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Journal : J-Eltrik

Rancang Bangun Alat Pembersih Panel Surya Dengan Time Scheduling: Rancang Bangun Alat Pembersih Panel Surya Dengan Time Scheduling Prahmana Karyatanti , Iradiratu Diah; Dewantara, Belly Yan; Mughni, Faisal Akbar
J-Eltrik Vol 6 No 1 (2024): Juli
Publisher : Fakultas Teknik dan Ilmu Kelautan, Universitas Hang Tuah

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30649/je.v6i1.132

Abstract

Utilization of solar energy using solar panels in Indonesia is currently only 0.05% of the existing potential. Where, Indonesia is a country located on the equator, so Indonesia has the potential to get stable solar energy. However, there are several factors that can reduce the optimality of solar panels. The factors that affect the optimal performance of a solar panel are the influence of temperature, the effect of shadows, and the material of the solar cell itself. If the cover glass, which is the outermost layer of the solar panel, is covered by dust or other barrier materials, this will block the entry of the intensity of sunlight and greatly affect the process of the photoelectric effect on the cell panel so that the electrical energy produced is not optimal, this event is called shading affect. In this study, a solar panel cleaning tool was designed based on time scheduling. This tool is used to reduce dust and other obstructions on the surface of solar panels. If there is no dust and dirt around the solar panel, this cleaning tool will clean the solar panel automatically.
Analisis Perbandingan Output Daya Listrik Panel Surya Sistem Tracking Dengan Solar Reflector: Analisis Perbandingan Output Daya Listrik Panel Surya Sistem Tracking Dengan Solar Reflector Dwi Cahyanto, Wahyu; Winarno, Istiyo; Dewantara, Belly Yan
J-Eltrik Vol 6 No 1 (2024): Juli
Publisher : Fakultas Teknik dan Ilmu Kelautan, Universitas Hang Tuah

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30649/je.v6i1.143

Abstract

At this time, one type of alternative energy that is growing rapidly and is widely used by many countries is solar energy which is used as a power plant in the form of solar cells. This technology can convert the intensity of the sun into electrical energy. In its development, a control system is needed to optimize the output power of solar cells, such systems are using solar tracking which can control the position of solar cells so that they are always perpendicular to the direction of the sun automatically and a solar reflector that uses a flat mirror as optics to optimize light intensity. The system used for this arrangement is called a solar tracking and reflector system with Adaptive Neuro Fuzzy Inference System (ANFIS) control. The results obtained from the tracking system after testing the most optimal power obtained when the solar cell is perpendicular to the sun with ANFIS control which is 12,743 watts and the solar cell with reflector can optimize power twice as much..