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This work implements a FPGA based battery energy system using solar cells under various illumination and temperature. It performs Maximum Power Point Tracking based on perturbation and observation method, where it gets the desired maximum power by changing the duty cycle of the switch in the converter. The control algorithm is simple and easy to implement. The algorithm is implemented with the help of FPGA controller which controls the duty cycle by outputting PWM pulse based on the voltage and current from the solar panel. The generated power from the solar cells using the converter is stored in the lead-acid battery to supply the load.…mehr

Produktbeschreibung
This work implements a FPGA based battery energy system using solar cells under various illumination and temperature. It performs Maximum Power Point Tracking based on perturbation and observation method, where it gets the desired maximum power by changing the duty cycle of the switch in the converter. The control algorithm is simple and easy to implement. The algorithm is implemented with the help of FPGA controller which controls the duty cycle by outputting PWM pulse based on the voltage and current from the solar panel. The generated power from the solar cells using the converter is stored in the lead-acid battery to supply the load.
Autorenporträt
Dr M. THAMARAI SELVAN, Assistant Professor with 12 years of experience in teaching and completed Ph.D. degree in the field of VLSI System Design.Mr M PRASANNAKUMAR, Assistant Professor with 10 years of experience in teaching and Completed M.B.A.,M.Phil. Both authors are working in Sri Ramakrishna College of Arts and Science (Autonomous), Coimbatore