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i ABSTRACT This project is initiated to overcome the loss in power generation on the solar panel. This is done by following the high intensity of the light produced by the sun rays. The solar panel is automated to follow the point of high intensity of the sunlight using LDR (light dependent resistor) sensors. This sensor senses the high temperature produced by the sun light on the panel surface and send to the microcontroller. This microcontroller send feedback to the servo motor which allows the servo motor to rotate the panel to receive the high intensity of the sunlight. By this method it is possible to conserve full amount of power produced by the solar panel by receiving the high intensity sun light.

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  • i

    ABSTRACT

    This project is initiated to overcome the loss in power generation on the

    solar panel. This is done by following the high intensity of the light produced by

    the sun rays. The solar panel is automated to follow the point of high intensity of

    the sunlight using LDR (light dependent resistor) sensors. This sensor senses the

    high temperature produced by the sun light on the panel surface and send to the

    microcontroller. This microcontroller send feedback to the servo motor which

    allows the servo motor to rotate the panel to receive the high intensity of the

    sunlight. By this method it is possible to conserve full amount of power produced

    by the solar panel by receiving the high intensity sun light.