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Journal : JURNAL INTEGRASI

SISTEM PENDINGINAN AIR UNTUK PANEL SURYA DENGAN METODE FUZZY LOGIC Maruto Swatara Loegimin; Bambang Sumantri; Mochamad Ari Bagus Nugroho; Hasnira Hasnira; Novie Ayub Windarko
JURNAL INTEGRASI Vol 12 No 1 (2020): Jurnal Integrasi - April 2020
Publisher : Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (702.773 KB) | DOI: 10.30871/ji.v12i1.1698

Abstract

Sun light is one form of energy from natural resources. These solar natural resources have been widely used to supply electrical power in communication satellites through solar cells. This solar cell can produce unlimited amounts of electrical energy directly taken from the sun. The solar panel itself has the maximum body temperature which influences the output of the solar panel. Solar cell panels have a decreased ability to generate electricity if it overheats or goes through the limits of effectiveness. Therefore, a cooling tower system is developed using the Fuzzy Logic method through this study with the aim of maximizing the efficiency of solar cell panels in generating electricity and analyzing Solar Panel systems( Photovoltaic). The data analyzed are: 1) The method of cooling solar panels using the cooling tower system with fuzzy logic methods, 2) Efficiency of Solar Cell Panels in generating electricity, 3) Electric power produced by solar cell panels. The results of this study explain that the use of fuzzy logic can regulate the speed of water for cooling on panels so that it can be said that the cooling system for solar panels is suitable for use in the tropics, because sunlight is very abundant and is in the equatorial area.
Panel Kontrol ATS SCADA Putung, Yoice R.; Sawidin, Sukandar; Kereh, Tracy M.; Langi, Herry S.; Patabo, Muchdar Dg.; Loegimin, Maruto Swatara
JURNAL INTEGRASI Vol. 16 No. 1 (2024): Jurnal Integrasi - April 2024
Publisher : Pusat Penelitian dan Pengabdian Masyarakat Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/ji.v16i1.7317

Abstract

To guarantee a steady supply of electricity to the load, the Automatic Transfer Switch (ATS) panel management system is crucial in controlling the power flow between the primary and backup electricity sources. It integrates Supervisory Control and Data Acquisition (SCADA) technologies to improve the effectiveness and dependability of ATS operations. The goal of designing an ATS panel with SCADA control is to establish an ATS panel control system based on SCADA. The SCADA system will handle and evaluate the data gathered from this device in order to track and manage the functioning of the ATS. Additionally, in the event that the primary power source has an interruption or breakdown, the SCADA system will automatically trigger the ATS to switch to a backup source, minimizing recovery time and guaranteeing that the load will always have access to uninterrupted power.