author
Primary Item Type:
Final Year Project
Language:
English
Subject Keywords:
lighting ; Light Emitting Diodes (LEDs); coiled tungsten filaments
First presented to the public:
6/1/2014
Original Publication Date:
1/16/2020
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Electrical & Electronic Engineering
Citation:
Extents:
Number of Pages - 165
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2020-01-16 15:30:59.447
Submitter:
Nor Hayati Ismail

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