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Utilization of Solar Panel Technology to Save Electricity Costs in Fish Farm Irrigation Nisrina, Safira Fegi; Mudzakir, Mohammad Alfian; Rahmat, Basuki
Journal of Computer Networks, Architecture and High Performance Computing Vol. 6 No. 3 (2024): Articles Research Volume 6 Issue 3, July 2024
Publisher : Information Technology and Science (ITScience)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47709/cnahpc.v6i3.3969

Abstract

Solar panels are a medium that can convert solar energy into electrical energy. In this research, the solar panel system in the fish pond is used as air requirements for the survival of the fish so that the air supply is sufficient. The problem is that fish farming has cloudy water due to decreasing temperatures due to lack of irrigation. This condition really requires water flow using a pump to circulate water in the fish pond. Therefore, solar panels are needed to drive the water circulation pump, where these solar panels are an alternative energy source to replace electricity from the State Electricity Company (PLN).The purpose of using a solar panel system is as alternative energy that can supply a pump motor which functions to channel water from the well to the pond to keep it flowing. This is used as alternative electrical energy to replace energy sources originating from the State Electricity Company (PLN) and to reduce operational costs of electrical energy. The method used is to assemble and install 2 units of 100WP solar panels, then testing is carried out to measure the panel output power from 06.00 to 17.00. The average result of measuring solar panel power every 30 minutes is 24.48Watts per day, this condition was when the test was carried out when the weather was less sunny. However, this can still change to get maximum power depending on weather conditions, especially when the sun is hot.
SOSIALISASI DAMPAK RADIASI MEDAN ELEKTROMAGNETIK DARI TOWER BTS (BASE TRANSCEIVER STATION) DI BAYEMAN KABUPATEN PROBOLINGGO W. K, Diah Arie; Fiolana, Farrady Alif; Mudzakir, Mohammad Alfian
Dharma Wiyata: Jurnal Pengabdian Kepada Masyarakat Vol 2 No 2 (2024): Dharma Wiyata
Publisher : Lembaga Penelitian dan Pengabdian kepada Masyarakat Universitas Pawyatan Daha

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Abstract

Perkembangan teknologi telekomunikasi berkembang sangat pesat dan masyarakat sangat terbantu dengan adanya hal tersebut karena informasi dapat diakses dengan cepat. Dibangunnya Tower BTS didaerah pemukiman menimbulkan rasa kekhawatiran tentang dampak radiasi medan elektromagnetik dari pemancar yang membahayakan kesehatan dan beberapa kekhawatiran yang lain yaitu bertambahnya intensitas petir daerah tersebut, Tower roboh dan merusak rumah warga. Telah dilakukan Sosialisasi dampak radiasi medan elektromagnetik dari Tower BTS di Desa Bayeman Kab. Probolinggo yang dihadiri oleh kurang lebih 30 orang yang terdiri dari tokoh masyarakat yaitu Lurah, Sekdes, Ketua RT, Ketua RW dan masyarakat di sekitar Tower BTS. Sosialisasi ini menyampaikan ke warga sekitar Tower BTS bahwa isu-isu pemberitaan yang tidak didasarkan atas penelitian ilmiah. Tim Pengabdian bekerja sama dengan PT. Tower Bersama dan PT. Teleconsult Nusantara membuktikan dengan beberapa penelitian yang telah dilakukan yang menyatakan bahwa nilai radiasi medan elektromagnetik yang dipancarkan oleh Tower BTS jauh di bawah batas dari standardisasi yang ditentukan dan dapat dikategorikan aman. Pihak Tower juga memberikan jaminan-jaminan apabila terjadi kerusakan yang diakibatkan oleh Tower BTS tersebut.
PELATIHAN INSTALASI LISTRIK 1 FASA DI DUSUN SOKO DESA MENANG KECAMATAN PAGU KABUPATEN KEDIRI Mudzakir, Mohammad Alfian; Laksana, Alfian Hudan; Himawan, Citrakara Upendra Snehabandhana Kusuma; Prasetya, Yanto Budi; Subandono, Agus; Ernawati, Ida; Hartono, Setyo; Safi'i, Fiki Obrian Atma
Dharma Wiyata: Jurnal Pengabdian Kepada Masyarakat Vol 3 No 1 (2025): Dharma Wiyata
Publisher : Lembaga Penelitian dan Pengabdian kepada Masyarakat Universitas Pawyatan Daha

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Abstract

Pelatihan instalasi listrik satu fasa dilaksanakan di Dusun Soko, Desa Menang, Kabupaten Kediri, Provinsi Jawa Timur sebagai upaya peningkatan keterampilan masyarakat dalam instalasi yang aman dan sesuai standar PUIL. Kegiatan ini bertujuan mendukung kewirausahaan di tengah ketatnya persaingan kerja formal. Metode meliputi survei, koordinasi dengan pemerintah desa, penyusunan modul, serta pelatihan teori dan praktik. Hasil menunjukkan 80% peserta kompeten secara praktik. Meskipun partisipasi belum mencapai target (10 dari 25 orang), respons peserta sangat positif. Pelatihan efektif sebagai bentuk pemberdayaan dan berpotensi dikembangkan sebagai usaha mikro.
Utilization of Solar Panel Technology to Save Electricity Costs in Fish Farm Irrigation Nisrina, Safira Fegi; Mudzakir, Mohammad Alfian; Rahmat, Basuki
Journal of Computer Networks, Architecture and High Performance Computing Vol. 6 No. 3 (2024): Articles Research Volume 6 Issue 3, July 2024
Publisher : Information Technology and Science (ITScience)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47709/cnahpc.v6i3.3969

Abstract

Solar panels are a medium that can convert solar energy into electrical energy. In this research, the solar panel system in the fish pond is used as air requirements for the survival of the fish so that the air supply is sufficient. The problem is that fish farming has cloudy water due to decreasing temperatures due to lack of irrigation. This condition really requires water flow using a pump to circulate water in the fish pond. Therefore, solar panels are needed to drive the water circulation pump, where these solar panels are an alternative energy source to replace electricity from the State Electricity Company (PLN).The purpose of using a solar panel system is as alternative energy that can supply a pump motor which functions to channel water from the well to the pond to keep it flowing. This is used as alternative electrical energy to replace energy sources originating from the State Electricity Company (PLN) and to reduce operational costs of electrical energy. The method used is to assemble and install 2 units of 100WP solar panels, then testing is carried out to measure the panel output power from 06.00 to 17.00. The average result of measuring solar panel power every 30 minutes is 24.48Watts per day, this condition was when the test was carried out when the weather was less sunny. However, this can still change to get maximum power depending on weather conditions, especially when the sun is hot.